78 results on '"Angquist L."'
Search Results
2. An adaptive controller for power system stability improvement and power flow control by means of a thyristor switched series capacitor (TSSC)
- Author
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Johansson, N., Angquist, L., and Nee, H.-P.
- Subjects
Adaptive control -- Usage ,Damping (Mechanics) -- Analysis ,Electric power systems -- Maintenance and repair ,Business ,Electronics ,Electronics and electrical industries - Published
- 2010
3. Use of UPFC for optimal power flow control
- Author
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Noroozian, M., Angquist, L., Ghandari, M., and Anderssson, G.
- Subjects
Electric controllers -- Models ,Electric current regulators -- Analysis ,Business ,Computers ,Electronics ,Electronics and electrical industries - Abstract
This paper deals with optimal power flow control in electric power systems by use of unified power flow controller (UPFC). Models suitable for incorporation in power flow programs are developed and analysed. The application of UPFC for optimal power flow control is demonstrated through numerical examples. It is shown that a UPFC has the capability of regulating the power flow and minimising the power losses simultaneously. An algorithm is proposed for determining the optimum size of UPFC for power flow applications. The performance of UPFC is compared with that of a phase shifting transformer (PST). Keywords: FACTS, series connected voltage source, unified power flow controller, PST, injection model, power flow control, loss minimisation, optimal power flow
- Published
- 1997
4. Improving power system dynamics by series-connected facts devices
- Author
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Noroozian, M., Angquist, L., Ghandari, M., and Andersson, G.
- Subjects
Electric controllers -- Usage ,Electric transformers -- Usage ,Electrolytic capacitors -- Usage ,Thyristors -- Usage ,Electric power system stability -- Analysis ,Business ,Computers ,Electronics ,Electronics and electrical industries - Abstract
This paper examines improvement of power system dynamics by use of unified power flow controller (UPFC), thyristor controlled phase shifting transformer (TCPST) and thyristor controlled series capacitor (TCSC). Models suitable for incorporation in dynamic simulation programs for studying angle stability are analysed. A control strategy for damping of electromechanical power oscillations using an energy function method is derived. The achieved control laws are shown to be effective both for damping of large signal and small signal disturbances and are robust with respect to loading condition, fault location and network structure. Furthermore, the control inputs are easily attainable from the locally measurable variables. The effectiveness of the controls are demonstrated for model power systems. Keywords: FACTS, series-connected voltage source, UPFC, TCPST, TCSC, power swing, energy function, control strategy, local variables.
- Published
- 1997
5. Power oscillation damping using controlled reactive power compensation - a comparison between series and shunt approaches
- Author
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Angquist, L., Lundin, B., and Samuelsson, J.
- Subjects
Electric power system stability -- Research ,Electric waves -- Damping ,Oscillation -- Control ,Business ,Electronics ,Electronics and electrical industries - Abstract
The paper describes how controlled reactive power compensation can be used to damp power systems oscillations. This is of particular interest in the case of weakly coupled networks. A comparison is made between two kinds of controllable reactive power elements, namely the CSC (Controlled Series Capacitor) and the SVC (Static Var Compensator). The essential topics dealt with are efficiency in terms of 'damping effect' per installed Mvar and the dependence of equipment location. Also the influence of connected loads is investigated to some extent. Basic relationships for the CSC and the SVC approaches are shown in appendices.
- Published
- 1993
6. Worldwide trends in blood pressure from 1975 to 2015: a pooled analysis of 1479 population-based measurement studies with 19.1 million participants
- Author
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Zhou, B, Bentham, J, Di Cesare, M, Bixby, H, Danaei, G, Cowan, MJ, Paciorek, CJ, Singh, G, Hajifathalian, K, Bennett, JE, Taddei, C, Bilano, V, Carrillo-Larco, RM, Djalalinia, S, Khatibzadeh, S, Lugero, C, Peykari, N, Zhang, WZ, Lu, Y, Stevens, GA, Riley, LM, Bovet, P, Elliott, P, Gu, D, Ikeda, N, Jackson, RT, Joffres, M, Kengne, AP, Laatikainen, T, Lam, TH, Laxmaiah, A, Liu, J, Miranda, JJ, Mondo, CK, Neuhauser, HK, Sundstrom, J, Smeeth, L, Soric, M, Woodward, M, Ezzati, M, Abarca-Gomez, L, Abdeen, ZA, Rahim, HA, Abu-Rmeileh, NM, Acosta-Cazares, B, Adams, R, Aekplakorn, W, Afsana, K, Aguilar-Salinas, CA, Agyemang, C, Ahmadvand, A, Ahrens, W, Al Raddadi, R, Al Woyatan, R, Ali, MM, Alkerwi, A, Aly, E, Amouyel, P, Amuzu, A, Andersen, LB, Anderssen, SA, Angquist, L, Anjana, RM, Ansong, D, Aounallah-Skhiri, H, Araujo, J, Ariansen, I, Aris, T, Arlappa, N, Aryal, K, Arveiler, D, Assah, FK, Assuncao, MCF, Avdicova, M, Azevedo, A, Azizi, F, Babu, BV, Bahijri, S, Balakrishna, N, Bandosz, P, Banegas, JR, Barbagallo, CM, Barcelo, A, Barkat, A, Barros, AJD, Barros, MV, Bata, I, Batieha, AM, Baur, LA, Beaglehole, R, Ben Romdhane, H, Benet, M, Benson, LS, Bernabe-Ortiz, A, Bernotiene, G, Bettiol, H, Bhagyalaxmi, A, Bharadwaj, S, Bhargava, SK, Bi, Y, Bikbov, M, Bjerregaard, P, Bjertness, E, Bjokelund, C, Blokstra, A, Bo, S, Bobak, M, Boeing, H, Boggia, JG, Boissonnet, CP, Bongard, V, Braeckman, L, Brajkovich, I, Branca, F, Breckenkamp, J, Brenner, H, Brewster, LM, Bruno, G, Bueno-de-Mesquita, HBA, Bugge, A, Burns, C, Bursztyn, M, de Leon, AC, Cameron, C, Can, G, Candido, APC, Capuano, V, Cardoso, VC, Carlsson, AC, Carvalho, MJ, Casanueva, FF, Casas, J-P, Caserta, CA, Chamukuttan, S, Chan, AW, Chan, Q, Chaturvedi, HK, Chaturvedi, N, Chen, C-J, Chen, F, Chen, H, Chen, S, Chen, Z, Cheng, C-Y, Dekkaki, IC, Chetrit, A, Chiolero, A, Chiou, S-T, Chirita-Emandi, A, Cho, B, Cho, Y, Chudek, J, Cifkova, R, Claessens, F, Clays, E, Concin, H, Cooper, C, Cooper, R, Coppinger, TC, Costanzo, S, Cottel, D, Cowell, C, Craig, CL, Crujeiras, AB, Cruz, JJ, D'Arrigo, G, d'Orsi, E, Dallongeville, J, Damasceno, A, Dankner, R, Dantoft, TM, Dauchet, L, De Backer, G, de Gaetano, G, De Henauw, S, De Smedt, D, Deepa, M, Dehghan, A, Delisle, H, Deschamps, V, Dhana, K, Di Castelnuovo, AF, Dias-da-Costa, JS, Diaz, A, Dickerson, TT, Do, HTP, Dobson, AJ, Donfrancesco, C, Donoso, SP, Doering, A, Doua, K, Drygas, W, Dulskiene, V, Dzakula, A, Dzerve, V, Dziankowska-Zaborszczyk, E, Eggertsen, R, Ekelund, U, El Ati, J, Ellert, U, Elosua, R, Erasmus, RT, Erem, C, Eriksen, L, Escobedo-de la Pena, J, Evans, A, Faeh, D, Fall, CH, Farzadfar, F, Felix-Redondo, FJ, Ferguson, TS, Fernandez-Berges, D, Ferrante, D, Ferrari, M, Ferreccio, C, Ferrieres, J, Finn, JD, Fischer, K, Foeger, B, Foo, LH, Forslund, A-S, Forsner, M, Fortmann, SP, Fouad, HM, Francis, DK, Franco, MDC, Franco, OH, Frontera, G, Fuchs, FD, Fuchs, SC, Fujita, Y, Furusawa, T, Gaciong, Z, Gareta, D, Garnett, SP, Gaspoz, J-M, Gasull, M, Gates, L, Gavrila, D, Geleijnse, JM, Ghasemian, A, Ghimire, A, Giampaoli, S, Gianfagna, F, Giovannelli, J, Goldsmith, RA, Goncalves, H, Gonzalez Gross, M, Gonzalez Rivas, JP, Gottrand, F, Graff-Iversen, S, Grafnetter, D, Grajda, A, Gregor, RD, Grodzicki, T, Grontved, A, Gruden, G, Grujic, V, Guan, OP, Gudnason, V, Guerrero, R, Guessous, I, Guimaraes, AL, Gulliford, MC, Gunnlaugsdottir, J, Gunter, M, Gupta, PC, Gureje, O, Gurzkowska, B, Gutierrez, L, Gutzwiller, F, Hadaegh, F, Halkjaer, J, Hambleton, IR, Hardy, R, Harikumar, R, Hata, J, Hayes, AJ, He, J, Hendriks, ME, Henriques, A, Hernandez Cadena, L, Herqutanto, Herrala, S, Heshmat, R, Hihtaniemi, IT, Ho, SY, Ho, SC, Hobbs, M, Hofman, A, Dinc, GH, Hormiga, CM, Horta, BL, Houti, L, Howitt, C, Htay, TT, Htet, AS, Hu, Y, Maria Huerta, J, Husseini, AS, Huybrechts, I, Hwalla, N, Iacoviello, L, Iannone, AG, Ibrahim, MM, Ikram, MA, Irazola, VE, Islam, M, Ivkovic, V, Iwasaki, M, Jacobs, JM, Jafar, T, Jamrozik, K, Janszky, I, Jasienska, G, Jelakovic, B, Jiang, CQ, Johansson, M, Jonas, JB, Jorgensen, T, Joshi, P, Juolevi, A, Jurak, G, Juresa, V, Kaaks, R, Kafatos, A, Kalter-Leibovici, O, Kamaruddin, NA, Kasaeian, A, Katz, J, Kauhanen, J, Kaur, P, Kavousi, M, Kazakbaeva, G, Keil, U, Boker, LK, Keinanen-Kiukaanniemi, S, Kelishadi, R, Kemper, HCG, Kersting, M, Key, T, Khader, YS, Khalili, D, Khang, Y-H, Khaw, K-T, Kiechl, S, Killewo, J, Kim, J, Klumbiene, J, Kolle, E, Kolsteren, P, Korrovits, P, Koskinen, S, Kouda, K, Koziel, S, Kristensen, PL, Krokstad, S, Kromhout, D, Kruger, HS, Kubinova, R, Kuciene, R, Kuh, D, Kujala, UM, Kula, K, Kulaga, Z, Kumar, RK, Kurjata, P, Kusuma, YS, Kuulasmaa, K, Kyobutungi, C, Lachat, C, Landrove, O, Lanska, V, Lappas, G, Larijani, B, Laugsand, LE, Bao, KLN, Le, TD, Leclercq, C, Lee, J, Lehtimaki, T, Lekhraj, R, Leon-Munoz, LM, Levitt, NS, Li, Y, Lilly, CL, Lim, W-Y, Fernanda Lima-Costa, M, Lin, H-H, Lin, X, Linneberg, A, Lissner, L, Litwin, M, Lorbeer, R, Lotufo, PA, Eugenio Lozano, J, Luksiene, D, Lundqvist, A, Lunet, N, Lytsy, P, Ma, G, Ma, J, Machado-Coelho, GLL, Machi, S, Maggi, S, Magliano, DJ, Majer, M, Makdisse, M, Malekzadeh, R, Malhotra, R, Rao, KM, Malyutina, S, Manios, Y, Mann, JI, Manzato, E, Margozzini, P, Marques-Vidal, P, Marrugat, J, Martorell, R, Mathiesen, EB, Matijasevich, A, Matsha, TE, Mbanya, JCN, Posso, AJMD, McFarlane, SR, McGarvey, ST, McLachlan, S, McLean, RM, McNulty, BA, Khir, ASM, Mediene-Benchekor, S, Medzioniene, J, Meirhaeghe, A, Meisinger, C, Menezes, AMB, Menon, GR, Meshram, II, Metspalu, A, Mi, J, Mikkel, K, Miller, JC, Francisco Miquel, J, Jaime Miranda, J, Misigoj-Durakovic, M, Mohamed, MK, Mohammad, K, Mohammadifard, N, Mohan, V, Yusoff, MFM, Moller, NC, Molnar, D, Momenan, A, Monyeki, KDK, Moreira, LB, Morejon, A, Moreno, LA, Morgan, K, Moschonis, G, Mossakowska, M, Mostafa, A, Mota, J, Motlagh, ME, Motta, J, Muiesan, ML, Mueller-Nurasyid, M, Murphy, N, Mursu, J, Musil, V, Nagel, G, Naidu, BM, Nakamura, H, Namsna, J, Nang, EEK, Nangia, VB, Narake, S, Maria Navarrete-Munoz, E, Ndiaye, NC, Neal, WA, Nenko, I, Nervi, F, Nguyen, ND, Nguyen, QN, Nieto-Martinez, RE, Niiranen, TJ, Ning, G, Ninomiya, T, Nishtar, S, Noale, M, Noboa, OA, Noorbala, AA, Norat, T, Noto, D, Al Nsour, M, O'Reilly, D, Oh, K, Olinto, MTA, Oliveira, IO, Omar, MA, Onat, A, Ordunez, P, Osmond, C, Ostojic, SM, Otero, JA, Overvad, K, Owusu-Dabo, E, Paccaud, FM, Padez, C, Pahomova, E, Pajak, A, Palli, D, Palmieri, L, Panda-Jonas, S, Panza, F, Papandreou, D, Parnell, WR, Parsaeian, M, Pecin, I, Pednekar, MS, Peer, N, Peeters, PH, Peixoto, SV, Pelletier, C, Peltonen, M, Pereira, AC, Marina Perez, R, Peters, A, Petkeviciene, J, Pham, ST, Pigeot, I, Pikhart, H, Pilav, A, Pilotto, L, Pitakaka, F, Plans-Rubio, P, Polakowska, M, Polasek, O, Porta, M, Portegies, MLP, Pourshams, A, Pradeepa, R, Prashant, M, Price, JF, Puiu, M, Punab, M, Qasrawi, RF, Qorbani, M, Radic, I, Radisauskas, R, Rahman, M, Raitakari, O, Raj, M, Rao, SR, Ramos, E, Rampal, S, Rangel Reina, DA, Rasmussen, F, Redon, J, Reganit, PFM, Ribeiro, R, Riboli, E, Rigo, F, de Wit, TFR, Ritti-Dias, RM, Robinson, SM, Robitaille, C, Rodriguez-Artalejo, F, Rodriguez-Villamizar, LA, Rojas-Martinez, R, Rosengren, A, Rubinstein, A, Rui, O, Sandra Ruiz-Betancourt, B, Russo Horimoto, ARV, Rutkowski, M, Sabanayagam, C, Sachdev, HS, Saidi, O, Sakarya, S, Salanave, B, Salazar Martinez, E, Salmeron, D, Salomaa, V, Salonen, JT, Salvetti, M, Sanchez-Abanto, J, Sans, S, Santos, D, Santos, IS, dos Santos, RN, Santos, R, Saramies, JL, Sardinha, LB, Margolis, GS, Sarrafzadegan, N, Saum, K-U, Savva, SC, Scazufca, M, Schargrodsky, H, Schneider, IJ, Schultsz, C, Schutte, AE, Sen, A, Senbanjo, IO, Sepanlou, SG, Sharma, SK, Shaw, JE, Shibuya, K, Shin, DW, Shin, Y, Siantar, R, Sibai, AM, Santos Silva, DA, Simon, M, Simons, J, Simons, LA, Sjotrom, M, Skovbjerg, S, Slowikowska-Hilczer, J, Slusarczyk, P, Smith, MC, Snijder, MB, So, H-K, Sobngwi, E, Soderberg, S, Solfrizzi, V, Sonestedt, E, Song, Y, 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Chronic Diseases, APH - Methodology, ACS - Diabetes & metabolism, ACS - Atherosclerosis & ischemic syndromes, ACS - Heart failure & arrhythmias, Zhou, Bin, Bentham, Jame, Di Cesare, Mariachiara, Bixby, Honor, Danaei, Goodarz, Cowan, Melanie J, Paciorek, Christopher J, Singh, Gitanjali, Hajifathalian, Kaveh, Bennett, James E., Taddei, Cristina, Bilano, Ver, Carrillo-Larco, Rodrigo M, Djalalinia, Shirin, Khatibzadeh, Shahab, Lugero, Charle, Peykari, Niloofar, Zhang, Wan Zhu, Lu, Yuan, Stevens, Gretchen A, Riley, Leanne M, Bovet, Pascal, Elliott, Paul, Gu, Dongfeng, Ikeda, Nayu, Jackson, Rod T., Joffres, Michel, Kengne, Andre Pascal, Laatikainen, Tiina, Lam, Tai Hing, Laxmaiah, Avula, Liu, Jing, Miranda, J Jaime, Mondo, Charles K, Neuhauser, Hannelore K., Sundström, Johan, Smeeth, Liam, Sorić, Maroje, Woodward, Mark, Ezzati, Majid, Abarca-Gómez, Leandra, Abdeen, Ziad A, Rahim, Hanan Abdul, Abu-Rmeileh, Niveen M, Acosta-Cazares, Benjamin, Adams, Robert, Aekplakorn, Wichai, Afsana, Kaosar, Aguilar-Salinas, Carlos A, Agyemang, Charle, Ahmadvand, Alireza, Ahrens, Wolfgang, Al Raddadi, Rajaa, Al Woyatan, Rihab, Ali, Mohamed M, Alkerwi, Ala'a, Aly, Eman, Amouyel, Philippe, Amuzu, Antoinette, Andersen, Lars Bo, Anderssen, Sigmund A, Ängquist, Lar, Anjana, Ranjit Mohan, Ansong, Daniel, Aounallah-Skhiri, Hajer, Araújo, Joana, Ariansen, Inger, Aris, Tahir, Arlappa, Nimmathota, Aryal, Krishna, Arveiler, Dominique, Assah, Felix K, Assunção, Maria Cecília F, Avdicová, Mária, Azevedo, Ana, Azizi, Fereidoun, Babu, Bontha V, Bahijri, Suhad, Balakrishna, Nagalla, Bandosz, Piotr, Banegas, José R., Barbagallo, Carlo M, Barceló, Alberto, Barkat, Amina, Barros, Aluisio J.D., Barros, Mauro V., Bata, Iqbal, Batieha, Anwar M, Baur, Louise A, Beaglehole, Robert, Romdhane, Habiba Ben, Benet, Mikhail, Benson, Lowell S, Bernabe-Ortiz, Antonio, Bernotiene, Gailute, Bettiol, Heloisa, Bhagyalaxmi, Aroor, Bharadwaj, Sumit, Bhargava, Santosh K., Bi, Yufang, Bikbov, Mukharram, Bjerregaard, Peter, 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Han, Cooper, Cyru, Cooper, Rachel, Coppinger, Tara C., Costanzo, Simona, Cottel, Dominique, Cowell, Chri, Craig, Cora L., Crujeiras, Ana B, Cruz, Juan J., D'Arrigo, Graziella, d'Orsi, Eleonora, Dallongeville, Jean, Damasceno, Albertino, Dankner, Rachel, Dantoft, Thomas M., Dauchet, Luc, De Backer, Guy, De Bacquer, Dirk, de Gaetano, Giovanni, De Henauw, Stefaan, De Smedt, Delphine, Deepa, Mohan, Dehghan, Abba, Delisle, Hélène, Deschamps, Valérie, Dhana, Klodian, Di Castelnuovo, Augusto F, Dias-da-Costa, Juvenal Soare, Diaz, Alejandro, Dickerson, Ty T., Do, Ha T.P., Donfrancesco, Chiara, Dobson, Annette J., Donoso, Silvana P., Döring, Angela, Doua, Kouamelan, Drygas, Wojciech, Dulskiene, Virginija, Džakula, Aleksandar, Dzerve, Vilni, Dziankowska-Zaborszczyk, Elzbieta, Ekelund, Ulf, El Ati, Jalila, Ellert, Ute, Elosua, Roberto, Erasmus, Rajiv T, Erem, Cihangir, Eriksen, Louise, Escobedo-de la Peña, Jorge, Evans, Alun, Faeh, David, Fall, Caroline H., Farzadfar, Farshad, Felix-Redondo, Francisco J., Ferguson, Trevor S., Fernández-Bergés, Daniel, Ferrante, Daniel, Ferrari, Marika, Ferreccio, Catterina, Ferrieres, Jean, Finn, Joseph D., Fischer, Krista, Föger, Bernhard, Foo, Leng Huat, Forslund, Ann-Sofie, Forsner, Maria, Fortmann, Stephen P., Fouad, Heba M., Francis, Damian K., do Carmo Franco, Maria, Franco, Oscar H., Frontera, Guillermo, Fuchs, Flavio D., Fuchs, Sandra C, Fujita, Yuki, Furusawa, Takuro, Gaciong, Zbigniew, Gareta, Dickman, Garnett, Sarah P., Gaspoz, Jean-Michel, Gasull, Magda, Gates, Louise, Gavrila, Diana, Geleijnse, Johanna M., Ghasemian, Anoosheh, Ghimire, Anup, Giampaoli, Simona, Gianfagna, Francesco, Giovannelli, Jonathan, Goldsmith, Rebecca A., Gonçalves, Helen, Gross, Marcela Gonzalez, González Rivas, Juan P., Gottrand, Frederic, Graff-Iversen, Sidsel, Grafnetter, Dušan, Grajda, Aneta, Gregor, Ronald D., Grodzicki, Tomasz, Grøntved, Ander, Gruden, Grabriella, Grujic, Vera, Guan, Ong Peng, Gudnason, Vilmundur, Guerrero, Ramiro, Guessous, Idri, Guimaraes, Andre L., Gulliford, Martin C., Gunnlaugsdottir, Johanna, Gunter, Marc, Gupta, Prakash C., Gureje, Oye, Gurzkowska, Beata, Gutierrez, Laura, Gutzwiller, Felix, Hadaegh, Farzad, Halkjær, Jytte, Hambleton, Ian R., Hardy, Rebecca, Harikumar, Rachakulla, Hata, Jun, Hayes, Alison J, He, Jiang, Hendriks, Marleen Elisabeth, Henriques, Ana, Cadena, Leticia Hernandez, Herqutanto, null, Herrala, Sauli, Heshmat, Ramin, Hihtaniemi, Ilpo Tapani, Ho, Sai Yin, Ho, Suzanne C, Hobbs, Michael, Hofman, Albert, Dinc, Gonul Horasan, Hormiga, Claudia M, Horta, Bernardo L, Houti, Leila, Howitt, Christina, Htay, Thein Thein, Htet, Aung Soe, Hu, Yonghua, Huerta, José María, Husseini, Abdullatif S, Huybrechts, Inge, Hwalla, Nahla, Iacoviello, Licia, Iannone, Anna G, Ibrahim, M Mohsen, Ikram, M Arfan, Irazola, Vilma E, Islam, Muhammad, Ivkovic, Vanja, Iwasaki, Masanori, Jacobs, Jeremy M, Jafar, Tazeen, Jamrozik, Konrad, Janszky, Imre, Jasienska, Grazyna, Jelakovic, Bojan, Jiang, Chao Qiang, Johansson, Mattia, Jonas, Jost B, Jørgensen, Torben, Joshi, Pradeep, Juolevi, Anne, Jurak, Gregor, Jureša, Vesna, Kaaks, Rudolf, Kafatos, Anthony, Kalter-Leibovici, Ofra, Kamaruddin, Nor Azmi, Kasaeian, Amir, Katz, Joanne, Kauhanen, Jussi, Kaur, Prabhdeep, Kavousi, Maryam, Kazakbaeva, Gyulli, Keil, Ulrich, Boker, Lital Keinan, Keinänen-Kiukaanniemi, Sirkka, Kelishadi, Roya, Kemper, Han C G, Kersting, Mathilde, Key, Timothy, Khader, Yousef Saleh, Khalili, Davood, Khang, Young-Ho, Khaw, Kay-Tee, Kiechl, Stefan, Killewo, Japhet, Kim, Jeongseon, Klumbiene, Jurate, Kolle, Elin, Kolsteren, Patrick, Korrovits, Paul, Koskinen, Seppo, Kouda, Katsuyasu, Koziel, Slawomir, Kristensen, Peter Lund, Krokstad, Steinar, Kromhout, Daan, Kruger, Herculina S, Kubinova, Ruzena, Kuciene, Renata, Kuh, Diana, Kujala, Urho M, Kula, Krzysztof, Kulaga, Zbigniew, Krishna Kumar, R., Kurjata, Pawel, Kusuma, Yadlapalli S, Kuulasmaa, Kari, Kyobutungi, Catherine, Lachat, Carl, Landrove, Orlando, Lanska, Vera, Lappas, Georg, Larijani, Bagher, Laugsand, Lars E, Le Nguyen Bao, Khanh, Le, Tuyen D, Leclercq, Catherine, Lee, Jeannette, Lee, Jeonghee, Lehtimäki, Terho, Lekhraj, Rampal, León-Muñoz, Luz M., Levitt, Naomi S, Li, Yanping, Lilly, Christa L, Lim, Wei-Yen, Lima-Costa, M Fernanda, Lin, Hsien-Ho, Lin, Xu, Linneberg, Allan, Lissner, Lauren, Litwin, Mieczyslaw, Lorbeer, Roberto, Lotufo, Paulo A, Lozano, José Eugenio, Luksiene, Dalia, Lundqvist, Annamari, Lunet, Nuno, Lytsy, Per, Ma, Guansheng, Ma, Jun, Machado-Coelho, George L L, Machi, Suka, Maggi, Stefania, Magliano, Dianna J, Majer, Marjeta, Makdisse, Marcia, Malekzadeh, Reza, Malhotra, Rahul, Rao, Kodavanti Mallikharjuna, Malyutina, Sofia, Manios, Yanni, Mann, Jim I, Manzato, Enzo, Margozzini, Paula, Marques-Vidal, Pedro, Marrugat, Jaume, Martorell, Reynaldo, Mathiesen, Ellisiv B, Matijasevich, Alicia, Matsha, Tandi E, Mbanya, Jean Claude N, McDonald Posso, Anselmo J, McFarlane, Shelly R, McGarvey, Stephen T, McLachlan, Stela, McLean, Rachael M, McNulty, Breige A, MdKhir, Amir Sharifuddin, Mediene-Benchekor, Sounnia, Medzioniene, Jurate, Meirhaeghe, Aline, Meisinger, Christa, Menezes, Ana Maria B, Menon, Geetha R, Meshram, Indrapal I, Metspalu, Andre, Mi, Jie, Mikkel, Kairit, Miller, Jody C, Miquel, Juan Francisco, Mišigoj-Durakovic, Marjeta, Mohamed, Mostafa K, Mohammad, Kazem, Mohammadifard, Noushin, Mohan, Viswanathan, Mohd Yusoff, Muhammad Fadhli, Møller, Niels C, Molnár, Déne, Momenan, Amirabba, Monyeki, Kotsedi Daniel K, Moreira, Leila B, Morejon, Alain, Moreno, Luis A, Morgan, Karen, Moschonis, George, Mossakowska, Malgorzata, Mota, Jorge, Mostafa, Aya, Motlagh, Mohammad Esmaeel, Motta, Jorge, Muiesan, Maria L, Müller-Nurasyid, Martina, Murphy, Neil, Mursu, Jaakko, Musil, Vera, Nagel, Gabriele, Naidu, Balkish M, Nakamura, Harunobu, Námešná, Jana, Nang, Ei Ei K, Nangia, Vinay B, Narake, Sameer, Navarrete-Muñoz, Eva Maria, Ndiaye, Ndeye Coumba, Neal, William A, Nenko, Ilona, Nervi, Flavio, Nguyen, Nguyen D, Nguyen, Quang Ngoc, Nieto-Martínez, Ramfis E, Niiranen, Teemu J, Ning, Guang, Ninomiya, Toshiharu, Nishtar, Sania, Noale, Marianna, Noboa, Oscar A., Noorbala, Ahmad Ali, Norat, Teresa, Noto, Davide, Al Nsour, Mohannad, O'Reilly, Dermot, Oh, Kyungwon, Olinto, Maria Teresa A., Oliveira, Isabel O, Omar, Mohd Azahadi, Onat, Altan, Ordunez, Pedro, Osmond, Clive, Ostojic, Sergej M, Otero, Johanna A, Overvad, Kim, Owusu-Dabo, Elli, Paccaud, Fred Michel, Padez, Cristina, Pahomova, Elena, Pajak, Andrzej, Palli, Domenico, Palmieri, Luigi, Panda-Jonas, Songhomitra, Panza, Francesco, Papandreou, Dimitrio, Parnell, Winsome R, Parsaeian, Mahboubeh, Pecin, Ivan, Pednekar, Mangesh S, Peer, Nasheeta, Peeters, Petra H, Peixoto, Sergio Viana, Pelletier, Catherine, Peltonen, Markku, Pereira, Alexandre C, Pérez, Rosa Marina, Peters, Annette, Petkeviciene, Janina, Pham, Son Thai, Pigeot, Iri, Pikhart, Hynek, Pilav, Aida, Pilotto, Lorenza, Pitakaka, Freda, Plans-Rubió, Pedro, Polakowska, Maria, Polašek, Ozren, Porta, Miquel, Portegies, Marileen L.P., Pourshams, Akram, Pradeepa, Rajendra, Prashant, Mathur, Price, Jacqueline F, Puiu, Maria, Punab, Margu, Qasrawi, Radwan F, Qorbani, Mostafa, Radic, Ivana, Radisauskas, Ricarda, Rahman, Mahfuzar, Raitakari, Olli, Raj, Manu, Rao, Sudha Ramachandra, Ramachandran, Ambady, Ramos, Elisabete, Rampal, Sanjay, Rangel Reina, Daniel A, Rasmussen, Finn, Redon, Josep, Reganit, Paul Ferdinand M, Ribeiro, Robespierre, Riboli, Elio, Rigo, Fernando, Rinke de Wit, Tobias F, Ritti-Dias, Raphael M, Robinson, Sian M, Robitaille, Cynthia, Rodríguez-Artalejo, Fernando, del Cristo Rodriguez-Perez, María, Rodríguez-Villamizar, Laura A, Rojas-Martinez, Rosalba, Rosengren, Annika, Rubinstein, Adolfo, Rui, Ornela, Ruiz-Betancourt, Blanca Sandra, Russo Horimoto, Andrea R V, Rutkowski, Marcin, Sabanayagam, Charumathi, Sachdev, Harshpal S, Saidi, Olfa, Sakarya, Sibel, Salanave, Benoit, Martinez, Eduardo Salazar, Salmerón, Diego, Salomaa, Veikko, Salonen, Jukka T, Salvetti, Massimo, Sánchez-Abanto, Jose, Sans, Susana, Santos, Diana, Santos, Ina S, dos Santos, Renata Nune, Santos, Rute, Saramies, Jouko L, Sardinha, Luis B, Margolis, Giselle Sargana, Sarrafzadegan, Nizal, Saum, Kai-Uwe, Savva, Savvas C, Scazufca, Marcia, Schargrodsky, Herman, Schneider, Ione J, Schultsz, Constance, Schutte, Aletta E, Sen, Abhijit, Senbanjo, Idowu O, Sepanlou, Sadaf G, Sharma, Sanjib K, Shaw, Jonathan E, Shibuya, Kenji, Shin, Dong Wook, Shin, Youchan, Siantar, Rosalynn, Sibai, Abla M, Santos Silva, Diego Augusto, Simon, Mary, Simons, Judith, Simons, Leon A, Sjöström, Michael, Skovbjerg, Sine, Slowikowska-Hilczer, Jolanta, Slusarczyk, Przemyslaw, Smith, Margaret C, Snijder, Marieke B, So, Hung-Kwan, Sobngwi, Eugène, Söderberg, Stefan, Solfrizzi, Vincenzo, Sonestedt, Emily, Song, Yi, Sørensen, Thorkild I.A., Jérome, Charles Sossa, Soumare, Aicha, Staessen, Jan A, Starc, Gregor, Stathopoulou, Maria G, Stavreski, Bill, Steene-Johannessen, Jostein, Stehle, Peter, Stein, Aryeh D, Stergiou, George S, Stessman, Jochanan, Stieber, Jutta, Stöckl, Dori, Stocks, Tanja, Stokwiszewski, Jakub, Stronks, Karien, Strufaldi, Maria Wany, Sun, Chien-An, Sung, Yn-Tz, Suriyawongpaisal, Paibul, Sy, Rody G, Tai, E Shyong, Tammesoo, Mari-Lii, Tamosiunas, Abdona, Tang, Line, Tang, Xun, Tao, Yong, Tanser, Frank, Tarawneh, Mohammed Rasoul, Tarqui-Mamani, Carolina B, Taylor, Anne, Theobald, Holger, Thijs, Lutgarde, Thuesen, Betina H, Tjonneland, Anne, Tolonen, Hanna K, Tolstrup, Janne S, Topbas, Murat, Topór-Madry, Roman, Tormo, María José, Torrent, Matie, Traissac, Pierre, Trichopoulos, Dimitrio, Trichopoulou, Antonia, Trinh, Oanh T H, Trivedi, Atul, Tshepo, Lechaba, Tulloch-Reid, Marshall K, Tuomainen, Tomi-Pekka, Tuomilehto, Jaakko, Turley, Maria L, Tynelius, Per, Tzourio, Christophe, Ueda, Peter, Ugel, Eunice, Ulmer, Hanno, Uusitalo, Hannu M T, Valdivia, Gonzalo, Valvi, Damaskini, van der Schouw, Yvonne T, Van Herck, Koen, van Rossem, Lenie, van Valkengoed, Irene G.M., Vanderschueren, Dirk, Vanuzzo, Diego, Vatten, Lar, Vega, Toma, Velasquez-Melendez, Gustavo, Veronesi, Giovanni, Verschuren, W M Monique, Verstraeten, Roosmarijn, Victora, Cesar G, Viet, Lucie, Viikari-Juntura, Eira, Vineis, Paolo, Vioque, Jesu, Virtanen, Jyrki K, Visvikis-Siest, Sophie, Viswanathan, Bharathi, Vollenweider, Peter, Voutilainen, Sari, Vrdoljak, Ana, Vrijheid, Martine, Wade, Alisha N, Wagner, Aline, Walton, Janette, Wan Mohamud, Wan Nazaimoon, Wang, Ming-Dong, Wang, Qian, Wang, Ya Xing, Wannamethee, S Goya, Wareham, Nichola, Wederkopp, Niel, Weerasekera, Deepa, Whincup, Peter H, Widhalm, Kurt, Widyahening, Indah S, Wijga, Alet H, Wiecek, Andrzej, Wilks, Rainford J, Willeit, Johann, Willeit, Peter, Williams, Emmanuel A, Wilsgaard, Tom, Wojtyniak, Bogdan, Wong, Tien Yin, Wong-McClure, Roy A, Woo, Jean, Wu, Aleksander Giwercman, Wu, Frederick C., Wu, Shou Ling, Xu, Haiquan, Yan, Weili, Yang, Xiaoguang, Ye, Xingwang, Yiallouros, Panayiotis K, Yoshihara, Akihiro, Younger-Coleman, Novie O, Yusoff, Ahmad F, Yusoff, Muhammad Fadhli M, Zambon, Sabina, Zdrojewski, Tomasz, Zeng, Yi, Zhao, Dong, Zhao, Wenhua, Zheng, Yingffeng, Zimmermann, Esther, Cisneros, Julio Zuñiga, Zhu, Dan, and Eggertsen, Robert
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presión sanguínea ,hypertension ,Settore MED/09 - Medicina Interna ,united-states ,humanos ,Blood Pressure ,systematic analysis ,Global Health ,Risk Factors ,General & Internal Medicine ,Prevalence ,factores de riesgo ,Humans ,secular trends ,cardiovascular risk-factors ,Medicine (all) ,global burden ,prevalencia ,Bayes Theorem ,gender-differences ,purl.org/pe-repo/ocde/ford#3.02.00 [https] ,sodium-intake ,health examination surveys ,low-income ,teorema de Bayes - Abstract
Background Raised blood pressure is an important risk factor for cardiovascular diseases and chronic kidney disease. We estimated worldwide trends in mean systolic and mean diastolic blood pressure, and the prevalence of, and number of people with, raised blood pressure, defined as systolic blood pressure of 140 mm Hg or higher or diastolic blood pressure of 90 mm Hg or higher. Methods For this analysis, we pooled national, subnational, or community population-based studies that had measured blood pressure in adults aged 18 years and older. We used a Bayesian hierarchical model to estimate trends from 1975 to 2015 in mean systolic and mean diastolic blood pressure, and the prevalence of raised blood pressure for 200 countries. We calculated the contributions of changes in prevalence versus population growth and ageing to the increase in the number of adults with raised blood pressure. Findings We pooled 1479 studies that had measured the blood pressures of 19.1 million adults. Global age-standardised mean systolic blood pressure in 2015 was 127.0 mm Hg (95% credible interval 125.7-128.3) in men and 122.3 mm Hg (121.0-123.6) in women; age-standardised mean diastolic blood pressure was 78.7 mm Hg (77.9-79.5) for men and 76.7 mm Hg (75.9-77.6) for women. Global age-standardised prevalence of raised blood pressure was 24.1% (21.4-27.1) in men and 20.1% (17.8-22.5) in women in 2015. Mean systolic and mean diastolic blood pressure decreased substantially from 1975 to 2015 in high-income western and Asia Pacific countries, moving these countries from having some of the highest worldwide blood pressure in 1975 to the lowest in 2015. Mean blood pressure also decreased in women in central and eastern Europe, Latin America and the Caribbean, and, more recently, central Asia, Middle East, and north Africa, but the estimated trends in these super-regions had larger uncertainty than in high-income super-regions. By contrast, mean blood pressure might have increased in east and southeast Asia, south Asia, Oceania, and sub-Saharan Africa. In 2015, central and eastern Europe, sub-Saharan Africa, and south Asia had the highest blood pressure levels. Prevalence of raised blood pressure decreased in high-income and some middle-income countries; it remained unchanged elsewhere. The number of adults with raised blood pressure increased from 594 million in 1975 to 1.13 billion in 2015, with the increase largely in low-income and middle-income countries. The global increase in the number of adults with raised blood pressure is a net effect of increase due to population growth and ageing, and decrease due to declining age-specific prevalence. Interpretation During the past four decades, the highest worldwide blood pressure levels have shifted from high-income countries to low-income countries in south Asia and sub-Saharan Africa due to opposite trends, while blood pressure has been persistently high in central and eastern Europe. Funding Wellcome Trust., Wellcome Trust.
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- 2017
7. Fast HVDC breaker using reduced-rating power electronics
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Angquist, L., primary, Norrga, S., additional, Modeer, T., additional, and Nee, S., additional
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- 2017
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8. Combined influence of leisure time physical activity and hip circumference on all-cause mortality
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Ostergaard, J N, Grønbaek, M, Angquist, L, Schnohr, Peter, Sørensen, T I A, and Heitmann, B L
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Adult ,Aged, 80 and over ,Male ,Hip ,Denmark ,Middle Aged ,Muscular Atrophy ,Young Adult ,Leisure Activities ,Sex Factors ,Cause of Death ,Body Size ,Humans ,Female ,Muscle, Skeletal ,Exercise ,Aged ,Proportional Hazards Models - Abstract
Hip circumference has been shown to be inversely associated with mortality. Muscle atrophy in the gluteofemoral region may be a possible explanation and thus physical activity is likely to play an important role. We aimed to estimate the combined effects of hip circumference and physical activity on mortality. From the Copenhagen City Heart Study, 3358 men and 4350 women aged 21 to 93 years without pre-existing diagnosis of diabetes, stroke, ischemic heart disease, or cancer in 1991-94 and with complete information on the variables of interest were included in the analyses. The participants were followed to 2009 in the Danish Civil Registration System, with 1.3% loss to follow-up and 2513 deaths. Hazard ratios (HR) were estimated for combinations of physical activity and hip circumference. Hip circumference was inversely associated with mortality irrespective of being physically active or not. However, being physically active seemed to counterbalance some of the adverse health effects of a small hip circumference; when comparing inactive to active, the excess mortality at the 25(th) percentile of hip circumference is 40% in men (HR= 1.40, 95% CI: 1.14-1.72) and 33% in women (HR= 1.33, CI: 1.10-1.62). These associations were observed after adjustment for waist circumference and weight change in the six months before the examination. Less effects of physical activity were found in individuals with greater hip circumferences. A small hip circumference appears hazardous to survival. However, being physically active may counterbalance some of the hazardous effects of a small hip circumference.
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- 2013
9. TFAP2B -Dietary Protein and Glycemic Index Interactions and Weight Maintenance after Weight Loss in the DiOGenes Trial
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Stocks, T., Angquist, L., Hager, J., Charon, C., Holst, C., Martinez, J.A., Saris, W.H., Astrup, A., Sorensen, T.I., Larsen, L.H., Humane Biologie, and RS: NUTRIM - R1 - Metabolic Syndrome
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Background: TFAP2B rs987237 is associated with obesity and has shown interaction with the dietary fat-to-carbohydrate ratio, which has an effect on weight loss. We investigated interactions between rs987237 and protein-to-carbohydrate ratio or glycemic index (GI) in relation to weight maintenance after weight loss. Methods: This study included 742 obese individuals from 8 European countries who participated in the Diet, Obesity, and Genes (DiOGenes) trial, lost >/=8% of their initial body weight during an 8-week low-calorie diet and were randomized to one of 5 ad libitum diets with a fixed energy percentage from fat: either low-protein/low-GI, low-protein/high-GI, high-protein/low-GI, or high-protein/high-GI diets, or a control diet for a 6-month weight maintenance period. Using linear regression analyses and additive genetic models, we investigated main and dietary interaction effects of TFAP2B rs987237 in relation to weight maintenance. Results: In total, 468 completers of the trial were genotyped for rs987237. High-protein diets were beneficial for weight maintenance in the AA genotype group (67% of participants), but in the AG and GG groups no differences were observed for low- or high-protein diets. On the high-protein diet, carriers of the obesity risk allele (G allele) regained 1.84 kg (95% CI: 0.02; 3.67, p = 0.047) more body weight per risk allele than individuals on a low-protein diet. There was no interaction effect between rs987237 and GI on weight maintenance. Conclusion: TFAP2B rs987237 and dietary protein/carbohydrate interacted to modify weight maintenance. Considering the carbohydrate proportion of the diet, the interaction was different from the previously reported rs987237-fat-to-carbohydrate ratio interaction for weight loss. Thus, TFAP2B-macronutrient interactions might diverge depending on the nutritional state. (c) 2013 S. Karger AG, Basel.
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- 2013
10. Experimental evaluation of the impact of harmonics on induction motors fed by modular multilevel converters
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Antonopoulos, A., primary, Moree, G., additional, Soulard, J., additional, Angquist, L., additional, and Nee, H.-P., additional
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- 2014
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11. SmarTS Lab — A laboratory for developing applications for WAMPAC Systems
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Vanfretti, L., primary, Chenine, M., additional, Almas, M. S., additional, Leelaruji, R., additional, Angquist, L., additional, and Nordstrom, L., additional
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- 2012
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12. P1-487 Combined influence of physical activity and Hip circumference on all-cause mortality
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Ostergaard, J., primary, Gronbaek, M., additional, Angquist, L., additional, Schnohr, P., additional, Sorensen, T., additional, and Heitmann, B., additional
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- 2011
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13. M2C-based MTDC system for handling of power fluctuations from offshore wind farms
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Ahmed, N., primary, Haider, A., additional, Angquist, L., additional, and Nee, H.-P., additional
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- 2011
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14. Auto-normalizing Phase-Locked Loop for grid-connected converters
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Angquist, L., primary and Bongiorno, M., additional
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- 2009
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15. Comparison of Voltage and Flux Modulation Schemes of StatComs Regarding Transformer Saturation During Fault Recovery
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Xie, H., primary, Angquist, L., additional, and Nee, H.-P., additional
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- 2008
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16. Single-Phase VSC Based SSSC for Subsynchronous Resonance Damping
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Bongiorno, M., primary, Svensson, J., additional, and Angquist, L., additional
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- 2008
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17. A Novel Control Strategy for Subsynchronous Resonance Mitigation Using SSSC
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Bongiorno, M., primary, Angquist, L., additional, and Svensson, J., additional
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- 2008
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18. Estimation of grid parameters for the control of variable series reactance FACTS devices
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Johansson, N.P., primary, Nee, H.-P., additional, and Angquist, L., additional
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- 2006
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19. Improving the calculation of statistical significance in genome-wide scans
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Angquist, L., primary
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- 2005
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20. Open-loop approach for control of multi-terminal DC systems based on modular multilevel converters.
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Haider, A., Ahmed, N., Angquist, L., and Nee, H.-P.
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- 2011
21. Controlling the ac-side voltage waveform in a modular multilevel converter with low energy-storage capability.
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Ilves, K., Antonopoulos, A., Norrga, S., Angquist, L., and Nee, H.-P.
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- 2011
22. Open-loop approach to control a Modular Multilevel Frequency Converter.
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Angquist, L., Haider, A., Nee, H.-P., and Hongbo Jiang
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- 2011
23. High-power modular multilevel converters with SiC JFETs.
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Peftitsis, D., Tolstoy, G., Antonopoulos, A., Rabkowski, J., Jang-Kwon Lim, Bakowski, M., Angquist, L., and Nee, H.-P.
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- 2010
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24. Investigation of the control of a converter topology interfacing an energy storage with the dc link of a VSC.
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Hailian Xie, Angquist, L., and Nee, H.-P.
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- 2009
25. On dynamics and voltage control of the Modular Multilevel Converter.
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Antonopoulos, A., Angquist, L., and Nee, H.-P.
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- 2009
26. A novel active damping control of TCSC for SSR suppression in a radial corridor.
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Qianjin Liu, Changchun Zhou, Angquist, L., and Rehtanz, C.
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- 2008
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27. Adaptive control for power oscillation damping by means of a Thyristor Controlled Series Capacitor (TCSC).
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Monge, M., Johansson, N., Angquist, L., and Nee, H.-P.
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- 2008
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28. A Converter Topology Suitable for Interfacing Energy Storage with the DC Link of a StatCom.
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Hailian Xie, Angquist, L., and Hans-Peter Nee
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- 2008
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29. On Control of Static Synchronous Series Compensator for SSR Mitigation.
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Bongiorno, M., Svensson, J., and Angquist, L.
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- 2007
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30. Adaptive Control of Controlled Series Compensators for Power System Stability Improvement.
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Johansson, N.P., Angquist, L., and Nee, H.-P.
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- 2007
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31. Using TCSC scheme for SSR mitigation in a radial transfer corridor.
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Qianjin Liu, Changchun Zhou, Angquist, L., and Rudin, S.
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- 2006
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32. Active Power Compensation of Voltage Source Converters with Energy Storage Capacitors.
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Hailian Xie, Angquist, L., and Nee, H.-P.
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- 2006
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33. An Adaptive Model Predictive Approach to Power Oscillation Damping Utilizing Variable Series Reactance Facts Devices.
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Johansson, N.P., Nee, H.-P., and Angquist, L.
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- 2006
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34. Discrete Open Loop Control for Power Oscillation Damping Utilizing Variable Series Reactance Facts Devices.
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Johansson, N.P., Nee, H.-P., and Angquist, L.
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- 2006
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35. Power semiconductors in transmission and distribution applications.
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Chokhawala, R., Danielsson, B., and Angquist, L.
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- 2001
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36. Analytical modeling of thyristor-controlled series capacitors for SSR studies
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Othman, H.A., primary and Angquist, L., additional
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- 1996
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37. Inner phase angle control of voltage source converter in high power applications.
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Angquist, L. and Lindberg, L.
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- 1991
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38. Power semiconductors in transmission and distribution applications
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Chokhawala, R., primary, Danielsson, B., additional, and Angquist, L., additional
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39. Inner phase angle control of voltage source converter in high power applications
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Angquist, L., primary and Lindberg, L., additional
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40. Damping algorithm based on phasor estimation
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Angquist, L., primary and Gama, C., additional
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41. Novel flux modulated positive and negative sequence deadbeat current control of voltage source converters.
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Hailian Xie, Angquist, L., and Nee, H.-P.
- Published
- 2006
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42. Analysis of TCSC providing damping in the interconnection Colombia-Ecuador 230 kV.
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Latorre, H.F. and Angquist, L.
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- 2003
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43. Damping algorithm based on phasor estimation.
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Angquist, L. and Gama, C.
- Published
- 2001
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44. Height and body-mass index trajectories of school-aged children and adolescents from 1985 to 2019 in 200 countries and territories: a pooled analysis of 2181 population-based studies with 65 million participants
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Kuulasmaa K., Kyobutungi C., La Q.N., Laamiri F.Z., Laatikainen T., Lachat C., Laid Y., Lam T.H., Lambrinou C.-P., Landais E., Lanska V., Lappas G., Larijani B., Latt T.S., Lauria L., Lazo-Porras M., Le Nguyen Bao K., Le Port A., Le T.D., Lee J., Lee P.H., Lehmann N., Lehtimaki T., Lemogoum D., Levitt N.S., Li Y., Liivak M., Lilly C.L., Lim W.-Y., Lima-Costa M.F., Lin H.-H., Lin X., Lin Y.-T., Lind L., Linneberg A., Lissner L., Litwin M., Liu J., Liu L., Lo W.-C., Loit H.-M., Long K.Q., Lopes L., Lopes O., Lopez-Garcia E., Lopez T., Lotufo P.A., Lozano J.E., Lukrafka J.L., Luksiene D., Lundqvist A., Lundqvist R., Lunet N., Lunogelo C., Lustigova M., Luszczki E., Ma G., Ma J., Ma X., Machado-Coelho G.L., Machado-Rodrigues A.M., Machi S., Macieira L.M., Madar A.A., Maggi S., Magliano D.J., Magnacca S., Magriplis E., Mahasampath G., Maire B., Majer M., Makdisse M., Maki P., Malekzadeh F., Malhotra R., Mallikharjuna Rao K., Malyutina S.K., Maniego L.V., Manios Y., Mann J.I., Mansour-Ghanaei F., Manzato E., Margozzini P., Markaki A., Markey O., Markidou Ioannidou E., Marques-Vidal P., Marques L.P., Marrugat J., Martin-Prevel Y., Martin R., Martorell R., Martos E., Marventano S., Mascarenhas L.P., Masoodi S.R., Mathiesen E.B., Mathur P., Matijasevich A., Matsha T.E., Mavrogianni C., Mazur A., Mbanya J.C.N., McFarlane S.R., McGarvey S.T., McKee M., McLachlan S., McLean R.M., McLean S.B., McNulty B.A., Mediene-Benchekor S., Medzioniene J., Mehdipour P., Mehlig K., Mehrparvar A.H., Meirhaeghe A., Meisfjord J., Meisinger C., Menezes A.M.B., Menon G.R., Mensink G.B., Menzano M.T., Mereke A., Meshram I.I., Metspalu A., Mi J., Michaelsen K.F., Michels N., Mikkel K., Milkowska K., Miller J.C., Minderico C.S., Mini G.K., Miquel J.F., Mirjalili M.R., Mirkopoulou D., Mirrakhimov E., Misigoj-Durakovic M., Mistretta A., Mocanu V., Modesti P.A., Moghaddam S.S., Mohajer B., Mohamed M.K., Mohamed S.F., Mohammad K., Mohammadi Z., Mohammadifard N., Mohammadpourhodki R., Mohan V., Mohanna S., Mohd Yusoff M.F., Mohebbi I., Mohebi F., Moitry M., Molbo D., Mollehave L.T., Moller N.C., Molnar D., Momenan A., Mondo C.K., Monroy-Valle M., Monterrubio-Flores E., Monyeki K.D.K., Moosazadeh M., Moreira L.B., Morejon A., Moreno L.A., Morgan K., Morin S.N., Mortensen E.L., Moschonis G., Mossakowska M., Mostafa A., Mota-Pinto A., Mota J., Motlagh M.E., Motta J., Moura-dos-Santos M.A., Mridha M.K., Msyamboza K.P., Mu T.T., Muc M., Mugosa B., Muiesan M.L., Mukhtorova P., Muller-Nurasyid M., Murphy N., Mursu J., Murtagh E.M., Musa K.I., Music Milanovic S., Musil V., Mustafa N., Nabipour I., Naderimagham S., Nagel G., Naidu B.M., Najafi F., Nakamura H., Namesna J., Nang E.E.K., Nangia V.B., Nankap M., Narake S., Nardone P., Nauck M., Neal W.A., Nejatizadeh A., Nelis K., Nelis L., Nenko I., Neovius M., Nervi F., Nguyen C.T., Nguyen D., Nguyen Q.N., Nieto-Martinez R.E., Nikitin Y.P., Ning G., Ninomiya T., Nishtar S., Noale M., Noboa O.A., Nogueira H., Norat T., Nordendahl M., Nordestgaard B.G., Noto D., Nowak-Szczepanska N., Nsour M.A., Nuhoglu I., Nurk E., O'Neill T.W., O'Reilly D., Obreja G., Ochimana C., Ochoa-Aviles A.M., Oda E., Oh K., Ohara K., Ohlsson C., Ohtsuka R., Olafsson O., Olinto M.T.A., Oliveira I.O., Omar M.A., Onat A., Ong S.K., Ono L.M., Ordunez P., Ornelas R., Ortiz A.P., Ortiz P.J., Osler M., Osmond C., Ostojic S.M., Ostovar A., Otero J.A., Overvad K., Owusu-Dabo E., Paccaud F.M., Padez C., Pagkalos I., Pahomova E., Paiva K.M.D., Pajak A., Palli D., Palloni A., Palmieri L., Pan W.-H., Panda-Jonas S., Pandey A., Panza F., Papandreou D., Park S.-W., Park S., Parnell W.R., Parsaeian M., Pascanu I.M., Pasquet P., Patel N.D., Pednekar M.S., Peer N., Peixoto S.V., Peltonen M., Pereira A.C., Peres M.A., Perez-Farinos N., Perez C.M., Peterkova V., Peters A., Petersmann A., Petkeviciene J., Petrauskiene A., Pettenuzzo E., Peykari N., Pham S.T., Pichardo R.N., Pierannunzio D., Pigeot I., Pikhart H., Pilav A., Pilotto L., Pistelli F., Pitakaka F., Piwonska A., Pizarro A.N., Plans-Rubio P., Poh B.K., Pohlabeln H., Pop R.M., Porta M., Posch G., Poudyal A., Poulimeneas D., Pouraram H., Pourfarzi F., Pourshams A., Poustchi H., Pradeepa R., Price A.J., Price J.F., Providencia R., Puder J.J., Pudule I., Puhakka S.E., Puiu M., Punab M., Qasrawi R.F., Qorbani M., Quoc Bao T., Radic I., Radisauskas R., Rahimikazerooni S., Rahman M., Raitakari O., Raj M., Rakhimova E., Rakhmatulloev S., Rakovac I., Ramachandra Rao S., Ramachandran A., Ramke J., Ramos E., Ramos R., Rampal L., Rampal S., Rarra V., Rascon-Pacheco R.A., Rasmussen M., Rech C.R., Redon J., Reganit P.F.M., Regecova V., Revilla L., Rezaianzadeh A., Ribas-Barba L., Ribeiro R., Riboli E., Richter A., Rigo F., Rinaldo N., Rinke de Wit T.F., Rito A., Ritti-Dias R.M., Rivera J.A., Robitaille C., Roccaldo R., Rodrigues D., Rodriguez-Artalejo F., Rodriguez-Perez M.D.C., Rodriguez-Villamizar L.A., Roggenbuck U., Rojas-Martinez R., Rojroongwasinkul N., Romaguera D., Romeo E.L., Rosario R.V., Rosengren A., Rouse I., Roy J.G., Rubinstein A., Ruhli F.J., Ruidavets J.-B., Ruiz-Betancourt B.S., Ruiz Moreno E., Rusakova I.A., Russell Jonsson K., Russo P., Rust P., Rutkowski M., Sabanayagam C., Sacchini E., Sachdev H.S., Sadjadi A., Safarpour A.R., Safi S., Safiri S., Saidi O., Saki N., Salanave B., Salazar Martinez E., Salmeron D., Salomaa V., Salonen J.T., Salvetti M., Samoutian M., Sanchez-Abanto J., Sandjaja, Sans S., Santa Marina L., Santos D.A., Santos I.S., Santos L.C., Santos M.P., Santos O., Santos R., Santos Sanz S., Saramies J.L., Sardinha L.B., Sarrafzadegan N., Sathish T., Saum K.-U., Savva S., Savy M., Sawada N., Sbaraini M., Scazufca M., Schaan B.D., Schaffrath Rosario A., Schargrodsky H., Schienkiewitz A., Schindler K., Schipf S., Schmidt C.O., Schmidt I.M., Schnohr P., Schottker B., Schramm S., Schroder H., Schultsz C., Schutte A.E., Sebert S., Sein A.A., Selamat R., Sember V., Sen A., Senbanjo I.O., Sepanlou S.G., Sequera V., Serra-Majem L., Servais J., Sevcikova L., Shalnova S.A., Shamah-Levy T., Shamshirgaran M., Shanthirani C.S., Sharafkhah M., Sharma S.K., Shaw J.E., Shayanrad A., Shayesteh A.A., Shengelia L., Shi Z., Shibuya K., Shimizu-Furusawa H., Shin D.W., Shin Y., Shirani M., Shiri R., Shrestha N., Si-Ramlee K., Siani A., Siantar R., Sibai A.M., Silva A.M., Silva D.A.S., Simon M., Simons J., Simons L.A., Sjoberg A., Sjostrom M., Skodje G., Slowikowska-Hilczer J., Slusarczyk P., Smeeth L., So H.-K., Soares F.C., Sobek G., Sobngwi E., Sodemann M., Soderberg S., Soekatri M.Y., Soemantri A., Sofat R., Solfrizzi V., Somi M.H., Sonestedt E., Song Y., Sorgjerd E.P., Sossa Jerome C., Soto-Rojas V.E., Soumare A., Sovic S., Sparboe-Nilsen B., Sparrenberger K., Spinelli A., Spiroski I., Staessen J.A., Stamm H., Stathopoulou M.G., Staub K., Stavreski B., Steene-Johannessen J., Stehle P., Stein A.D., Stergiou G.S., Stessman J., Stevanovic R., Stieber J., Stockl D., Stocks T., Stokwiszewski J., Stoyanova E., Stratton G., Stronks K., Strufaldi M.W., Sturua L., Suarez-Medina R., Suka M., Sun C.-A., Sundstrom J., Sung Y.-T., Sunyer J., Suriyawongpaisal P., Swinburn B.A., Sy R.G., Syddall H.E., Sylva R.C., Szklo M., Szponar L., Tai E.S., Tammesoo M.-L., Tamosiunas A., Tan E.J., Tang X., Tanser F., Tao Y., Tarawneh M.R., Tarp J., Tarqui-Mamani C.B., Taxova Braunerova R., Taylor A., Taylor J., Tchibindat F., Tebar W.R., Tell G.S., Tello T., Thankappan K.R., Theobald H., Theodoridis X., Thijs L., Thomas N., Thuesen B.H., Ticha L., Timmermans E.J., Tjonneland A., Tolonen H.K., Tolstrup J.S., Topbas M., Topor-Madry R., Torheim L.E., Tormo M.J., Tornaritis M.J., Torrent M., Torres-Collado L., Toselli S., Traissac P., Tran T.T.-H., Trichopoulos D., Trichopoulou A., Trinh O.T., Trivedi A., Tshepo L., Tsigga M., Tsugane S., Tuliakova A.M., Tulloch-Reid M.K., Tullu F., Tuomainen T.-P., Tuomilehto J., Turley M.L., Tynelius P., Tzotzas T., Tzourio C., Ueda P., Ugel E., Ukoli F.A., Ulmer H., Unal B., Usupova Z., Uusitalo H.M., Uysal N., Vaitkeviciute J., Valdivia G., Vale S., Valvi D., van Dam R.M., Van der Heyden J., van der Schouw Y.T., Van Herck K., Van Minh H., van Valkengoed I.G., Vanderschueren D., Vanuzzo D., Varbo A., Varela-Moreiras G., Varona-Perez P., Vasan S.K., Vega T., Veidebaum T., Velasquez-Melendez G., Velika B., Veronesi G., Verschuren W.M., Victora C.G., Viegi G., Viet L., Villalpando S., Vineis P., Vioque J., Virtanen J.K., Visser M., Visvikis-Siest S., Viswanathan B., Vladulescu M., Vlasoff T., Vocanec D., Volzke H., Voutilainen A., Voutilainen S., Vrijheid M., Vrijkotte T.G., Wade A.N., Wagner A., Waldhor T., Walton J., Wambiya E.O., Wan Bebakar W.M., Wan Mohamud W.N., Wanderley Junior R.D.S., Wang M.-D., Wang N., Wang Q., Wang X., Wang Y.X., Wang Y.-W., Wannamethee S.G., Wareham N., Weber A., Wedderkopp N., Weerasekera D., Weghuber D., Wei W., Weres A., Werner B., Whincup P.H., Widhalm K., Widyahening I.S., Wiecek A., Wilks R.J., Willeit J., Willeit P., Williams J., Wilsgaard T., Wojtyniak B., Wong-McClure R.A., Wong A., Wong J.E., Wong T.Y., Woo J., Woodward M., Wu F.C., Wu J., Wu L.J., Wu S., Xu H., Xu L., Yaacob N.A., Yamborisut U., Yan W., Yang L., Yang X., Yang Y., Yardim N., Yaseri M., Yasuharu T., Ye X., Yiallouros P.K., Yoosefi M., Yoshihara A., You Q.S., You S.-L., Younger-Coleman N.O., Yusof S.M., Yusoff A.F., Zaccagni L., Zafiropulos V., Zakavi S.R., Zamani F., Zambon S., Zampelas A., Zamrazilova H., Zapata M.E., Zargar A.H., Zaw K.K., Zdrojewski T., Zeljkovic Vrkic T., Zeng Y., Zhang L., Zhang Z.-Y., Zhao D., Zhao M.-H., Zhao W., Zhen S., Zheng W., Zheng Y., Zholdin B., Zhou M., Zhu D., Zocalo Y., Zuniga Cisneros J., Zuziak M., and Ezzati M.
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Male ,body-mass index ,ADULTHOOD ,Adolescents ,pituuskasvu ,Pediatrics ,Body Mass Index ,0302 clinical medicine ,Child Development ,nuoret ,Public health surveillance ,Medicine ,Health Status Indicators ,10. No inequality ,Child ,11 Medical and Health Sciences ,Body mass index ,ComputingMilieux_MISCELLANEOUS ,education.field_of_study ,VDP::Medisinske Fag: 700::Helsefag: 800::Samfunnsmedisin, sosialmedisin: 801 ,General Medicine ,Body mass indexes ,kansainvälinen vertailu ,3. Good health ,Geography ,Health ,030220 oncology & carcinogenesis ,Child, Preschool ,Medical and Health sciences ,purl.org/becyt/ford/3 [https] ,medicine.medical_specialty ,School-aged adolescents ,Socio-culturale ,lapset (ikäryhmät) ,Nursing ,territories ,ravinto ,purl.org/becyt/ford/3.3 [https] ,03 medical and health sciences ,School Children ,SDG 3 - Good Health and Well-being ,SYSTEMATIC ANALYSIS ,Humans ,school-aged children and adolescents ,Montenegro ,education ,Science & Technology ,Omvårdnad ,Health sciences, Medical and Health sciences ,Ciências médicas e da saúde ,Bayes Theorem ,Anthropometry ,Adolescent Development ,medicine.disease ,TRENDS ,Height and Body-mass Index ,Faculdade de Ciências Sociais ,UNDERNUTRITION ,Height index trajectories ,Height, body mass index, children , epidemiology ,risk factors, growth ,Stature ,Demography ,Settore MED/09 - Medicina Interna ,Internationality ,[SDV]Life Sciences [q-bio] ,030204 cardiovascular system & hematology ,Body-mass index trajectories ,Epidemiology ,Medicine and Health Sciences ,risk factors ,countries ,EPIDEMIOLOGY ,height ,children ,adolescents ,BMI ,030212 general & internal medicine ,painoindeksi ,Child development ,2. Zero hunger ,Medicine(all) ,School age child ,obestity children cardiovascular ,Population Health ,1. No poverty ,Pediatrik ,Public Health, Global Health, Social Medicine and Epidemiology ,3142 Public health care science, environmental and occupational health ,Pooled analysis ,NUTRITION ,Female ,medicine.symptom ,pooled analysis ,Life Sciences & Biomedicine ,terveys ,height, BMI, nutrition, health, children, adolescents ,Adolescent ,growth ,Population ,body-mass ,Population based ,Body-mass index ,Young Adult ,Medicine, General & Internal ,Meta-Analysis as Topic ,General & Internal Medicine ,parasitic diseases ,Weight gain ,School-aged childrens ,Age trajectories ,business.industry ,Height ,Weight ,Body Height ,Folkhälsovetenskap, global hälsa, socialmedicin och epidemiologi ,Malnutrition ,ONSET ,Ciências da Saúde, Ciências médicas e da saúde ,School-aged children ,VDP::Medical disciplines: 700::Health sciences: 800::Community medicine, Social medicine: 801 ,business ,terveysriskit ,Estilos de Vida e Impacto na Saúde - Abstract
BACKGROUND: Comparable global data on health and nutrition of school-aged children and adolescents are scarce. We aimed to estimate age trajectories and time trends in mean height and mean body-mass index (BMI), which measures weight gain beyond what is expected from height gain, for school-aged children and adolescents., METHODS: For this pooled analysis, we used a database of cardiometabolic risk factors collated by the Non-Communicable Disease Risk Factor Collaboration. We applied a Bayesian hierarchical model to estimate trends from 1985 to 2019 in mean height and mean BMI in 1-year age groups for ages 5–19 years. The model allowed for non-linear changes over time in mean height and mean BMI and for non-linear changes with age of children and adolescents, including periods of rapid growth during adolescence., FINDINGS: We pooled data from 2181 population-based studies, with measurements of height and weight in 65 million participants in 200 countries and territories. In 2019, we estimated a difference of 20 cm or higher in mean height of 19-year-old adolescents between countries with the tallest populations (the Netherlands, Montenegro, Estonia, and Bosnia and Herzegovina for boys; and the Netherlands, Montenegro, Denmark, and Iceland for girls) and those with the shortest populations (Timor-Leste, Laos, Solomon Islands, and Papua New Guinea for boys; and Guatemala, Bangladesh, Nepal, and Timor-Leste for girls). In the same year, the difference between the highest mean BMI (in Pacific island countries, Kuwait, Bahrain, The Bahamas, Chile, the USA, and New Zealand for both boys and girls and in South Africa for girls) and lowest mean BMI (in India, Bangladesh, Timor-Leste, Ethiopia, and Chad for boys and girls; and in Japan and Romania for girls) was approximately 9–10 kg/m2. In some countries, children aged 5 years started with healthier height or BMI than the global median and, in some cases, as healthy as the best performing countries, but they became progressively less healthy compared with their comparators as they grew older by not growing as tall (eg, boys in Austria and Barbados, and girls in Belgium and Puerto Rico) or gaining too much weight for their height (eg, girls and boys in Kuwait, Bahrain, Fiji, Jamaica, and Mexico; and girls in South Africa and New Zealand). In other countries, growing children overtook the height of their comparators (eg, Latvia, Czech Republic, Morocco, and Iran) or curbed their weight gain (eg, Italy, France, and Croatia) in late childhood and adolescence. When changes in both height and BMI were considered, girls in South Korea, Vietnam, Saudi Arabia, Turkey, and some central Asian countries (eg, Armenia and Azerbaijan), and boys in central and western Europe (eg, Portugal, Denmark, Poland, and Montenegro) had the healthiest changes in anthropometric status over the past 3·5 decades because, compared with children and adolescents in other countries, they had a much larger gain in height than they did in BMI. The unhealthiest changes—gaining too little height, too much weight for their height compared with children in other countries, or both—occurred in many countries in sub-Saharan Africa, New Zealand, and the USA for boys and girls; in Malaysia and some Pacific island nations for boys; and in Mexico for girls., INTERPRETATION: The height and BMI trajectories over age and time of school-aged children and adolescents are highly variable across countries, which indicates heterogeneous nutritional quality and lifelong health advantages and risks., Wellcome Trust, AstraZeneca Young Health Programme, EU., peer-reviewed
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- 2020
45. Interactions of dietary protein and adiposity measures in relation to subsequent changes in body weight and waist circumference.
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Ankarfeldt MZ, Angquist L, Jakobsen MU, Overvad K, Tjønneland A, Halkjaer J, Astrup A, and Sørensen TI
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- Body Mass Index, Diet, Feeding Behavior, Female, Follow-Up Studies, Humans, Male, Middle Aged, Obesity epidemiology, Adiposity physiology, Body Weight drug effects, Dietary Proteins administration & dosage, Waist Circumference drug effects
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Objective: To investigate if dietary protein and degree of adiposity interacts in relation to change in body weight and waist circumference (WC) in the general population., Methods: In total 22,433 middle-aged individuals with dietary assessment at baseline and anthropometry at baseline and at follow-up about 5 years later were analyzed with multiple linear regression and dietary macronutrient substitution models. Interactions between dietary protein and baseline body mass index (BMI) and baseline WC adjusted for BMI (WCBMI ) (divided in tertiles; nine groups total), were analyzed in relation to changes in body weight (BW) and changes WC adjusted for change in BW., Results: Baseline intake of protein was not significantly associated with changes in weight or waist circumference. Across the nine groups of baseline BMI and WCBMI there were no distinct trends in the associations between dietary protein, whether replacing carbohydrate or fat, and weight change. However, individuals in the highest tertile of baseline BMI (irrespective of baseline WCBMI ) had significantly inverse change in waist circumference when protein replaced carbohydrate, but not when protein replaced fat., Conclusion: Replacing carbohydrate with protein in the diet may prevent a relative increase in WC in individuals with a greater BMI., (© 2014 The Obesity Society.)
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- 2014
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46. Dietary ascorbic acid and subsequent change in body weight and waist circumference: associations may depend on genetic predisposition to obesity--a prospective study of three independent cohorts.
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Larsen SC, Angquist L, Ahluwalia TS, Skaaby T, Roswall N, Tjønneland A, Halkjær J, Overvad K, Pedersen O, Hansen T, Linneberg A, Husemoen LL, Toft U, Heitmann BL, and Sørensen TI
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- Body Mass Index, Cohort Studies, Denmark, Female, Humans, Male, Middle Aged, Polymorphism, Single Nucleotide, Prospective Studies, Waist-Hip Ratio, Ascorbic Acid administration & dosage, Body Weight, Diet, Genetic Predisposition to Disease, Obesity genetics, Waist Circumference
- Abstract
Background: Cross-sectional data suggests that a low level of plasma ascorbic acid positively associates with both Body Mass Index (BMI) and Waist Circumference (WC). This leads to questions about a possible relationship between dietary intake of ascorbic acid and subsequent changes in anthropometry, and whether such associations may depend on genetic predisposition to obesity. Hence, we examined whether dietary ascorbic acid, possibly in interaction with the genetic predisposition to a high BMI, WC or waist-hip ratio adjusted for BMI (WHR), associates with subsequent annual changes in weight (∆BW) and waist circumference (∆WC)., Methods: A total of 7,569 participants' from MONICA, the Diet Cancer and Health study and the INTER99 study were included in the study. We combined 50 obesity associated single nucleotide polymorphisms (SNPs) in four genetic scores: a score of all SNPs and a score for each of the traits (BMI, WC and WHR) with which the SNPs associate. Linear regression was used to examine the association between ascorbic acid intake and ΔBW or ΔWC. SNP-score × ascorbic acid interactions were examined by adding product terms to the models., Results: We found no significant associations between dietary ascorbic acid and ∆BW or ∆WC. Regarding SNP-score × ascorbic acid interactions, each additional risk allele of the 14 WHR associated SNPs associated with a ∆WC of 0.039 cm/year (P = 0.02, 95% CI: 0.005 to 0.073) per 100 mg/day higher ascorbic acid intake. However, the association to ∆WC only remained borderline significant after adjustment for ∆BW., Conclusion: In general, our study does not support an association between dietary ascorbic acid and ∆BW or ∆WC, but a diet with a high content of ascorbic acid may be weakly associated to higher WC gain among people who are genetically predisposed to a high WHR. However, given the quite limited association any public health relevance is questionable.
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- 2014
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47. Variation in genes related to hepatic lipid metabolism and changes in waist circumference and body weight.
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Meidtner K, Fisher E, Angquist L, Holst C, Vimaleswaran KS, Boer JM, Halkjær J, Masala G, Ostergaard JN, Mortensen LM, van der A DL, Tjønneland A, Palli D, Overvad K, Wareham NJ, Loos RJ, Sørensen TI, and Boeing H
- Abstract
We analysed single nucleotide polymorphisms (SNPs) tagging the genetic variability of six candidate genes (ATF6, FABP1, LPIN2, LPIN3, MLXIPL and MTTP) involved in the regulation of hepatic lipid metabolism, an important regulatory site of energy balance for associations with body mass index (BMI) and changes in weight and waist circumference. We also investigated effect modification by sex and dietary intake. Data of 6,287 individuals participating in the European prospective investigation into cancer and nutrition were included in the analyses. Data on weight and waist circumference were followed up for 6.9 ± 2.5 years. Association of 69 tagSNPs with baseline BMI and annual changes in weight as well as waist circumference were investigated using linear regression analysis. Interactions with sex, GI and intake of carbohydrates, fat as well as saturated, monounsaturated and polyunsaturated fatty acids were examined by including multiplicative SNP-covariate terms into the regression model. Neither baseline BMI nor annual weight or waist circumference changes were significantly associated with variation in the selected genes in the entire study population after correction for multiple testing. One SNP (rs1164) in LPIN2 appeared to be significantly interacting with sex (p = 0.0003) and was associated with greater annual weight gain in men (56.8 ± 23.7 g/year per allele, p = 0.02) than in women (-25.5 ± 19.8 g/year per allele, p = 0.2). With respect to gene-nutrient interaction, we could not detect any significant interactions when accounting for multiple testing. Therefore, out of our six candidate genes, LPIN2 may be considered as a candidate for further studies.
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- 2014
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48. Compass: a hybrid method for clinical and biobank data mining.
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Krysiak-Baltyn K, Nordahl Petersen T, Audouze K, Jørgensen N, Angquist L, and Brunak S
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- Algorithms, Breast Neoplasms epidemiology, Denmark, Female, Humans, Infertility, Male epidemiology, Male, Phenotype, Prostatic Neoplasms epidemiology, Surveys and Questionnaires, Toxicogenetics, Biological Specimen Banks, Data Mining methods, Information Storage and Retrieval
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We describe a new method for identification of confident associations within large clinical data sets. The method is a hybrid of two existing methods; Self-Organizing Maps and Association Mining. We utilize Self-Organizing Maps as the initial step to reduce the search space, and then apply Association Mining in order to find association rules. We demonstrate that this procedure has a number of advantages compared to traditional Association Mining; it allows for handling numerical variables without a priori binning and is able to generate variable groups which act as "hotspots" for statistically significant associations. We showcase the method on infertility-related data from Danish military conscripts. The clinical data we analyzed contained both categorical type questionnaire data and continuous variables generated from biological measurements, including missing values. From this data set, we successfully generated a number of interesting association rules, which relate an observation with a specific consequence and the p-value for that finding. Additionally, we demonstrate that the method can be used on non-clinical data containing chemical-disease associations in order to find associations between different phenotypes, such as prostate cancer and breast cancer., (Copyright © 2013 Elsevier Inc. All rights reserved.)
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- 2014
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49. Long-term weight changes in obese young adult men and subsequent all-cause mortality.
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Zimmermann E, Berentzen TL, Angquist L, Holst C, and Sørensen TI
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- Adolescent, Adult, Age of Onset, Aged, Body Mass Index, Body Weight, Denmark epidemiology, Follow-Up Studies, Humans, Life Style, Male, Middle Aged, Obesity complications, Prevalence, Proportional Hazards Models, Risk Factors, Time Factors, Young Adult, Obesity mortality, Weight Gain, Weight Loss
- Abstract
Background: Although the expectation is that weight gain increases mortality and weight loss among those overweight reduces mortality, results on weight gain and mortality in young adults are conflicting, and weight loss is less explored. We investigated the association between long-term weight change and all-cause mortality in a broad range of body mass index (BMI) in young men., Methods: Among 362200 Danish draftees, examined between 1943 and 1977, all obese (BMI 31.0 kg m(-2); n=1930), and a random 1% sample of the others (n=3601) were identified at a mean age of 20 years (range: 18-25 years). All the obese and half the controls were re-examined between 4 and 40 years later (mean age 35 years). Weight changes were defined as: weight loss <-0.1 kg m(-2) per year, weight stability within ±0.1 kg m(-2) per year and weight gain >0.1 kg m(-2) per year. Hazard ratios (HR) and 95% confidence intervals (CI) were estimated using Cox regression., Results: Among the 908 obese and 1073 controls followed for 30 years after re-examination 220 and 232 died. HR of the weight stable obese was 2.32 (CI: 1.56-3.44) compared with the weight stable controls. In the obese cohort there was no association between weight loss, adjusted for initial BMI, and mortality (HR: 0.99; CI: 0.68-1.45) compared with weight stable obese. Too few controls lost weight to allow assessment of weight loss. Weight gain was associated with increased mortality in the obese (HR: 1.50; CI: 1.07-2.10) and controls (HR: 1.54; CI: 1.14-2.09) compared with weight stable obese and controls, respectively. Neither the time between the two examinations, life-style factors nor exclusion of diseased individuals influenced the results., Conclusions: Although there were increased mortality of the weight-stable obese compared with controls, there was no association between weight loss and mortality in the obese. Weight gain increased mortality regardless of the initial weight.
- Published
- 2013
- Full Text
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50. Combined influence of leisure-time physical activity and hip circumference on all-cause mortality.
- Author
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Østergaard JN, Grønbaek M, Angquist L, Schnohr P, Sørensen TI, and Heitmann BL
- Subjects
- Adult, Aged, Aged, 80 and over, Denmark, Female, Humans, Leisure Activities, Male, Middle Aged, Proportional Hazards Models, Sex Factors, Young Adult, Body Size, Cause of Death, Exercise physiology, Hip, Muscle, Skeletal pathology, Muscular Atrophy mortality
- Abstract
Unlabelled: Hip circumference has been shown to be inversely associated with mortality. Muscle atrophy in the gluteofemoral region may be a possible explanation and thus physical activity is likely to play an important role., Objective: To estimate the combined effects of hip circumference and physical activity on mortality., Design and Methods: From the Copenhagen City Heart Study, 3,358 men and 4,350 women aged 21 to 93 years without pre-existing diagnosis of diabetes, stroke, ischemic heart disease, or cancer in 1991-1994 and with complete information on the variables of interest were included in the analyses. The participants were followed to 2009 in the Danish Civil Registration System, with 1.3% loss to follow-up and 2,513 deaths. Hazard ratios (HR) were estimated for combinations of physical activity and hip circumference., Results: Hip circumference was inversely associated with mortality irrespective of being physically active or not. However, being physically active seemed to counterbalance some of the adverse health effects of a small hip circumference; when comparing inactive to active, the excess mortality at the 25th percentile of hip circumference is 40% in men (HR = 1.40, 95% CI: 1.14-1.72) and 33% in women (HR = 1.33, CI: 1.10-1.62). These associations were observed after adjustment for waist circumference and weight change in the 6 months before the examination., Conclusion: Less effects of physical activity were found in individuals with greater hip circumferences. A small hip circumference appears hazardous to survival. However, being physically active may counterbalance some of the hazardous effects of a small hip circumference., (Copyright © 2012 The Obesity Society.)
- Published
- 2013
- Full Text
- View/download PDF
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