14 results on '"Ma, Xueyan"'
Search Results
2. Diagnostic performance of AI-based motion-compensated reconstruction in coronary CT angiography for patients with different heart rates
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Ma, Xueyan
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AIDS ,Colonography CT ,Arteriosclerosis ,Haemodynamics / Flow dynamics ,CAD ,Cardiac ,CT - Abstract
Purpose Methods and materials Results Conclusion Personal information and conflict of interest References, Purpose: Aim of the study was to explore the effects of the second-generation spectral CT and AI-based motion-compensated reconstruction (MCR) on coronary image quality and coronary evaluability in different heart rate...
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- 2023
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3. Study on Anti-pneumonia Mechanisms of Honeysuckle Based on Network Pharmacology
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Chen Bai, Ma Xueyan, Hui Liu, Fuyang Xian, Shaoyang Liu, Chaojun Long, He Yu, Tiegang Liu, and Gu Xiaohong
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Background: Honeysuckle is a traditional Chinese herbal medicine. It is widely used in the treatment of respiratory infectious diseases in Asia and even worldwide reported in the literature. However, its mechanism remains unclear. Pneumonia is one of the most common clinical manifestations of respiratory infections. This study is aim to find out the molecular mechanism of honeysuckle in the treatment of pneumonia.Methods: LPS-induced pneumonia rats were administered with honeysuckle decoction and compared its efficacy with dexamethasone. The components in honeysuckle decoction were analyzed by liquid-phase mass spectrometry. The target proteins for those components were obtained by database search, target fishing and text mining methods, and then were matched with the genes of pneumonia in the CTD database. Analyzed interactions of target protein by using String database, enrichment analysis by David database, molecular docking was performed by AUTODOCK and PyRx. Its related network diagrams drew by Cytoscape.Results: Our results indicate that honeysuckle can alleviate the inflammation of rat lung tissue to a certain extent, and has similar therapeutic effects as dexamethasone. There are 31 compounds in honeysuckle, and 366 genes associated with these compounds and pneumonia. Among them, 18 of the top 5%, including GAPDH, TNF, FOS, VEGFA, BDNF, etc., were enriched in pathway closely related to pneumonia: Glycine, serine and threonine metabolism, Nitrogen metabolism, and Neuroactive ligand-receptor interaction, etc. The results of molecular docking confirmed that Inosito binds to the PTEN protein of the Phosphatidylinositol signaling system pathway.Conclusions: This study suggests that honeysuckle can play a role in the treatment of pneumonia by affecting multiple targets and pathways, of which Inosito-PTEN-Phosphatidylinositol signaling system may be the most important mechanism. This reflects the multi-target multi-pathway of traditional Chinese medicine, and has a certain specific therapeutic effect on the disease. By interfering with the signaling pathways of the body cells, honeysuckle can be used as a drug candidate for clinical pneumonia treatment.
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- 2021
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4. Global control of colored moiré pattern in layered optical structures
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Hongqin Ma, Kunyang Li, Ma Xueyan, Haowen Liang, Yangui Zhou, Jianying Zhou, and Pan Di
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Materials science ,business.industry ,Visibility (geometry) ,Physics::Optics ,Fresnel lens ,02 engineering and technology ,Moiré pattern ,021001 nanoscience & nanotechnology ,01 natural sciences ,Atomic and Molecular Physics, and Optics ,Electronic, Optical and Magnetic Materials ,law.invention ,010309 optics ,Optics ,Colored ,law ,0103 physical sciences ,Electrical and Electronic Engineering ,Physical and Theoretical Chemistry ,0210 nano-technology ,business - Abstract
Accurate description of visual effect of colored moire pattern caused by layered optical structures consisting of gratings and Fresnel lens is proposed in this work. The colored moire arising from the periodic and quasi-periodic structures is numerically simulated and experimentally verified. It is found that the visibility of moire pattern generated by refractive optical elements is related to not only the spatial structures of gratings but also the viewing angles. To effectively control the moire visibility, two constituting gratings are slightly separated. Such scheme is proved to be effective to globally eliminate moire pattern for displays containing refractive optical films with quasi-periodic structures.
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- 2018
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5. An improved method for in vitro culture of glochidia in freshwater mussel Cristaria plicata (Mollusca, Bivalvia)
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Dan Hua, Wu Jin, Hai-Bo Wen, Ma Xueyan, Zou Jun, Pao Xu, and Gu Ruobo
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0106 biological sciences ,Germplasm ,biology ,Ecology ,Host (biology) ,010604 marine biology & hydrobiology ,media_common.quotation_subject ,Zoology ,Mussel ,Aquatic Science ,Bivalvia ,biology.organism_classification ,010603 evolutionary biology ,01 natural sciences ,Cristaria plicata ,Juvenile ,Metamorphosis ,Mollusca ,media_common - Abstract
We established an improved method for in vitro culture of glochidia in freshwater mussel Cristaria plicata and compared the transformation percentage in L-15 basic medium supplemented with different plasma from host fish or two non-host fish species. The results showed that the metamorphosis rate of glochidia cultured with host fish plasma and non-host fish plasma was all above 96%. High-density lipoprotein and low-density lipoprotein (LDL) levels were significantly lower in host fish plasma than in non-host fish plasma (P 0.05). The method developed herein not only provides a simplified in vitro culture method for glochidia at a reduced cost, but it also improves the culture efficiency. The method and medium composition may be further improved in studies investigating the long-term growth of juvenile mussels, and it would greatly benefit artificial breeding and germplasm resource preservation for this important species.
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- 2017
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6. Effects of Ca2+ Concentration on Anaerobic Ammonium Oxidation Reactor Microbial Community Structure
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Zhang Wenjie, Jin Yue, and Ma Xueyan
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lcsh:Hydraulic engineering ,Microorganism ,Geography, Planning and Development ,02 engineering and technology ,010501 environmental sciences ,Aquatic Science ,01 natural sciences ,Biochemistry ,chemistry.chemical_compound ,lcsh:Water supply for domestic and industrial purposes ,lcsh:TC1-978 ,Ammonium ,calcium concentration ,0105 earth and related environmental sciences ,Water Science and Technology ,lcsh:TD201-500 ,biology ,021001 nanoscience & nanotechnology ,biology.organism_classification ,Wastewater ,Microbial population biology ,chemistry ,Anammox ,microbial community structure ,Environmental chemistry ,Sewage treatment ,anammox ,Proteobacteria ,0210 nano-technology ,Acidobacteria - Abstract
The anaerobic ammonium oxidation (anammox) reaction removes nitrogen from wastewater, the performance of which is influenced by Ca2+, however, the effect of Ca2+ on microbial community structure is unclear. Therefore, the effects of Ca2+ concentration on the treatment performance of an anammox reactor and microbial community structure of anammox sludge were investigated. Ca2+ concentration minimally influenced the removal efficiency of NO2&minus, &ndash, N and NH4+&ndash, N, but substantially influenced total N removal. Changing the Ca2+ concentration (between 25 and 125 mg/L) caused the average removal rate of total nitrogen to fluctuate by 3.3 percentage points. There were five major bacterial phyla in the anammox sludge: Proteobacteria, Chloroflexi, Acidobacteria, Planctomycete, and Chlorobi. Microbiological analysis revealed that the genera Acidobacterium, Anaerolinea, and Denitratisoma were positively correlated with Ca2+ concentration, and improved treatment performance of the anammox reactor. Moreover, uncultured Chlorobi bacterium clone RUGL1-218 (GQ421108.1) and uncultured sludge bacterium A21b (KT182572.1) may be key microorganisms for the immobilization of anammox bacteria. These findings offer a theoretical basis for improved wastewater treatment using the anammox process.
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- 2019
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7. Effects of drought on the trade-off growth of leaf traits of summer maize in the seedling stage
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麻雪艳 Ma Xueyan and 周广胜 Zhou Guangsheng
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Ecology ,biology ,Agronomy ,Seedling ,Stage (hydrology) ,biology.organism_classification ,Trade-off ,Ecology, Evolution, Behavior and Systematics - Published
- 2018
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8. Effect of drought on leaf gas exchange in Summer Maize
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麻雪艳 Ma Xueyan and 周广胜 Zhou Guangsheng
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Ecology ,0208 environmental biotechnology ,040103 agronomy & agriculture ,0401 agriculture, forestry, and fisheries ,Environmental science ,04 agricultural and veterinary sciences ,02 engineering and technology ,Ecology, Evolution, Behavior and Systematics ,020801 environmental engineering - Published
- 2018
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9. Responses and tipping point of summer maize to consecutive soil water decrease
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麻雪艳 Ma Xueyan, 冯晓钰 Feng Xiaoyu, 石耀辉 Shi Yaohui, 周广胜 Zhou Guangsheng, and 王秋玲 Wang Qiuling
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Hydrology ,Tipping point (physics) ,Ecology ,Soil water ,Environmental science ,Ecology, Evolution, Behavior and Systematics - Published
- 2018
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10. Thresholds of Stipa baicalensis sensitive indicators response to precipitation change
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蒋延玲 Jiang Yanling, 石耀辉 Shi Yaohui, 周广胜 Zhou Guangsheng, 许振柱 Xu Zhenzhu, 麻雪艳 Ma Xueyan, and 王慧 Wang Hui
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Ecology ,Agronomy ,Stipa baicalensis ,Environmental science ,Precipitation ,Ecology, Evolution, Behavior and Systematics - Published
- 2017
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11. Tunneling Ionization of Atoms and Molecules in Femtosecond-Laser Fields and its Applications
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马雪岩 Ma Xueyan, 韩猛 Han Meng, 郭振宁 Guo Zhenning, 刘运全 Liu Yunquan, 刘明明 Liu Mingming, and 葛佩佩 Ge Peipei
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Materials science ,law ,Ionization ,Femtosecond ,Atoms in molecules ,Electrical and Electronic Engineering ,Atomic physics ,Laser ,Atomic and Molecular Physics, and Optics ,Quantum tunnelling ,Electronic, Optical and Magnetic Materials ,law.invention - Published
- 2019
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12. Method of determining the maximum leaf area index of spring maize and its application
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周广胜 Zhou Guangsheng and 麻雪艳 Ma Xueyan
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geography ,geography.geographical_feature_category ,Ecology ,Agronomy ,Field experiment ,Agricultural ecosystems ,Spring (hydrology) ,Seeding ,Leaf area index ,Ecology, Evolution, Behavior and Systematics ,Mathematics - Abstract
Maize photosynthate basically stops its allocation to nutrition organs when the leaf area index reaches its maximum,which is a sign of maize entering the reproductive stage.Based on the field experiment data of spring maize with different maize varieties from Jinzhou Agricultural Ecosystem Research Station during 2005—2011,this paper found that spring maize maximum leaf area index appeared around 2 weeks after the silking stage,and put forward an indicator for determining the maximum leaf area index of spring maize,that is,≥10℃ effective accumulated temperature from the seeding to the maximum leaf area index is 1085.3 ℃·d and(or) 1010.4 ℃·d from the emergence to the maximum leaf area index.Thus,a universal dynamic model of spring maize relative leaf area index was developed on the basis of modified logistic equation.The results would provide reference for accurate simulation of leaf growth and photosynthate allocation of spring maize.
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- 2013
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13. Research on searching algorithm for test data generation
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Zhang Wei, Ma Xueyan, and Wan Lin
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Model-based testing ,Test data generation ,Computer science ,Search-based software engineering ,Software performance testing ,Fuzz testing ,computer.software_genre ,Search algorithm ,Non-regression testing ,Software construction ,Genetic algorithm ,Software reliability testing ,Test Management Approach ,Data mining ,computer ,Orthogonal array testing - Abstract
Test data generation is a complicated problem in software testing area and its method and technique are not mature. Program executing method show some advantages for its dynamic feature. But the searching algorithm can not be satisfactory. The paper introduces some methods for improving searching algorithm based on the understanding of typical algorithm. The goal is improving its efficiency and practicability.
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- 2004
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14. World Congress Integrative Medicine & Health 2017: Part one : Berlin, Germany. 3-5 May 2017
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Brinkhaus, Benno, Falkenberg, Torkel, Haramati, Aviad, Willich, Stefan N., Briggs, Josephine P., Willcox, Merlin, Linde, Klaus, Theorell, Töres, Wong, Lisa M., Dusek, Jeffrey, Wu, Darong, Eisenberg, David, Berger, Bettina, Kemper, Kathi, Stock-Schröer, Beate, Sützl-Klein, Hedda, Ferreri, Rosaria, Kaplan, Gary, Matthes, Harald, Rotter, Gabriele, Schiff, Elad, Arnon, Zahi, Hahn, Eckhard, Luberto, Christina M., Martin, David, Schwarz, Silke, Tauschel, Diethard, Flower, Andrew, Gramminger, Harsha, Gupta, Hedwig H., Gupta, S. N., Kerckhoff, Annette, Kessler, Christian S., Michalsen, Andreas, Kim, Eun S., Jang, Eun H., Kim, Rana, Jan, Sae B., Mittwede, Martin, Mohme, Wiebke, Ben-Arye, Eran, Bonucci, Massimo, Saad, Bashar, Breitkreuz, Thomas, Rossi, Elio, Kebudi, Rejin, Daher, Michel, Razaq, Samaher, Gafer, Nahla, Nimri, Omar, Hablas, Mohamed, Kienle, Gunver Sophia, Samuels, Noah, Silbermann, Michael, B, Elin, Lena, Lang, Anna-Lena, Wartner, Eva, Holtermann, Christoph, Binstock, Maxwell, Riebau, Robert, Mujkanovic, Edin, Cramer, Holger, Lauche, Romy, Michalsen, Andres, Ward, Lesley, Irnich, Dominik, Stör, Wolfram, Burnstock, Geoffrey, Schaible, Hans-Georg, Ots, Thomas, Langhorst, Jost, Sundberg, Tobias, Amarell, Catherina, Anheyer, Melanie, Eckert, Marion, Ogal, Mercedes, Schönauer, Annette, Reisenberger, Birgit, Bernhard, Dennis Anheyer, Dobos, Gustav, Kroez, Matthias, Ammendola, Aldo, Mao, Jun J., Witt, Claudia, Yang, Yufei, Oritz, Miriam, Horneber, Markus, Voiß, Petra, Rosenstiel, Alex, Amarell, Catharina, Schad, Friedemann, Schläppi, Marc, Kröz, Matthias, Büssing, Arndt, Bar-Sela, Gil, Avshalomov, David, Attias, Samuel, Cotton, Sian, Jong, Miek, Jong, Mats, Scheffer, Christian, Edelhäuser, Friedrich, Albedah, Abdullah, Lee, Myeong Soo, Khalil, Mohamed, Ogawa, Keiko, Motoo, Yoshiharu, Arimitsu, Junsuke, Ogawa, Masao, Shimizu, Genki, Stange, Rainer, Kraft, Karin, Kuchta, Kenny, Watanabe, Kenji, Bonin, D., Gruber, Harald, Koch, Sabine, Pohlmann, Urs, Caldwell, Christine, Krantz, Barbara, Kortum, Ria, Martin, Lily, Wiel, Lisa S., Kligler, Ben, Gould-Fogerite, Susan, Zhang, Yuqing, Riva, John J., Lumpkin, Michael, Ratner, Emily, Ping, Liu, Jian, Pei, Hamme, Gesa-Meyer, Mao, Xiaosong, Chouping, Han, Schröder, Sven, Hummelsberger, Josef, Wullinger, Michael, Brodzky, Marc, Zalpour, Christoff, Langley, Julia, Weber, Wendy, Mudd, Lanay M., Wayne, Peter, Witt, Clauda, Weidenhammer, Wolfgang, Fønnebø, Vinjar, Boon, Heather, Steel, Amie, Bugarcic, Andrea, Rangitakatu, Melisa, Adams, Jon, Sibbritt, David, Wardle, Jon, Leach, Matthew, Schloss, Janet, Dieze, Helene, Ijaz, Nadine, Heinrich, Michael, Lewith, George, Graz, Bertr, Adam, Daniela, Grabenhenrich, Linus, Ortiz, Miriam, Binting, Sylvia, Reinhold, Thomas, Andermo, Susanne, Nordberg, Johanna Hök, Arman, Maria, Bhasin, Manoj, Fan, Xueyi, Libermann, Towia, Fricchione, Gregory, Denninger, John, Benson, Herbert, Martin, David D., Boers, Inge, Vlieger, Arine, Teut, Michael, Ullmann, Alex, Lotz, Fabian, Roll, Stephanie, Canella, Claudia, Mikolasek, Michael, Rostock, Matthias, Beyer, Jörg, Guckenberger, Matthias, Jenewein, Josef, Linka, Esther, Six, Claudia, Stoll, Sarah, Stupp, Roger, Witt, Claudia M., Chuang, Elisabeth, Mckee, Melissa D., Klose, Petra, Lange, Silke, Chung, Vincent C. H., Wong, Hoi L. C., Wu, Xin Y., Wen, Grace Y. G., Ho, Robin S. T., Ching, Jessica Y. L., Wu, Justin C. Y., Coakley, Am, a, Flanagan, Jane, Annese, Christine, Empoliti, Joanne, Gao, Zishan, Liu, Xugang, Yu, Shuguang, Yan, Xianzhong, Liang, Fanrong, Hohmann, Christoph D., Steckhan, Nico, Ostermann, Thomas, Paetow, Arion, Hoff, Evelyn, Hu, Xiao-Yang, Wu, Ruo-Han, Logue, Martin, Blonde, Clara, Lai, Lily Y., Stuart, Beth, Fei, Yu-Tong, Moore, Michael, Liu, Jian-Ping, Jeitler, Michael, Zillgen, Hannah, Högl, Manuel, Stöckigt, Barbara, Seifert, Georg, Kessler, Christian, Khadivzadeh, Talat, Bashtian, Maryam Hassanzadeh, Aval, Shapour Badiee, Esmaily, Habibollah, Kim, Jihye, Kim, Keun H., Klocke, Carina, Joos, Stefanie, Koshak, Abdulrahman, Wie, Li, Koshak, Emad, Wali, Siraj, Alamoudi, Omer, Demerdash, Abdulrahman, Qutub, Majdy, Pushparaj, Peter, Kruse, Sigrid, Fischer, Isabell, Tremel, Nadine, Rosenecker, Joseph, Leung, Brenda, Takeda, Wendy, Liang, Ning, Feng, Xue, Cao, Hui-Juan, Shinday, Nina, Philpotts, Lisa, Park, Elyse, Fricchione, Gregory L., Yeh, Gloria, Munk, Niki, Zakeresfahani, Arash, Foote, Trevor R., Ralston, Rick, Boulanger, Karen, Özbe, Dominik, Gräßel, Elmar, Luttenberger, Katharina, Pendergrass, Anna, Pach, Daniel, Bellmann-Strobl, Judit, Chang, Yinhui, Pasura, Laura, Liu, Bin, Jäger, Sven F., Loerch, Ronny, Jin, Li, Icke, Katja, Shi, Xuemin, Paul, Friedemann, Rütz, Michaela, Lynen, Andreas, Schömitz, Meike, Vahle, Maik, Salomon, Nir, Lang, Alon, Lahat, Adi, Kopylov, Uri, Ben-Horin, Shomron, Har-Noi, Ofir, Avidan, Benjamin, Elyakim, Rami, Gamus, Dorit, Ng, Siew, Chang, Jessica, Wu, Justin, Kaimiklotis, John, Schumann, Dania, Buttó, Ludovica, Haller, Dirk, Smith, Caroline, Lacey, Sheryl, Chapman, Michael, Ratcliffe, Julie, Johnson, Neil, Lyttleton, Jane, Boothroyd, Clare, Fahey, Paul, Tjaden, Bram, Vliet, Marja, Wietmarschen, Herman, Tröger, Wilfried, Vuolanto, Pia, Aarva, Paulina, Sorsa, Minna, Helin, Kaija, Wenzel, Claudia, Zoderer, Iris, Pammer, Patricia, Simon, Patrick, Tucek, Gerhard, Wode, Kathrin, Henriksson, Roger, Sharp, Lena, Stoltenberg, Anna, Xiao-Ying, Yang, Wang, Li-Qiong, Li, Jin-Gen, Wang, Ying, Balneaves, Lynda, Capler, Rielle, Bocci, Chiara, Guffi, Marta, Paolini, Marina, Meaglia, Ilaria, Porcu, Patrizia, Ivaldi, Giovanni B., Dragan, Simona, Bucuras, Petru, Pah, Ana M., Badalica-Petrescu, Marius, Buleu, Florina, Hogea-Stoichescu, Gheorghe, Christodorescu, Rux, Kao, Lan, Cho, Yumin, Klafke, Nadja, Mahler, Cornelia, Hagens, Cornelia, Uhlmann, Lorenz, Bentner, Martina, Schneeweiss, Andreas, Mueller, Andreas, Szecsenyi, Joachim, Neri, Isabella, Schnabel, Katharina, Cree, Margit, Suhr, Ralf, Baccetti, Sonia, Firenzuoli, Fabio, Monechi, Maria V., Di Stefano, Mariella, Amunni, Gianni, Wong, Wendy, Chen, Bingzhong, Amri, Hakima, Kotlyanskaya, Lucy, Anderson, Belinda, Evans, Roni, Marantz, Paul, Bradley, Ryan, Booth-Laforce, Cathryn, Zwickey, Heather, Kligler, Benjamin, Brooks, Audrey, Kreitzer, Mary J., Lebensohn, Patricia, Goldblatt, Elisabeth, Esmel-Esmel, Neus, Jiménez-Herrera, Maria, Jocham, Alex, Berberat, Pascal O., Schneider, Antonius, Masetti, Morgana, Murakozy, Henriette, Agdal, Rita, Atarzadeh, Fatemeh, Jaladat, Amir M., Hoseini, Leila, Amini, Fatemeh, Bai, Chen, Liu, Tiegang, Zheng, Zian, Wan, Yuxiang, Xu, Jingnan, Wang, Xuan, Yu, He, Gu, Xiaohong, Daneshfard, Babak, Nimrouzi, Majid, Tafazoli, Vahid, Alorizi, Seyed M. Emami, Saghebi, Seyed A., Fattahi, Mohammad R., Salehi, Alireza, Rezaeizadeh, Hossein, Zarshenas, Mohammad M., Fox, Kealoha, Hughes, John, Kostanjsek, Nenad, Espinosa, Stéphane, Fisher, Peter, Latif, Abdul, Lefeber, Donald, Paske, William, Öztürk, Ali Ö, Öztürk, Gizemnur, Tissing, Wim, Naafs, Marianne, Busch, Martine, Sanaye, Mohammad R., Dräger, Kilian, Leininger, Brent, Shafto, Kate, Breen, Jenny, Simões-Wüst, Ana P., Moltó-Puigmartí, Carolina, Dongen, Martien, Dagnelie, Pieter, Thijs, Carel, White, Shelley, Wiesener, Solveig, Salamonsen, Anita, Stub, Trine, Abanades, Sergio, Blanco, Mar, Masllorens, Laia, Sala, Roser, Al-Ahnoumy, Shafekah, Han, Dongwoon, He, Luzhu, Kim, Ha Yun, In Choi, Da, Alræk, Terje, Kristoffersen, Agnete, Sceidt, Christel, Bruset, Stig, Musial, Frauke, Anheyer, Dennis, Saha, Felix J., Haller, Heidemarie, Azizi, Hoda, Khadem, Nayereh, Hassanzadeh, Malihe, Estiri, Nazanin, Azizi, Hamideh, Tavassoli, Fatemeh, Lotfalizadeh, Marzieh, Zabihi, Reza, Shabestari, Mahmoud Mohammadzadeh, Paeizi, Reza, Azari, Masoumeh Alv, i, Bahrami-Taghanaki, Hamidreza, Baars, Erik, Bruin, Anja, Ponstein, Anne, Segantini, Sergio, Monechi, Maria Valeria, Voller, Fabio, Barth, Jürgen, Kern, Alex, Lüthi, Sebastian, Zieger, Anja, Otto, Fabius, Beccia, Ariel, Dunlap, Corina, Courneene, Brendan, Bedregal, Paula, Passi, Alvaro, Rodríguez, Alfredo, Chang, Mayling, Gutiérrez, Soledad, Beissner, Florian, Preibisch, Christine, Schweizer-Arau, Annemarie, Popovici, Roxana, Meissner, Karin, Beljanski, Sylvie, Bell, Laura, Rivera-Reyes, Laura, Hwang, Ula, Sethe, Dominik, Hilgard, Dörte, Heusser, Peter, Bishop, Felicity, Al-Abbadey, Miznah, Bradbury, Katherine, Carnes, Dawn, Dimitrov, Borislav, Fawkes, Carol, Foster, Jo, Macpherson, Hugh, Roberts, Lisa, Yardley, Lucy, Holmes, Michelle, Little, Paul, Cooper, Cyrus, Bogani, Patrizia, Maggini, Valentina, Gallo, Eugenia, Miceli, Elisangela, Biffi, Sauro, Mengoni, Alessio, Fani, Renato, S-Guendling, Nadine, Guendling, Peter W., Bronfort, Gert, Haas, Mitch, Schulz, Craig, Bu, Xiangwei, Wang, J., Fang, T., Shen, Z., He, Y., Zhang, X., Zhang, Zhengju, Wang, Dali, Meng, Fengxian, Baumann, Klaus, Frick, Eckhard, Jacobs, Christoph, Grünther, Ralph-Achim, Lötzke, Désirée, Jung, Sonny, Recchia, Daniela R., Robens, Sibylle, Stankewitz, Josephin, Jeitler, Mika, Cheon, Chunhoo, Jang, Bo H., Ko, Seong G., Huang, Ching W., Sasaki, Yui, Ko, Youme, Cheshire, Anna, Ridge, Damien, Peters, David, Panagioti, Maria, Simon, Chantal, Cho, Hyun J., Choi, Soo J., Jung, Young S., Im, Hyea B., Cooley, Kieran, Tummon-Simmons, Laura, Wasson, Rachel, Kraemer, Kristen, Sears, Richard, Hueber, Carly, Derk, Gwendolyn, Lill, Jr, An, Ruopeng, Steinberg, Lois, Rodriguez, Lourdes Diaz, La Fuente, Francisca García-De, La Vega, Miguel, Vargas-Román, Keyla, Fernández-Ruiz, Jonatan, Cantarero-Villanueva, Irene, García-De La Fuente, Francisca, Jiménez-Guerrero, Fanny, Galiano-Castillo, Noelia, Diaz-Saez, Gualberto, Torres-Jimenez, José I., Garcia-Gomez, Olga, Hortal-Muñoz, Luis, Diaz-Diez, Camino, Dicen, Demijon, Diezel, Helene, Frawley, Jane, Broom, Alex, Dong, Fei, Ma, Xueyan, Yan, Liyi, Wu, Liqun, Ma, Jiaju, Zhen, Jianhua, Dubois, Julie, Rodondi, Pierre-Yves, Schwartze, Sophia, Trapp, Barbara, and Cysarz, Dirk
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0106 biological sciences ,0301 basic medicine ,medicine.medical_specialty ,business.industry ,Alternative medicine ,General Medicine ,01 natural sciences ,03 medical and health sciences ,030104 developmental biology ,Complementary and alternative medicine ,Family medicine ,medicine ,Integrative medicine ,business ,010606 plant biology & botany
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