817 results on '"Sakai, D."'
Search Results
2. Measurement of Spin Correlation Coefficient Cy,y3 for Proton-Cy,y3He Elastic Scattering
- Author
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Watanabe, A., Nakai, S., Sekiguchi, K., Goto, S., Hatanaka, K., Hirai, Y., Ino, T., Inomoto, D., Inoue, M., Ishikawa, S., Itoh, M., Kanda, H., Kasahara, H., Maeda, Y., Miki, K., Nonaka, K., Ong, H. J., Oshiro, H., Sakai, D., Sakai, H., Shibuya, S., Tran, D. T., Umetsu, H., Utsuki, Y., and Wakasa, T.
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- 2024
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3. Proton-$\rm ^3He$ elastic scattering at intermediate energies
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Watanabe, A., Nakai, S., Wada, Y., Sekiguchi, K., Deltuva, A., Akieda, T., Etoh, D., Inoue, M., Inoue, Y., Kawahara, K., Kon, H., Miki, K., Mukai, T., Sakai, D., Shibuya, S., Shiokawa, Y., Taguchi, T., Umetsu, H., Utsuki, Y., Watanabe, M., Goto, S., Hatanaka, K., Hirai, Y., Ino, T., Inomoto, D., Inoue, A., Ishikawa, S., Itoh, M., Kanda, H., Kasahara, H., Kobayashi, N., Maeda, Y., Mitsumoto, S., Nakamura, S., Nonaka, K., Ong, H. J., Oshiro, H., Otake, Y., Sakai, H., Taketani, A., Tamii, A., Tran, D. T., Wakasa, T., Wakabayashi, Y., and Wakui, T.
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Nuclear Experiment ,Nuclear Theory - Abstract
We present a precise measurement of the cross section, proton and $\rm ^3He$ analyzing powers, and spin correlation coefficient $C_{y,y}$ for $p$-$\rm ^3He$ elastic scattering near 65 MeV, and a comparison with rigorous four-nucleon scattering calculations based on realistic nuclear potentials and a model with $\Delta$-isobar excitation. Clear discrepancies are seen in some of the measured observables in the regime around the cross section minimum. Theoretical predictions using scaling relations between the calculated cross section and the $\rm ^3 He$ binding energy are not successful in reproducing the data. Large sensitivity to the $NN$ potentials and rather small $\Delta$-isobar effects in the calculated cross section are noticed as different features from those in the deuteron-proton elastic scattering. The results obtained above indicate that $p$-$\rm ^3He$ scattering at intermediate energies is an excellent tool to explore nuclear interactions not accessible by three-nucleon scattering., Comment: 22 pages, 6 figures
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- 2021
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4. Development and fabrication of a thick Ti-[formula omitted]H target for the [formula omitted] experiment at intermediate energies
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Miki, K., Utsuki, Y., Hara, M., Hatano, Y., Imai, N., Inoue, M., Itoh, M., Kameya, K., Kitayama, S., Maruta, Y., Matsuda, Y., Saito, Y., Sakai, D., Uesaka, T., Umetsu, H., Urayama, R., Wang, J., Kamada, K., Shoji, Y., and Yoshikawa, A.
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- 2023
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5. Measurement of 3He analyzing power for p-3He scattering using the polarized 3He target
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Watanabe, A., Nakai, S., Sekiguchi, K., Akieda, T., Etoh, D., Inoue, M., Inoue, Y., Kawahara, K., Kon, H., Miki, K., Mukai, T., Sakai, D., Shibuya, S., Shiokawa, Y., Taguchi, T., Umetsu, H., Utsuki, Y., Wada, Y., Watanabe, M., Itoh, M., Ino, T., Wakui, T., Hatanaka, K., Kanda, H., Ong, H. J., Tran, D. T., Goto, S., Hirai, Y., Inomoto, D., Kasahara, H., Mitsumoto, S., Oshiro, H., Wakasa, T., Maeda, Y., Nonaka, K., Sakai, H., and Uesaka, T.
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Nuclear Experiment - Abstract
Proton-3He scattering is one of the good probes to study the T=3/2 channel of three--nucleon forces. We have measured 3He analyzing powers for p-3He elastic scattering with the polarized 3He target at 70 and 100 MeV. The data are compared with the theoretical predictions based on the modern nucleon--nucleon potentials. Large discrepancies are found between the data and the calculations at the angles where the 3He analyzing power takes the minimum and maximum values, which are not explained by taking into account Delta-isobar degrees of freedom., Comment: 7pages, 3 figures Submission to SciPost
- Published
- 2019
6. Comparison of the Accuracy of Intraoperative Aberrometry in Intraocular Lens Implantation Between Myopic Eyes with Emmetropia and Myopia Targets
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Sakai D, Demoto S, Iwai Y, Hirami Y, Nakamura M, and Kurimoto Y
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cataract surgery ,postoperative refraction ,intentional myopia ,axial myopia ,intraocular lens calculation formula ,Ophthalmology ,RE1-994 - Abstract
Daiki Sakai,1– 3 Sakiko Demoto,1,2 Yukako Iwai,1,2 Yasuhiko Hirami,1,2 Makoto Nakamura,3 Yasuo Kurimoto1,2 1Department of Ophthalmology, Kobe City Eye Hospital, Kobe, Japan; 2Department of Ophthalmology, Kobe City Medical Center General Hospital, Kobe, Japan; 3Department of Surgery, Division of Ophthalmology, Kobe University Graduate School of Medicine, Kobe, JapanCorrespondence: Daiki Sakai, Department of Ophthalmology, Kobe City Eye Hospital, 2-1-8 Minatojima Minamimachi, Chuo-ku, Kobe-shi, Hyogo, 650-0047, Japan, Tel +81-78-381-9876, Fax +81-78-381-9910, Email dsakai1027@gmail.comPurpose: To compare the accuracy of intraoperative aberrometry (IA) for predicting postoperative refraction between eyes with emmetropia and myopia targets.Patients and Methods: This retrospective analysis included patients with axial myopia (axial length ≥ 25.0 mm) who underwent uncomplicated phacoemulsification cataract surgery with IA to achieve emmetropia (plano to − 0.5 D) or intentional myopia (− 2.5 D to − 5.0 D). Preoperative ocular biometry was performed in all eyes using an IOLMaster. Refractive prediction errors in IA were compared between eyes with emmetropia and myopia targets. Refractive prediction errors in IA for both groups were also compared with those predicted by intraocular lens power calculation formulas including the SRK/T, Holladay 1, Hoffer Q, Holladay 2, Haigis, and Barrett Universal II formulas.Results: Thirty-nine eyes of 39 patients with a target of emmetropia and 22 eyes of 22 patients with a target of intentional myopia were included in the final analysis. The mean numerical error was significantly different from zero (myopic trend) in myopia-targeted eyes (− 0.37 ± 0.54 D, one-sample t-test, P = 0.004, 95% confidence interval: − 0.61 to − 0.14), while it was close to zero in emmetropia-targeted eyes. The mean absolute error was significantly smaller in emmetropia-targeted eyes (0.28 ± 0.27 D) than in myopia-targeted eyes (0.51 ± 0.41 D, P = 0.01). IA was revealed as the most accurate method for predicting postoperative refraction in eyes with emmetropia target, whereas Barrett Universal II formula was found to be the most accurate for eyes with myopia target.Conclusion: In patients with axial myopia, the performance of IA was altered when targeting intentional myopia compared with emmetropia. Myopic shift in the refractive outcome should be considered when IA is used to target myopia.Keywords: cataract surgery, postoperative refraction, intentional myopia, axial myopia, intraocular lens calculation formula
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- 2022
7. Photoresponse of La$_{1.85}$Sr$_{0.15}$CuO$_{4}$ nanostrip
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Shibata, H., Kirigane, N., Fukao, K., Sakai, D., Karimoto, S., and Yamamoto, H.
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Condensed Matter - Superconductivity ,Physics - Instrumentation and Detectors ,Quantum Physics - Abstract
We report the fabrication and photoresponse of 5 nm thick La$_{1.85}$Sr$_{0.15}$CuO$_{4}$ nanostrip with a width of 100nm. The I-V characteristics of the nanostrip show a hysteresis and a sharp voltage jump at $I_{c}$. The $J_{c}$(3K) of the nanostrip is 2.3 x 10$^{7}$ A/cm$^{2}$. The nanostrip exhibits photoresponse signals when illuminated by a pulse laser at 1560 nm wavelength with a bias current just below $I_{c}$. The height of the signal reduces as the optical intensity decreases and disappears below -10 dBm. The signal also decreases as the temperature increases, but it exists up to 30 K. These results suggest the possibility of La$_{1.85}$Sr$_{0.15}$CuO$_{4}$ nanostrip as single-photon detector (SSPD, SNSPD) working at high temperature by further reducing the cross-section of the strip.
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- 2017
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8. Accuracy of Intraocular Lens Power Calculation Formulas in Myopic Eyes with Target Refractions of Emmetropia and Intentional Myopia
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Sakai D, Hirami Y, Nakamura M, and Kurimoto Y
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cataract surgery ,postoperative refraction ,intentional myopia ,axial myopia ,iolmaster700 ,Ophthalmology ,RE1-994 - Abstract
Daiki Sakai,1– 3 Yasuhiko Hirami,1,2 Makoto Nakamura,3 Yasuo Kurimoto1,2 1Department of Ophthalmology, Kobe City Eye Hospital, Kobe, Japan; 2Department of Ophthalmology, Kobe City Medical Center General Hospital, Kobe, Japan; 3Department of Surgery, Division of Ophthalmology, Kobe University Graduate School of Medicine, Kobe, JapanCorrespondence: Daiki SakaiDepartment of Ophthalmology, Kobe City Eye Hospital, 2-1-8 Minatojima Minamimachi, Chuo-ku, Kobe-shi, Hyogo, 650-0047, JapanTel +81-78-381-9876Fax +81-78-381-9910Email dsakai1027@gmail.comPurpose: To compare the accuracy of the intraocular lens (IOL) power calculation formulas for predicting the postoperative refraction in eyes with a target of emmetropia or intentional myopia.Patients and Methods: This is a retrospective study conducted at Kobe City Eye Hospital, Kobe, Japan. Fifty eyes of 50 patients with axial myopia who underwent uncomplicated phacoemulsification and single-type IOL implantation for a target of emmetropia (plano to − 0.5 D) or intentional myopia (− 2.0 D to − 3.0 D) were selected. Preoperative ocular biometry was performed using IOLMaster700 in all eyes. Refractive prediction errors of 6 IOL formulas integrated into IOLMaster700 were compared between eyes with a target of emmetropia and intentional myopia.Results: The mean numerical errors of SRK/T (Sanders, Retzlaff, and Kraft/theoretical), Holladay 1, Hoffer Q, and Holladay 2 significantly differed between the two groups (p < 0.001, p = 0.008, 0.02, and 0.007, respectively). The values for mean numerical errors in eyes with a target of intentional myopia were smaller, showing relatively myopic outcome, as compared with those in eyes with a target of emmetropia. In eyes with a target of emmetropia, the mean numerical errors of Holladay 1 (p < 0.001, 95% confidence interval [CI]: 0.32 to 0.63), Hoffer Q (p = 0.001, 95% CI: 0.12 to 0.42), and Barrett Universal II (p = 0.007, 95% CI: 0.06 to 0.35) were significantly different from zero (hyperopic trend). Furthermore, in eyes with a target of intentional myopia, the mean numerical error of SRK/T (p = 0.001, 95% CI: − 0.61 to − 0.17) and Holladay 2 (p = 0.023, 95% CI: − 0.43 to − 0.04) were significantly different from zero (myopic trend).Conclusion: In patients with axial myopia, some IOL formulas may show a myopic trend in the refractive outcome when targeting intentional myopia as compared to emmetropia.Keywords: cataract surgery, postoperative refraction, intentional myopia, axial myopia, IOLMaster700
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- 2021
9. Air-Sea Co2 Exchange and Dissolved Inorganic Carbon Distribution in an Inner Part of Osaka Bay, Japan
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Endo, T., Shimano, J., Harada, N., Sakai, D., Fujiwara, R., Trung Viet, Nguyen, editor, Xiping, Dou, editor, and Thanh Tung, Tran, editor
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- 2020
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10. Measurement for p–He Elastic Scattering with a 65 MeV Polarized Proton Beam
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Nakai, S., Sekiguchi, K., Miki, K., Watanabe, A., Mukai, T., Shibuya, S., Watanabe, M., Kawahara, K., Sakai, D., Wada, Y., Shiokawa, Y., Taguchi, T., Eto, D., Akieda, T., Kon, H., Ito, M., Ino, T., Hatanaka, K., Tamii, A., Ong, H. J., Kobayashi, N., Inoue, A., Nakamura, S., Wakasa, T., Mitsumoto, S., Ohshiro, H., Goto, S., Maeda, Y., Sakai, H., Uesaka, T., Wakui, T., Orr, N. A., editor, Ploszajczak, M., editor, Marqués, F. M., editor, and Carbonell, J., editor
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- 2020
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11. Measurement of
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Watanabe, A., Sekiguchi, K., Akieda, T., Etoh, D., Inoue, Y., Kawahara, K., Kon, H., Miki, K., Mukai, T., Nakai, S., Sakai, D., Shibuya, S., Shiokawa, Y., Taguchi, T., Wada, Y., Watanabe, M., Itoh, M., Ino, T., Wakui, T., Orr, N. A., editor, Ploszajczak, M., editor, Marqués, F. M., editor, and Carbonell, J., editor
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- 2020
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12. Exposure to Maternal Immune Activation Causes Congenital Unfolded Protein Response Defects and Increases the Susceptibility to Postnatal Inflammatory Stimulation in Offspring
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Shimizu Y, Tsukada T, Sakata-Haga H, Sakai D, Shoji H, Saikawa Y, and Hatta T
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maternal immune activation ,liver necrosis ,immune overreaction ,unfolded protein response defects ,Pathology ,RB1-214 ,Therapeutics. Pharmacology ,RM1-950 - Abstract
Yo Shimizu,1 Tsuyoshi Tsukada,2 Hiromi Sakata-Haga,2 Daisuke Sakai,3 Hiroki Shoji,3 Yutaka Saikawa,1 Toshihisa Hatta2 1Department of Pediatrics, Kanazawa Medical University, Uchinada, Ishikawa, Japan; 2Department of Anatomy, Kanazawa Medical University, Uchinada, Ishikawa, Japan; 3Department of Biology, Kanazawa Medical University, Uchinada, Ishikawa, JapanCorrespondence: Toshihisa HattaDepartment of Anatomy, Kanazawa Medical University, Uchinada, Ishikawa, JapanTel +81-76-281-8113Fax +81-76-218-8189Email thatta@kanazawa-med.ac.jpBackground: A number of childhood diseases have been identified, such as severe infection or autoinflammatory disease, in which immune overreaction against inflammation is a possible underlying mechanism. Previous reports have demonstrated that fetal cells exposed to maternal immune activation (MIA) induced by polyriboinosinic-polyribocytidylic acid [poly(I:C)] exhibited hypersensitivity to inflammation in vitro. However, the details of this mechanism remain unclear. Therefore, this study aimed to reveal the reaction to inflammation in offspring exposed to MIA in the prenatal period, as well as its molecular mechanism, using a viral infection mouse model.Materials and Methods: Pregnant mice at 12.5, 14.5, and 16.5 days post coitum were injected intraperitoneally with poly(I:C) 20 mg/kg body weight (BW) or saline. Offspring aged 3– 4 weeks received the second injection of 20 mg/kg BW or 4 mg/kg BW poly(I:C) or saline. Serum and tissues were collected at 2, 24, 48, and 72 h after the postnatal injection. The cytokine profile, histopathology of organs, and unfolded protein response (UPR) in offspring were examined.Results: The serum levels of interleukin (IL)-6, IL-17, and interferon-γ were significantly higher in the MIA group, and acute liver necrosis was detected. Moreover, failure in UPR was observed in the MIA group compared with that in the control group.Conclusion: Overall, MIA exposure in utero caused failure in UPR as well as immune overreaction to the second attack of inflammation in offspring. Our results suggested that prenatal exposure to MIA might contribute to the congenital inflammatory constitution after birth.Keywords: maternal immune activation, liver necrosis, immune overreaction, unfolded protein response defects
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- 2021
13. Measurement of Spin Correlation Coefficient $${\varvec{C}}_{{\varvec{y}},{\varvec{y}}}$$ for Proton-$$^{{\textbf {3}}}$$He Elastic Scattering
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Watanabe, A., primary, Nakai, S., additional, Sekiguchi, K., additional, Goto, S., additional, Hatanaka, K., additional, Hirai, Y., additional, Ino, T., additional, Inomoto, D., additional, Inoue, M., additional, Ishikawa, S., additional, Itoh, M., additional, Kanda, H., additional, Kasahara, H., additional, Maeda, Y., additional, Miki, K., additional, Nonaka, K., additional, Ong, H. J., additional, Oshiro, H., additional, Sakai, D., additional, Sakai, H., additional, Shibuya, S., additional, Tran, D. T., additional, Umetsu, H., additional, Utsuki, Y., additional, and Wakasa, T., additional
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- 2024
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14. EXTRACELLULAR VESICLES FROM TIE2-OVEREXPRESSING NUCLEUS PULPOSUS PROGENITORS FOR INTERVERTEBRAL DISC REGENERATION: AN IN VITRO STUDY
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Ambrosio, L., primary, Schol, J., additional, Vadalà, G., additional, Papalia, R., additional, Sakai, D., additional, and Denaro, V., additional
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- 2024
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15. FUNCTIONAL ACTIVITY OF MONOMERIC C-REACTIVE PROTEIN IN INTERVERTEBRAL DISC
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Ruiz-Fernández, C., primary, Eldjoudi, D.A., additional, Gonzalez-Rodríguez, M., additional, Barreal, A.C., additional, Farrag, Y., additional, Mobasheri, A., additional, Pino, J., additional, Sakai, D., additional, and Gualillo, O., additional
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- 2024
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16. Analyzing Power Measurement for p-3He Elastic Scattering at Intermediate Energies
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Watanabe, A., Nakai, S., Wada, Y., Sekiguchi, K., Akieda, T., Etoh, D., Inoue, M., Inoue, Y., Kawahara, K., Kon, H., Miki, K., Mukai, T., Sakai, D., Shibuya, S., Shiokawa, Y., Taguchi, T., Umetsu, H., Utsuki, Y., Watanabe, M., Goto, S., Hatanaka, K., Hirai, Y., Ikeda, Y., Ino, T., Inomoto, D., Ishikawa, S., Itoh, M., Kanda, H., Kasahara, H., Maeda, Y., Mitsumoto, S., Nonaka, K., Ong, H. J., Oshiro, H., Otake, Y., Sakai, H., Taketani, A., Tran, D. T., Uesaka, T., Wakasa, T., Wakabayashi, Y., and Wakui, T.
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- 2021
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17. Variability in the time to initiation of CPR in continuously monitored pediatric ICUs
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Olson, M., Helfenbein, E., Su, L., Berg, M., Knight, L., Troy, L., Sacks, L., Sakai, D., and Su, F.
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- 2018
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18. Development and fabrication of a thick Ti-3H target for the 3H(t,3He)3n experiment at intermediate energies
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Miki, K., primary, Utsuki, Y., additional, Hara, M., additional, Hatano, Y., additional, Imai, N., additional, Inoue, M., additional, Itoh, M., additional, Kameya, K., additional, Kitayama, S., additional, Maruta, Y., additional, Matsuda, Y., additional, Saito, Y., additional, Sakai, D., additional, Uesaka, T., additional, Umetsu, H., additional, Urayama, R., additional, Wang, J., additional, Kamada, K., additional, Shoji, Y., additional, and Yoshikawa, A., additional
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- 2023
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19. Measurement of $$^3$$He Analyzing Power for $$p{-}^{3}$$He Elastic Scattering at $$70~\mathrm{MeV}$$
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Watanabe, A., primary, Sekiguchi, K., additional, Akieda, T., additional, Etoh, D., additional, Inoue, Y., additional, Kawahara, K., additional, Kon, H., additional, Miki, K., additional, Mukai, T., additional, Nakai, S., additional, Sakai, D., additional, Shibuya, S., additional, Shiokawa, Y., additional, Taguchi, T., additional, Wada, Y., additional, Watanabe, M., additional, Itoh, M., additional, Ino, T., additional, and Wakui, T., additional
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- 2020
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20. Measurement for p–$$^3$$He Elastic Scattering with a 65 MeV Polarized Proton Beam
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Nakai, S., primary, Sekiguchi, K., additional, Miki, K., additional, Watanabe, A., additional, Mukai, T., additional, Shibuya, S., additional, Watanabe, M., additional, Kawahara, K., additional, Sakai, D., additional, Wada, Y., additional, Shiokawa, Y., additional, Taguchi, T., additional, Eto, D., additional, Akieda, T., additional, Kon, H., additional, Ito, M., additional, Ino, T., additional, Hatanaka, K., additional, Tamii, A., additional, Ong, H. J., additional, Kobayashi, N., additional, Inoue, A., additional, Nakamura, S., additional, Wakasa, T., additional, Mitsumoto, S., additional, Ohshiro, H., additional, Goto, S., additional, Maeda, Y., additional, Sakai, H., additional, Uesaka, T., additional, and Wakui, T., additional
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- 2020
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21. Measurement of Spin Correlation Coefficient Cy,y for Proton-3He Elastic Scattering.
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Watanabe, A., Nakai, S., Sekiguchi, K., Goto, S., Hatanaka, K., Hirai, Y., Ino, T., Inomoto, D., Inoue, M., Ishikawa, S., Itoh, M., Kanda, H., Kasahara, H., Maeda, Y., Miki, K., Nonaka, K., Ong, H. J., Oshiro, H., Sakai, D., and Sakai, H.
- Abstract
We present the measured spin correlation coefficient C y , y for p- 3 He elastic scattering at 100 MeV at the angles θ c. m. = 46. 9 ∘ – 149. 2 ∘ in the center of mass system. The experiment was performed using a 100 MeV polarized proton beam in conjunction with the polarized 3 He target. Proton beams were injected to the target, and scattered protons were detected by using E- Δ E detectors which consisted of plastic and NaI(Tl) scintillators. The data are compared with rigorous numerical calculations based on realistic NN potentials as well as with the Δ -isobar excitation. The obtained results indicate that the C y , y expands the knowledge of the nuclear interactions with Δ -isobar or those including 3NFs that are masked in nucleon-deuteron elastic scattering. [ABSTRACT FROM AUTHOR]
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- 2024
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22. Air-Sea Co2 Exchange and Dissolved Inorganic Carbon Distribution in an Inner Part of Osaka Bay, Japan
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Endo, T., primary, Shimano, J., additional, Harada, N., additional, Sakai, D., additional, and Fujiwara, R., additional
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- 2019
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23. All-printable and mechanically-aligned broadband image sensor array sheets
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Matsuzaki, Y., primary, Sakai, D., additional, Aoshima, Y., additional, Shikichi, D., additional, Ota, R., additional, Yasui, S., additional, Li, K., additional, and Kawano, Y., additional
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- 2023
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24. All-printable stretchable broadband photo-thermoelectric camera sheets
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Sakai, D., primary, Aoshima, Y., additional, Matsuzaki, Y., additional, Li, K., additional, and Kawano, Y., additional
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- 2023
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25. Millimeter-wave–Infrared multi-wavelength computed tomography
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Shikichi, D., primary, Ota, R., additional, Li, K., additional, Sakai, D., additional, Suyama, T.Q., additional, Okawa, H., additional, Ikehata, S., additional, Sato, I., additional, and Kawano, Y., additional
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- 2023
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26. The effect of a heated humidified breathing circuit on body temperature in healthy, anesthetized dogs
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Jones, S., primary, Burns, C., additional, Reed, R., additional, Quandt, J., additional, Barletta, M., additional, and Sakai, D., additional
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- 2023
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27. Spin correlation coefficient for proton- He3 elastic scattering at 100 MeV
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Watanabe, A., primary, Nakai, S., additional, Sekiguchi, K., additional, Deltuva, A., additional, Goto, S., additional, Hatanaka, K., additional, Hirai, Y., additional, Ino, T., additional, Inomoto, D., additional, Inoue, M., additional, Ishikawa, S., additional, Itoh, M., additional, Kanda, H., additional, Kasahara, H., additional, Maeda, Y., additional, Miki, K., additional, Nonaka, K., additional, Ong, H. J., additional, Oshiro, H., additional, Sakai, D., additional, Sakai, H., additional, Shibuya, S., additional, Tran, D. T., additional, Umetsu, H., additional, Utsuki, Y., additional, and Wakasa, T., additional
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- 2022
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28. 440TiP TRESBIEN (OGSG 2101): Encorafenib, binimetinib and cetuximab for early relapse stage II/III BRAF V600E-mutated CRC
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Boku, S., primary, Satake, H., additional, Ohta, T., additional, Mitani, S., additional, Kawakami, K., additional, Matsumoto, T., additional, Yamazaki, E., additional, Hasegawa, H., additional, Ikoma, T., additional, Uemura, M., additional, Yamaguchi, T., additional, Ishizuka, Y., additional, Kurokawa, Y., additional, Sakai, D., additional, Kawakami, H., additional, Shimokawa, T., additional, Tsujinaka, T., additional, Kato, T., additional, Satoh, T., additional, and Kagawa, Y., additional
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- 2022
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29. Beach profile and sediment characteristics of a mixed sand beach under diurnal sea level variations
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Kakinoki, T., Tsujjimoto, G., Yamada, F., Sakai, D., and Uno, K.
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- 2011
30. Is diet partly responsible for differences in COVID-19 death rates between and within countries?
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Bousquet J., Anto J. M., Iaccarino G., Czarlewski W., Haahtela T., Anto A., Akdis C. A., Blain H., Canonica G. W., Cardona V., Cruz A. A., Illario M., Ivancevich J. C., Jutel M., Klimek L., Kuna P., Laune D., Larenas-Linnemann D., Mullol J., Papadopoulos N. G., Pfaar O., Samolinski B., Valiulis A., Yorgancioglu A., Zuberbier T., Abdul Latiff A. H., Abdullah B., Aberer W., Abusada N., Adcock I., Afani A., Agache I., Aggelidis X., Agustin J., Akdis C., Akdis M., Al-Ahmad M., Al-Zahab Bassam A., Aldrey-Palacios O., Alvarez Cuesta E., Alzaabi A., Amad S., Ambrocio G., Annesi-Maesano I., Ansotegui I., Anto J., Arshad H., Artesani M. C., Asayag E., Avolio F., Azhari K., Baiardini I., Bajrovic N., Bakakos P., Bakeyala Mongono S., Balotro-Torres C., Barba S., Barbara C., Barbosa E., Barreto B., Bartra J., Bateman E. 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H., Chen, Y., Cheng, L., Chivato, T., Chkhartishvili, E., Christoff, G., Chrystyn, H., Chu, D. K., Chua, A., Chuchalin, A., Chung, K. F., Ciceran, A., Cingi, C., Ciprandi, G., Cirule, I., Coelho, A. C., Constantinidis, J., Correia De Sousa, J., Costa, E., Costa, D., Costa Dominguez, M. D. C., Coste, A., Cox, L., Cullen, J., Custovic, A., Cvetkovski, B., D'Amato, G., Da Silva, J., Dahl, R., Dahlen, S. -E., Daniilidis, V., Darjazini Nahhas, L., Darsow, U., De Blay, F., De Guia, E., De Los Santos, C., De Manuel Keenoy, E., De Vries, G., Deleanu, D., Demoly, P., Denburg, J., Devillier, P., Didier, A., Dimou, M., Dinh-Xuan, A. T., Djukanovic, R., Dokic, D., Dominguez Silva, M. G., Douagui, H., Douladiris, N., Doulaptsi, M., Dray, G., Dubakiene, R., Durham, S., Dykewicz, M., Ebo, D., Edelbaher, N., Eklund, P., El-Gamal, Y., El-Sayed, Z. A., El-Sayed, S. S., El-Seify, M., Emuzyte, R., Enecilla, L., Espinoza, H., Espinoza Contreras, J. G., Farrell, J., Fernandez, L., Fink Wagner, A., Fiocchi, A., Fokkens, W. J., Fontaine, J. -F., Forastiere, F., Fuentes Perez, J. M., Gaerlan-Resureccion, E., Gaga, M., Galvez Romero, J. L., Gamkrelidze, A., Garcia, A., Garcia Cobas, C. Y., Garcia Cruz, M. D. L. L. H., Gayraud, J., Gemicioglu, B., Genova, S., Gereda, J., Gerth Van Wijk, R., Gomez, M., Gonzalez Diaz, S., Gotua, M., Grigoreas, C., Grisle, I., Guidacci, M., Guldemond, N., Gutter, Z., Guzman, A., Halloum, R., Hamelmann, E., Hammadi, S., Harvey, R., Heinrich, J., Hejjaoui, A., Hellquist-Dahl, B., Hernandez Velazquez, L., Hew, M., Hossny, E., Howarth, P., Hrubisko, M., Huerta Villalobos, Y. R., Humbert, M., Hyland, M., Ibrahim, M., Ilyina, N., Irani, C., Ispayeva, Z., Jares, E., Jarvis, D., Jassem, E., Jenko, K., Jimeneracruz Uscanga, R. D., Johnston, S., Joos, G., Jost, M., Julge, K., Jung, K. -S., Just, J., Kaidashev, I., Kalayci, O., Kalyoncu, F., Kapsali, J., Kardas, P., Karjalainen, J., Kasala, C. A., Katotomichelakis, M., Kazi, B., Keil, T., Keith, P., Khaitov, M., Khaltaev, N., Kim, Y. -Y., Kleine-Tebbe, J., Koffi N'Goran, B., Kompoti, E., Kopac, P., Koppelman, G., Koren Jeverica, A., Kosnik, M., Kostov, K. V., Kowalski, M. L., Kralimarkova, T., Kramer Vrscaj, K., Kraxner, H., Kreft, S., Kritikos, V., Kudlay, D., Kull, I., Kupczyk, M., Kvedariene, V., Kyriakakou, M., Lalek, N., Lane, S., Latiff, A., Lau, S., Lavrut, J., Le, L., Lessa, M., Levin, M., Li, J., Lieberman, P., Liotta, G., Lipworth, B., Liu, X., Lobo, R., Lodrup Carlsen, K. C., Lombardi, C., Louis, R., Loukidis, S., Lourenco, O., Luna Pech, J. A., Madjar, B., Magnan, A., Mahboub, B., Mair, A., Mais, Y., Maitland Van Der Zee, A. -H., Makela, M., Makris, M., Malling, H. -J., Mandajieva, M., Manning, P., Manousakis, M., Maragoudakis, P., Marshall, G., Martinsmartins, P., Masjedi, M. R., Maspero, J. F., Matta Campos, J. J., Maurer, M., Mavale-Manuel, S., Meco, C., Melen, E., Melo-Gomes, E., Meltzer, E. O., Menditto, E., Menzies-Gow, A., Merk, H., Michel, J. -P., Miculinic, N., Midao, L., Mihaltan, F., Mikael, K., Mikos, N., Milenkovic, B., Mitsias, D., Moalla, B., Moda, G., Mogica Martinez, M. D., Mohammad, Y., Moin, M., Molimard, M., Momas, I., Monaco, A., Montefort, S., Mora, D., Morais-Almeida, M., Mosges, R., Mostafa, B. E., Munter, L., Muraro, A., Murray, R., Mustakov, T., Naclerio, R., Nadif, R., Nakonechna, A., Namazova-Baranova, L., Navarro-Locsin, G., Neffen, H., Nekam, K., Neou, A., Nicod, L., Niederberger-Leppin, V., Niedoszytko, M., Nieto, A., Novellino, E., Nunes, E., Nyembue, D., O'Hehir, R., Odjakova, C., Ohta, K., Okamoto, Y., Okubo, K., Oliver, B., Onorato, G. L., Orru, M. P., Ouedraogo, S., Ouoba, K., Paggiaro, P. L., Pagkalos, A., Palaniappan, S. P., Pali-Scholl, I., Palkonen, S., Palmer, S., Panaitescu Bunu, C., Panzner, P., Papanikolaou, V., Papi, A., Paralchev, B., Paraskevopoulos, G., Park, H. S., Passalacqua, G., Patella, V., Pavord, I., Pawankar, R., Pedersen, S., Peleve, S., Pereira, A., Perez, T., Pham-Thi, N., Pigearias, B., Pin, I., Piskou, K., Pitsios, C., Pitsios, K., Plavec, D., Poethig, D., Pohl, W., Poplas Susic, A., Popov, T. A., Portejoie, F., Potter, P., Poulsen, L., Prados-Torres, A., Prarros, F., Price, D., Prokopakis, E., Puy, R., Rabe, K., Raciborski, F., Ramos, J., Recto, M. T., Reda, S. M., Regateiro, F., Reider, N., Reitsma, S., Repka-Ramirez, S., Rimmer, J., Rivero Yeverino, D., Rizzo, J. A., Robalo-Cordeiro, C., Roberts, G., Roche, N., Rodriguez Gonzalez, M., Rodriguez Zagal, E., Rolland, C., Roller-Wirnsberger, R., Roman Rodriguez, M., Romano, A., Rombaux, P., Romualdez, J., Rosado-Pinto, J., Rosario, N., Rosenwasser, L., Rottem, M., Rouadi, P., Rovina, N., Rozman Sinur, I., Ruiz, M., Ruiz Segura, L. T., Ryan, D., Sagara, H., Sakai, D., Sakurai, D., Saleh, W., Salimaki, J., Salina, H., Samitas, K., Sanchez Coronel, M. G., Sanchez-Borges, M., Sanchez-Lopez, J., Sarafoleanu, C., Sarquis Serpa, F., Sastre-Dominguez, J., Scadding, G., Scheire, S., Schmid-Grendelmeier, P., Schuhl, J. F., Schunemann, H., Schvalbova, M., Scichilone, N., Sepulveda, C., Serrano, E., Sheikh, A., Shields, M., Shishkov, V., Siafakas, N., Simeonov, A., Simons, E. F., Sisul, J. C., Sitkauskiene, B., Skrindo, I., Soklic Kosak, T., Sole, D., Sooronbaev, T., Soto-Martinez, M., Sova, M., Spertini, F., Spranger, O., Stamataki, S., Stefanaki, L., Stellato, C., Stelmach, R., Sterk, P., Strandberg, T., Stute, P., Subramaniam, A., Suppli Ulrik, C., Sutherland, M., Sylvestre, S., Syrigou, A., Taborda Barata, L., Takovska, N., Tan, R., Tan, F., Tan, V., Tang, I. P., Taniguchi, M., Tannert, L., Tattersall, J., Teixeira, M. D. C., Thijs, C., Thomas, M., To, T., Todo-Bom, A. M., Togias, A., Tomazic, P. -V., Toppila-Salmi, S., Toskala, E., Triggiani, M., Triller, N., Triller, K., Tsiligianni, I., Ulmeanu, R., Urbancic, J., Urrutia Pereira, M., Vachova, M., Valdes, F., Valenta, R., Valentin Rostan, M., Valero, A., Vallianatou, M., Valovirta, E., Van Eerd, M., Van Ganse, E., Van Hage, M., Vandenplas, O., Vasankari, T., Vassileva, D., Ventura, M. T., Vera-Munoz, C., Vicheva, D., Vichyanond, P., Vidgren, P., Viegi, G., Vogelmeier, C., Von Hertzen, L., Vontetsianos, T., Vourdas, D., Wagenmann, M., Walker, S., Wallace, D., Wang, D. Y., Waserman, S., Wickman, M., Williams, S., Williams, D., Wilson, N., Woo, K., Wright, J., Wroczynski, P., Xepapadaki, P., Yakovliev, P., Yamaguchi, M., Yan, K., Yap, Y. Y., Yawn, B., Yiallouros, P., Yoshihara, S., Young, I., Yusuf, O. B., Zaidi, A., Zaitoun, F., Zar, H., Zernotti, M., Zhang, L., Zhong, N., Zidarn, M., Zubrinich, C., University of Zurich, Bousquet, Jean, Charité - UniversitätsMedizin = Charité - University Hospital [Berlin], Berlin Institute of Health (BIH), Contre les MAladies Chroniques pour un VIeillissement Actif en Languedoc-Roussillon (MACVIA-LR), Université Montpellier 1 (UM1)-Centre Hospitalier Régional Universitaire [Montpellier] (CHRU Montpellier)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre Hospitalier Universitaire de Nîmes (CHU Nîmes)-Université de Montpellier (UM)-Centre National de la Recherche Scientifique (CNRS)-European Innovation Partnership on Active and Healthy Ageing Reference Site (EIP on AHA), Commission Européenne-Commission Européenne-Organisation Mondiale de la Santé / World Health Organization Office (OMS / WHO), Centre Hospitalier Régional Universitaire [Montpellier] (CHRU Montpellier), Center for Research in Environmental Epidemiology (CREAL), Universitat Pompeu Fabra [Barcelona] (UPF)-Catalunya ministerio de salud, IMIM-Hospital del Mar, Generalitat de Catalunya, Universitat Pompeu Fabra [Barcelona] (UPF), CIBER de Epidemiología y Salud Pública (CIBERESP), 'Federico II' University of Naples Medical School, Medical Consulting Czarlewski, Helsingin yliopisto = Helsingfors universitet = University of Helsinki, Swiss Institute of Allergy and Asthma Research (SIAF), Universität Zürich [Zürich] = University of Zurich (UZH), Euromov (EuroMov), Université de Montpellier (UM), IRCCS Humanitas Research Hospital, 20089 Rozzano, Italy., Vall d'Hebron University Hospital [Barcelona], ProAR – Nucleo de Excelencia em Asma, Universidade Federal da Bahia (UFBA), Global Alliance Against Chronic Respiratory Diseases (GARD-WHO), Division for Health Innovation, Servicio de Alergia e ImmunologiaBuenos Aires (Clinica Santa Isabel), Wrocław Medical University, Center for Rhinology and Allergology Wiesbaden, University Hospital Mannheim, Barlicki University Hospital, KYomed INNOV [Montpellier], Hospital Medica Sur [Mexico City, Mexico], Institut d'Investigacions Biomèdiques August Pi i Sunyer (IDIBAPS), Universitat de Barcelona (UB), Centro de Investigación Biomédica en Red Enfermedades Respiratorias (CIBERES), Royal Manchester Children's Hospital, University of Manchester [Manchester], General Children's Hospital of Athens P & A Kyriakou, Philipps Universität Marburg = Philipps University of Marburg, Medical University of Warsaw - Poland, Vilnius University [Vilnius], Manisa Celal Bayar University, and Salvy-Córdoba, Nathalie
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BLOOD-PRESSURE ,Review ,Angiotensin-converting enzyme ,Antioxidant ,Coronavirus ,Diet ,Food ,law.invention ,Dietary interventions ,0302 clinical medicine ,[SDV.MHEP.MI]Life Sciences [q-bio]/Human health and pathology/Infectious diseases ,10183 Swiss Institute of Allergy and Asthma Research ,law ,Medicine and Health Sciences ,Immunology and Allergy ,Medicine ,030212 general & internal medicine ,[SDV.MHEP.ME] Life Sciences [q-bio]/Human health and pathology/Emerging diseases ,[SDV.MHEP.ME]Life Sciences [q-bio]/Human health and pathology/Emerging diseases ,education.field_of_study ,Mortality rate ,3. Good health ,[SDV.MHEP.MI] Life Sciences [q-bio]/Human health and pathology/Infectious diseases ,2723 Immunology and Allergy ,Angiotensin-converting enzyme, Antioxidant, Coronavirus, Diet, Food ,Pulmonary and Respiratory Medicine ,2019-20 coronavirus outbreak ,Coronavirus disease 2019 (COVID-19) ,Coronaviru ,Immunology ,Population ,610 Medicine & health ,COVID-19 ,Settore MED/10 - Malattie Dell'Apparato Respiratorio ,03 medical and health sciences ,Environmental health ,population ,angiotensin-converting enzyme ,Quarantine ,education ,2403 Immunology ,ANTIHYPERTENSIVE PEPTIDES ,business.industry ,RC581-607 ,GENE ,POLYMORPHISM ,[SDV.AEN] Life Sciences [q-bio]/Food and Nutrition ,030228 respiratory system ,2740 Pulmonary and Respiratory Medicine ,Immunologic diseases. Allergy ,business ,[SDV.AEN]Life Sciences [q-bio]/Food and Nutrition ,Regional differences ,Coronavirus Infections - Abstract
Reported COVID-19 deaths in Germany are relatively low as compared to many European countries. Among the several explanations proposed, an early and large testing of the population was put forward. Most current debates on COVID-19 focus on the differences among countries, but little attention has been given to regional differences and diet. The low-death rate European countries (e.g. Austria, Baltic States, Czech Republic, Finland, Norway, Poland, Slovakia) have used different quarantine and/or confinement times and methods and none have performed as many early tests as Germany. Among other factors that may be significant are the dietary habits. It seems that some foods largely used in these countries may reduce angiotensin-converting enzyme activity or are anti-oxidants. Among the many possible areas of research, it might be important to understand diet and angiotensin-converting enzyme-2 (ACE2) levels in populations with different COVID-19 death rates since dietary interventions may be of great benefit.
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- 2020
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31. Variations in gene and protein expression in human nucleus pulposus in comparison with annulus fibrosus and cartilage cells: potential associations with aging and degeneration
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Rutges, J., Creemers, L.B., Dhert, W., Milz, S., Sakai, D., Mochida, J., Alini, M., and Grad, S.
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- 2010
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32. Astrometric observations of water maser sources toward the Galactic Center with VLBI
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Sakai, D, primary, Oyama, T, additional, Nagayama, T, additional, Kobayashi, H, additional, and Honma, M, additional
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- 2021
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33. Analyzing Power Measurement for p-$$^3$$He Elastic Scattering at Intermediate Energies
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Watanabe, A., primary, Nakai, S., additional, Wada, Y., additional, Sekiguchi, K., additional, Akieda, T., additional, Etoh, D., additional, Inoue, M., additional, Inoue, Y., additional, Kawahara, K., additional, Kon, H., additional, Miki, K., additional, Mukai, T., additional, Sakai, D., additional, Shibuya, S., additional, Shiokawa, Y., additional, Taguchi, T., additional, Umetsu, H., additional, Utsuki, Y., additional, Watanabe, M., additional, Goto, S., additional, Hatanaka, K., additional, Hirai, Y., additional, Ikeda, Y., additional, Ino, T., additional, Inomoto, D., additional, Ishikawa, S., additional, Itoh, M., additional, Kanda, H., additional, Kasahara, H., additional, Maeda, Y., additional, Mitsumoto, S., additional, Nonaka, K., additional, Ong, H. J., additional, Oshiro, H., additional, Otake, Y., additional, Sakai, H., additional, Taketani, A., additional, Tran, D. T., additional, Uesaka, T., additional, Wakasa, T., additional, Wakabayashi, Y., additional, and Wakui, T., additional
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- 2021
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34. Analysis of Cell-free Circulating DNA Fragment Size and Level in Patients With Lumbar Degenerative Disease
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Hiyama A, Sakai D, Watanabe M, Katoh H, and Nomura S
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Fragment size ,Pathology ,medicine.medical_specialty ,Text mining ,Lumbar ,Degenerative disease ,business.industry ,Medicine ,Circulating DNA ,In patient ,Cell free ,business ,medicine.disease - Abstract
Background: Cell-free circulating DNA (cfDNA), which can be extracted by liquid biopsy, has been studied as a noninvasive biomarker for various diseases. The potential of cfDNA fragment size and level as a marker for low back pain (LBP) has never been studied. We investigated whether cfDNA is a biomarker of LBP severity in patients with a lumbar degenerative disease (LDD). Methods: Blood samples were obtained from patients with LDD (n = 21) before and immediately after spinal surgery. Plasma DNA was isolated and examined for cfDNA fragment size and concentration. A cohort of healthy volunteers (n = 5) constituted the control group.Results: The cfDNA fragment size tended to be shorter in patients than in healthy controls, but this difference was not significant (P = .224). cfDNA level was significantly higher in LDD patients (mean 0.642±0.199 ng/mL, range 0.302–1.150 ng/mL) than in healthy controls (mean 0.429±0.064 ng/mL, range 0.366–0.506 ng/mL) (P = .029). cfDNA level correlated positively with present pain (r = .421, P = .036), maximum pain (r = .419, P = .037), average pain (r = .566, P = .003), low back pain (r = .403, P = .041), leg pain (r = .480, P = .013), and leg numbness (r = .455, P = .020). cfDNA fragment size did not differ from before to after surgery, but cfDNA level increased postoperatively in patients with LDD. Conclusions: This was the first study investigating whether cfDNA fragment size and level are associated with pain, including LBP, in patients with LDD. Our findings suggest that cfDNA level may be an objective indicator of pain and surgical invasiveness in patients with LDD.
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- 2021
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35. A torque removal study on the primary stability of orthodontic titanium screw mini-implants in the cortical bone of dog femurs
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Okazaki, J., Komasa, Y., Sakai, D., Kamada, A., Ikeo, T., Toda, I., Suwa, F., Inoue, M., and Etoh, T.
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- 2008
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36. 1383P Phase I study of the irreversible FGFR inhibitor futibatinib in Japanese patients with advanced solid tumors: Updated dose expansion results and activity in gastric cancer
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Kuboki, Y., primary, Shitara, K., additional, Morizane, C., additional, Kojima, T., additional, Yoh, K., additional, Sakai, D., additional, Tahara, M., additional, Hirai, H., additional, Kurokawa, Y., additional, Kato, T., additional, and Doi, T., additional
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- 2021
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37. 551P Chronological improvement in precision oncology implementation in Japan
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Komine, K., primary, Sunami, K., additional, Naito, Y., additional, Amano, T., additional, Ennishi, D., additional, Imai, M., additional, Kage, H., additional, Kanai, M., additional, Kenmotsu, H., additional, Koyama, T., additional, T., Maeda, additional, Morita, S., additional, Sakai, D., additional, Kohsaka, S., additional, Tsuchihara, K., additional, Saigusa, Y., additional, Yamanaka, T., additional, and Yoshino, T., additional
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- 2021
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38. 1519TiP Japanese Society of Medical Oncology/Health Authority of the Japanese Government Cooperative Virtual Educational Program for Improving the Clinical Annotation for Cancer Genomic Medicine
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Amano, T., primary, Sunami, K., additional, Naito, Y., additional, Ennishi, D., additional, Imai, M., additional, Kage, H., additional, Kanai, M., additional, Kenmotsu, H., additional, Komine, K., additional, Koyama, T., additional, T., Maeda, additional, Morita, S., additional, Saigusa, Y., additional, Sakai, D., additional, Ichiro, K., additional, Kozuki, T., additional, Sakashita, H., additional, Kohsaka, S., additional, Tsuchihara, K., additional, and Yoshino, T., additional
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- 2021
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39. 519MO Concordance analysis of treatment recommendations between central consensus and multidisciplinary tumor boards
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Kage, H., primary, Sunami, K., additional, Naito, Y., additional, Amano, T., additional, Ennishi, D., additional, Imai, M., additional, Kanai, M., additional, Kenmotsu, H., additional, Komine, K., additional, Koyama, T., additional, T., Maeda, additional, Morita, S., additional, Saigusa, Y., additional, Sakai, D., additional, Yamanaka, T., additional, Kohsaka, S., additional, Tsuchihara, K., additional, and Yoshino, T., additional
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- 2021
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40. O-14 Exploratory biomarker analysis of trastuzumab deruxtecan in DESTINY-Gastric01, a randomized, phase 2, multicenter, open-label study in patients with HER2-positive or -low advanced gastric or gastroesophageal junction adenocarcinoma
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Shitara, K., primary, Bang, Y., additional, Iwasa, S., additional, Sugimoto, N., additional, Ryu, M., additional, Sakai, D., additional, Chung, H., additional, Omuro, Y., additional, Kawakami, H., additional, Yabusaki, H., additional, Sakamoto, Y., additional, Nishina, T., additional, Inaki, K., additional, Kuwahara, Y., additional, Suto, F., additional, Sugihara, M., additional, Saito, K., additional, Kojima, A., additional, and Yamaguchi, K., additional
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- 2021
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41. P-200 A phase II study of dose reductive XELOX plus bevacizumab in elderly or vulnerable patients with metastatic colorectal cancer: MCSGO-1202
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Nakata, K., primary, Sakai, D., additional, Hasegawa, J., additional, Kato, T., additional, Murata, K., additional, Ikenaga, M., additional, Kudo, T., additional, Uemura, M., additional, Satoh, T., additional, Mizushima, T., additional, Doki, Y., additional, and Eguchi, H., additional
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- 2021
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42. LBA76 The primary results of an intergroup phase III randomized controlled trial comparing ramucirumab plus irinotecan with irinotecan in the third or later line treatment beyond progression after ramucirumab for advanced gastric cancer (RINDBeRG trial)
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Kadowaki, S., Sakai, D., Kawabata, R., Hara, H., Yasui, H., Takahashi, M., Hirao, M., Imai, H., Minashi, K., Kawakami, T., Satake, H., Matsuyama, J., Sakamoto, Y., Sawada, K., Kataoka, M., Kawakami, H., Shimokawa, T., Boku, N., and Satoh, T.
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- 2023
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43. Analysis of the pilU gene for the prepilin peptidase involved in the biogenesis of type IV pili encoded by plasmid R64
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Akahane, K., Sakai, D., Furuya, N., and Komano, T.
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- 2005
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44. Proton- He3 elastic scattering at intermediate energies
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Watanabe, A., primary, Nakai, S., additional, Wada, Y., additional, Sekiguchi, K., additional, Deltuva, A., additional, Akieda, T., additional, Etoh, D., additional, Inoue, M., additional, Inoue, Y., additional, Kawahara, K., additional, Kon, H., additional, Miki, K., additional, Mukai, T., additional, Sakai, D., additional, Shibuya, S., additional, Shiokawa, Y., additional, Taguchi, T., additional, Umetsu, H., additional, Utsuki, Y., additional, Watanabe, M., additional, Goto, S., additional, Hatanaka, K., additional, Hirai, Y., additional, Ino, T., additional, Inomoto, D., additional, Inoue, A., additional, Ishikawa, S., additional, Itoh, M., additional, Kanda, H., additional, Kasahara, H., additional, Kobayashi, N., additional, Maeda, Y., additional, Mitsumoto, S., additional, Nakamura, S., additional, Nonaka, K., additional, Ong, H. J., additional, Oshiro, H., additional, Otake, Y., additional, Sakai, H., additional, Taketani, A., additional, Tamii, A., additional, Tran, D. T., additional, Wakasa, T., additional, Wakabayashi, Y., additional, and Wakui, T., additional
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- 2021
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45. Biomaterials for Intervertebral Disc Regeneration
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Gantenbein-Ritter, B., primary and Sakai, D., additional
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- 2011
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46. The pharmacokinetics of fentanyl administered transdermally via a matrix delivery system at three different anatomic locations
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Skrzypczak, H., primary, Knych, H., additional, Brainard, B., additional, Sakai, D., additional, Barletta, M., additional, Quandt, J., additional, Smyth, C., additional, Ruch, M., additional, and Reed, R., additional
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- 2020
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47. Immunological reactions of meperidine in horses
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Trenholme, H., primary, Reed, R., additional, Sakai, D., additional, Hanafi, A., additional, Berghaus, L., additional, Ryan, C., additional, Quandt, J., additional, Barletta, M., additional, and Knych, H., additional
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- 2020
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48. Pharmacokinetics and pharmacodynamics of meperidine in healthy horses
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Trenholme, H., primary, Hanafi, A., additional, Reed, R., additional, Sakai, D., additional, Ryan, C., additional, Barletta, M., additional, Quandt, J., additional, and Knych, H., additional
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- 2020
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49. 1422MO Trastuzumab deruxtecan (T-DXd; DS-8201) in patients with HER2-low, advanced gastric or gastroesophageal junction (GEJ) adenocarcinoma: Results of the exploratory cohorts in the phase II, multicenter, open-label DESTINY-Gastric01 study
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Yamaguchi, K., primary, Bang, Y-J., additional, Iwasa, S., additional, Sugimoto, N., additional, Ryu, M-H., additional, Sakai, D., additional, Chung, H.C., additional, Kawakami, H., additional, Yabusaki, H., additional, Lee, J., additional, Saito, K., additional, Kawaguchi, Y., additional, Kamio, T., additional, Kojima, A., additional, Sugihara, M., additional, and Shitara, K., additional
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- 2020
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50. O-11 Trastuzumab deruxtecan (T-DXd; DS-8201) in patients with HER2-positive advanced gastric or gastroesophageal junction adenocarcinoma: A randomized, phase 2, multicenter, open-label study (DESTINY-Gastric01)
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Yamaguchi, K., primary, Bang, Y., additional, Iwasa, S., additional, Sugimoto, N., additional, Ryu, M., additional, Sakai, D., additional, Chung, H., additional, Kawakami, H., additional, Yabusaki, H., additional, Lee, J., additional, Saito, K., additional, Kawaguchi, Y., additional, Kamio, T., additional, Kojima, A., additional, Sugihara, M., additional, and Shitara, K., additional
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- 2020
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