天田財団_助成研究成果報告書2023_2
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特開2021-132622(出願日2020.2.28)「核酸の分離方法及び増幅方法」常翔学園(長嶺憲太郎)、神野学園(中山章文)、奈良県立医科大学(古川彰)。審査請求中。 (参考文献) J. − 249 −(1) Assem Y., Mobbs R.J., Pelletier M.H. et al., Radiological and clinical outcomes of novel Ti/PEEK combined spinal fusion cages: a systematic review and preclinical evaluation, Eur. Spine (2017) 26, 593–605. https://doi.org/10.1007/s00586-015-4353-8. (2) Manabe H., Sakai T., Morimoto M., Tezuka F.,Yamashita K., Takata Y., Sairyo K., Radiological outcomes of posterior lumbar interbody fusion using a titanium-coated PEEK cage. The Journal of Medical Investigation, (2019) 66(1.2) 119-122. https://doi.org/10.2152/jmi.66.119) (3) Sakai K., Present and Future Requirements for Materials in Arthroplasty, Materia Japan, (2014) 53(4), 139–142. (4) Davies, S. J., Edwards, C., Taylor, G. S., & Palmer, S. B. (1993). Laser-generated ultrasound: its properties, mechanisms and multifarious applications. Journal of Physics D: Applied Physics, 26(3), 329. (5) Sarode A. P., Temperature aspects of a cuboid crystal in photoacoustic interaction, Tomsk State University Journal of Mathematics and Mechanics, 74. 55–62 (2021). DOI 10.17223/19988621/74/6. (2021) (6) Petra E. de Jongh and Tamara M. Eggenhuisen, Melt Infiltration: an Emerging Technique for the Preparation of Novel Functional Nanostructured Materials, Advanced Materials, 25(46), 6672-6690 (2013). https://doi.org/10.1002/adma.201301912 (7) Altomare, A.; Cuocci, C.; Giacovazzo, C.; Moliterni, A.; Rizzi, R.; Corriero, N.; Falcicchio, A. EXPO2013: A kit of tools for phasing crystal structures from powder data. J. Appl. Crystallogr. 2013, 46, 1231–1235. https://doi.org/10.1107/S0021889813013113 Johner, A., Shin, K., Obukhov, S., Nanofluidity of a polymer melt: Breakdown of Poiseuille’s flow model. EPL 2010, 91, 38002. DOI 10.1209/0295-5075/91/38002 (8)

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