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Dive into the research topics where Hideyo Miyaoka is active.

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Featured researches published by Hideyo Miyaoka.


Critical Care Medicine | 2006

Neuronal damage in rat brain and spinal cord after cardiac arrest and massive hemorrhagic shock

Yoshifumi Kudo; Hirokazu Ohtaki; Kenji Dohi; Li Yin; Tomoya Nakamachi; Sakura Endo; Sachiko Yofu; Yutaka Hiraizumi; Hideyo Miyaoka; Seiji Shioda

Objective:Severe global ischemia often results in severe damage to the central nervous system of survivors. Hind-limb paralysis is a common deficit caused by global ischemia. Until recently, most studies of global ischemia of the central nervous system have examined either the brain or spinal cord, but not both. Spinal cord damage specifically after global ischemia has not been studied in detail. Because the exact nature of the neuronal damage to the spinal cord and the differences in neuronal damage between the brain and spinal cord after global ischemia are poorly understood, we developed a new global ischemia model in the rat and specifically studied spinal cord damage after global ischemia. Further, we compared the different forms of neuronal damage between the brain and spinal cord after global ischemia. Design:Randomized, controlled study using three different global ischemia models in the rat. Setting:University research laboratory. Subjects:Male, adult Sprague-Dawley rats (300 g). Interventions:Animals were divided into three experimental groups, group A (n = 6, survived for 7 days), 12 mins of hemorrhagic shock; group B (n = 6, survived for 7 days), 5 mins of cardiac arrest; or group C (n = 6, each for 6 hrs, 12 hrs, 1 day, 3 days, and 7 days), 7 mins of hemorrhagic shock and 5 mins of cardiac arrest. Motor deficit of the hind limbs was studied 6 hrs to 7 days after resuscitation. Also, nonoperated animals (n = 6) were used as the control. Histologic analysis (hematoxylin and eosin, Fluoro-Jade B, terminal deoxynucleotidyl transferase- mediated dUTP end-labeling [TUNEL], Klüver-Barrera) and ultrastructural analysis using electron microscopy were performed on samples from the CA1 region of the hippocampus and lumbar spinal cord. Demyelination of the white matter of the lumbar spinal cord was analyzed semiquantitatively using Scion Image software. Main Results:No paraplegic animals were observed in either group A or B. All group C animals showed severe hind-limb paralysis. Severe neuronal damage was found in the CA1 region of the hippocampus in all groups, and the state of delayed neuronal cell death was similar among the three groups. Neuronal damage in the lumbar spinal cord was detected only in group C animals, mainly in the dorsal horn and intermediate gray matter. Demyelination was prominent in the ventral and ventrolateral white matter in group C. A significant difference was observed between control and group C rats with Scion Image software. Ultrastructural analysis revealed extensive necrotic cell death in the intermediate gray matter in the lumbar spinal cord in group C rats. Conclusion:The combination in the global ischemia model (i.e., hemorrhagic shock followed by cardiac arrest) caused severe neuronal damage in the central nervous system. Thereby, hind-limb paralysis after global ischemia might result from spinal cord damage. These results suggest that therapeutic strategies for preventing spinal cord injury are necessary when treating patients with severe global ischemia.


Arthritis Research & Therapy | 2003

A novel mechanism for the regulation of IFN-γ inducible protein-10 expression in rheumatoid arthritis

Ryosuke Hanaoka; Tsuyoshi Kasama; Mizuho Muramatsu; Nobuyuki Yajima; Fumitaka Shiozawa; Yusuke Miwa; Masao Negishi; Hirotsugu Ide; Hideyo Miyaoka; Hitoshi Uchida; Mitsuru Adachi


Journal of Orthopaedic Science | 1999

Radial-sequence magnetic resonance imaging in evaluation of acetabular labrum

Toshikazu Kubo; Motoyuki Horii; Yoshitada Harada; Yasuo Noguchi; Yasutaka Yutani; Hirotsugu Ohashi; Yudo Hachiya; Hideyo Miyaoka; Shoji Naruse; Yasusuke Hirasawa


Neuroscience Research | 2007

Increased mitochondrial DNA oxidative damage after transient middle cerebral artery occlusion in mice.

Hirokazu Ohtaki; Takaaki Takeda; Kenji Dohi; Sachiko Yofu; Tomoya Nakamachi; Kazue Satoh; Yutaka Hiraizumi; Hideyo Miyaoka; Masaji Matsunaga; Seiji Shioda


Journal of Medical Microbiology | 2007

Epigallocatechin gallate suppresses expression of receptor activator of NF-κB ligand (RANKL) in Staphylococcus aureus infection in osteoblast-like NRG cells

Ikuo Ishida; Chikara Kohda; Yoko Yanagawa; Hideyo Miyaoka; Tadakatsu Shimamura


Orthopaedics and Traumatology | 1980

Injuries of the Elbow

Hideyo Miyaoka; Etsuo Fujimaki; Keizo Sakamoto; K. Kotani; Setsuro Kuriyama; K. Okano


Journal of Orthopaedic Science | 2000

A 10- to 13-year follow-up study of Harris-Galante type prosthesis in total hip arthroplasty

Shigehiro Inoue; Toshikazu Kubo; Hiroshi Suehara; Shoichi Yamazoe; Masanori Nakamura; Hideyo Miyaoka; Yasusuke Hirasawa


The Showa University Journal of Medical Sciences | 2013

Effectiveness of Initial Fixation of a Grasping Pin for Proximal Femoral Fractures

Yasutaka Kaji; Masanori Nakamura; Hideyo Miyaoka; Yusuke Nakamura; Katsunori Inagaki; Naruhito Otsuka; Hiroya Oshii; Yuji Tanabe


東日本整形災害外科学会雑誌 = Journal of the Eastern Japan Association of Orthopaedics and Traumatology | 2010

Effects of calcitonin preparation (elcatonin) on blood pressure and pulse wave velocity

隆士 永井; Keizo Sakamoto; Katsunori Inagaki; Hideyo Miyaoka; Yoshinobu Nishiyama; Kennichi Munechika


東日本整形災害外科学会雑誌 = Journal of the Eastern Japan Association of Orthopaedics and Traumatology | 2009

Effect of elcatonin on brachial-ankle pulse wave velocity : A preliminary report

隆士 永井; Keizo Sakamoto; Hideyo Miyaoka; Katsunori Inagaki

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