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Dive into the research topics where Takehiko Nakajima is active.

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Featured researches published by Takehiko Nakajima.


Plastic and Reconstructive Surgery | 1998

Determinations of strength of synthetic hydroxyapatite ceramic implants

Ichiro Ono; Tohru Tateshita; Takehiko Nakajima; Tetsuro Ogawa

&NA; To study the physical strengths of various types of synthetic high porosity hydroxyapatite plates, we constructed samples of a fixed shape, 8 × 25 mm in size, with varying degrees of thickness (3 to 10 mm) and porosity (40, 50, and 60 percent), as well as samples with varying degrees of curvature and samples constructed with computeraided design—computer‐aided manufacturing (CADCAM) technology based on a real‐size model made with laser lithography from computed tomography data. The strength of the samples was studied with the three‐point bending test and crush tests. Studies showed that strength decreases with increasing porosity and increases with increasing thickness. In addition, results of testing plates of varying shapes and degrees of curvature revealed that the effects of these variations were small and that when the width and thickness were held constant, changing the curvature of the entire unit (from a height of 20 to 30 mm) or altering both sides had no remarkable effect on strength. On the other hand, strength testing of plates of various shapes and thicknesses constructed from clinical computed tomography data revealed that minimum optimization of the parameters was achieved when plates had a porosity of about 40 percent and a thickness of about 8 mm. (Plast. Reconstr. Surg. 102: 807, 1998.)


Archive | 2004

Average pore diameter control method for porous body including apatite/collagen composite fiber

Toshiyuki Ikoma; Katsumi Kawamura; Masanori Kikuchi; Naomi Mochizuki; Takehiko Nakajima; Daisuke Shoji; Junzo Tanaka; 武彦 中島; 大助 庄司; 直美 望月; 克己 河村; 俊之 生駒; 順三 田中; 正紀 菊池


Archive | 2005

Method for controlling average pore diameter of porous body comprising apatite/collagen composite fibers

Daisuke Shoji; Katsumi Kawamura; Takehiko Nakajima; Junzo Tanaka; Masanori Kikuchi; Toshiyuki Ikoma; Naomi Mochizuki


Archive | 2012

Implement for surgery

Yoshie Tominaga; 冨永 芳恵; Takehiko Nakajima; 武彦 中島; Tsutomu Morihara; 努 森原; Yasuo Sasai; 恭男 笹井; Makoto Okuhara; 奥原 信; Satoshi Ohmuraya; 聡 大村谷


Archive | 2008

Organ regeneration device

Ichiro Ono; Yoshikiyo Akasaka; Takehiko Nakajima


Archive | 2005

Process for producing a porous object comprising long and short apatite/collagen composite fibers

Junzo Tanaka; Masanori Kikuchi; Toshiyuki Ikoma; Daisuke Shoji; Katsumi Kawamura; Takehiko Nakajima; Naomi Mochizuki


Archive | 2005

Verfahren zur herstellung von porösen gegenständen mit apatit/kollagen-verbundfaser

Junzo Tanaka; Masanori Kikuchi; Toshiyuki Ikoma; Daisuke Shoji; Katsumi Kawamura; Takehiko Nakajima; Naomi Mochizuki


The Spine Journal | 2004

P7. Relationship between porous geometry and bone ingrowth at the surface of hydroxyapatite ceramic spacer for anterior spinal reconstruction

Manabu Ito; Yoshihisa Kotani; Norihiro Hojo; Kuniyoshi Abumi; Ken Kadoya; Akio Minami; Tsuyoshi Kadosawa; Takehiko Nakajima; Yoshie Tominaga; Tetsuro Ogawa


Archive | 2004

Porous composite material with calcium phosphate and manufacturing processes for

Katsumi Kawamura; Takehiko Nakajima; Daisuke Shoji; Junzo Tanaka; Masanori Kikuchi; Toshiyuki Ikoma


Archive | 2004

Poröser verbundstoff mit calciumphosphat und herstellungsverfahren dafür The porous composite with calcium phosphate and the production method thereof

Katsumi Kawamura; Takehiko Nakajima; Daisuke Shoji; Junzo Tanaka; Masanori Kikuchi; Toshiyuki Ikoma

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Daisuke Shoji

National Institute for Materials Science

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Junzo Tanaka

Tokyo Institute of Technology

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Masanori Kikuchi

Tokyo University of Science

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Ichiro Ono

Sapporo Medical University

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