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Dive into the research topics where Eiichi Takami is active.

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Featured researches published by Eiichi Takami.


Medical Imaging 1998: Physics of Medical Imaging | 1998

Novel large-area MIS-type x-ray image sensor for digital radiography

Toshio Kameshima; Noriyuki Kaifu; Eiichi Takami; Masakazu Morishita; Tatsuya Yamazaki

We have developed a brand new, large-area X-ray image sensor for Digital Radiography System (DRS). The sensor utilizes a thin film transistor (TFT)/metal insulator semiconductor (MIS)-type photoelectric converter array made from hydrogenated amorphous silicon (a-Si:H). The sensor has 2688 X 2688 pixels at a pitch of 160 micrometer. The active area is 17 inch X 17 inch. The sensor utilizes scintillator coupled to the array. The light generated by X-rays is detected by the MIS-type photoelectric converters, and the resultant signals are scanned out by switching the TFTs. The a-Si TFT/MIS-type photoelectric converter array is characterized by high signal to noise ratio (SNR) and simple fabrication process. We will describe the principle and the performance of the sensor. In addition, we will present some X-ray images of a human subject obtained with this sensor. Dynamic range of the sensor covers most of the exposure range for radiography. SNR is limited almost only by the X-ray photon noise. MTF is sufficient for digital chest radiography. X-ray images have good contrast. The experimental results and obtained images show that the brand new sensor has great advantages for replacing X-ray film. The simple fabrication process of the sensor promises high productivity and low cost of DRS.


Archive | 1997

Photoelectric conversion device having thermal conductive member

Tadao Endo; Akira Funakoshi; Akira Tago; Shinichi Takeda; Eiichi Takami; Masakazu Morishita; Shinichi Hayashi; Toshikazu Tamura; Minoru Watanabe


Archive | 2001

Radiation image pickup device and system

Kenji Kajiwara; Eiichi Takami; Chido Yokokawa


Archive | 1996

Photoelectric conversion apparatus and X-ray image pickup apparatus

Isao Kobayashi; Akira Funakoshi; Akira Tago; Noriyuki Kaifu; Shinichi Takeda; Eiichi Takami; Masakazu Morishita; Shinichi Hayashi; Tadao Endo; Toshikazu Tamura; Kazuaki Tashiro


Archive | 1998

Photoelectric conversion device having flexible cable fixed to chassis

Tadao Endo; Akira Funakoshi; Akira Tago; Shinichi Takeda; Eiichi Takami; Masakazu Morishita; Shinichi Hayashi; Toshikazu Tamura; Minoru Watanabe


Archive | 1996

Photoelectric conversion apparatus and method of manufacturing the same

Shinichi Hayashi; Akira Funakoshi; Akira Tago; Satoshi Okada; Shinichi Takeda; Eiichi Takami; Masakazu Morishita; Tadao Endo; Toshikazu Tamura


Archive | 1996

Photoelectric conversion apparatus with level photoreceiving surface

Shinichi Hayashi; Akira Funakoshi; Akira Tago; Satoshi Okada; Shinichi Takeda; Eiichi Takami; Masakazu Morishita; Tadao Endo; Toshikazu Tamura


Archive | 1996

Photoelectric converter and its manufacturing method as well as material transmission image pickup device and package device

Tadao Endo; Akira Funakoshi; Shinichi Hayashi; Masakazu Morishita; Satoshi Okada; Akira Tago; Eiichi Takami; Shinichi Takeda; Toshikazu Tamura; 章 冨名腰; 晃 多胡; 岡田 聡; 千織 望月; 眞一 林; 正和 森下; 敏和 田村; 慎市 竹田; 忠夫 遠藤; 栄一 高見


Archive | 2010

Apparatus and system for imaging radiation

Kenji Kajiwara; Eiichi Takami; Tomomichi Yokogawa; 賢治 梶原; 知道 横川; 栄一 高見


Archive | 1998

Photoelectric conversion device having photoelectric conversion elements

Eiichi Takami; Noriyuki Kaifu; Kenji Kajiwara

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