Yoshihito Tateda
University of Yamanashi
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Featured researches published by Yoshihito Tateda.
International Journal of Radiation Oncology Biology Physics | 2003
Kengo Kuriyama; Hiroshi Onishi; Naoki Sano; Takafumi Komiyama; Yoshihito Aikawa; Yoshihito Tateda; Tsutomu Araki; Minoru Uematsu
PURPOSE To improve reproducibility in stereotactic irradiation (STI) without using noninvasive immobilization devices or body frames, we have developed an integrated computed tomography (CT)-linac irradiation system connecting CT scanner and linac via a common treatment couch. METHODS AND MATERIALS This system consists of a linac, a CT scanner, and a common treatment couch. The linac and the CT gantry are positioned on opposite ends of the couch so that, by rotating the treatment couch, linac radiotherapy or CT scanning can be performed. The rotational axis of the linac gantry is coaxial with that of the CT gantry, and the position of the linac isocenter on the couch matches the origin of the coordinate system for CT scanning when the couch is rotated 180 degrees toward the CT side. Instead of the couch moving into the gantry, as in conventional CT, in this case the table is fixed and scanning is accomplished by moving the gantry. We evaluated the rotational accuracy of the common couch and the scan-position accuracy of the self-moving gantry CT. RESULTS The positional accuracy of the common couch was 0.20, 0.18, and 0.39 mm in the lateral, longitudinal, and vertical directions, respectively. The scan-position accuracy of the CT gantry was less than 0.4 mm in the lateral, longitudinal, and vertical directions. CONCLUSION This irradiation system has a high accuracy and is useful for noninvasive STI and for verification of the position of a target in three-dimensional conformal radiotherapy.
International Journal of Radiation Oncology Biology Physics | 2003
Hiroshi Onishi; Kengo Kuriyama; Takafumi Komiyama; Shiho Tanaka; Naoki Sano; Yoshihito Aikawa; Yoshihito Tateda; Tsutomu Araki; Satoshi Ikenaga; Minoru Uematsu
Medical Physics | 2003
Hiroshi Onishi; Kengo Kuriyama; Takafumi Komiyama; Shiho Tanaka; Junko Ueki; Naoki Sano; Tsutomu Araki; Satoshi Ikenaga; Yoshihito Tateda; Yoshihito Aikawa
International Journal of Radiation Oncology Biology Physics | 2002
Hiroshi Onishi; Kengo Kuriyama; Takafumi Komiyama; Shiho Tanaka; Naoki Sano; Yoshihito Aikawa; Yoshihito Tateda; Tsutomu Araki; M Sano; M Hori
International Journal of Radiation Oncology Biology Physics | 2002
Takafumi Komiyama; Hiroshi Onishi; M Nagata; M Hori; Kengo Kuriyama; Shiho Tanaka; M Sano; Tsutomu Araki; Naoki Sano; Yoshihito Tateda; Yoshihito Aikawa
Japanese Journal of Radiological Technology | 1998
Shinji Ohshima; Yoshitomo Sano; Kazuya Yoshizawa; Makoto Yuge; Yoshihito Tateda; Saburou Akiyama; Osamu Nakamura
Japanese Journal of Radiological Technology | 1998
Hajime Sakamoto; Yoshihito Tateda; Shinji Ohshima; Naoki Sano; Takao Arai; Yoshitomo Sano; Saburou Akiyama; Osamu Nakamura
Japanese Journal of Radiological Technology | 1997
Hajime Sakamoto; Shinji Ohshima; Makoto Yuge; Yoshihito Aikawa; Satoshi Ikenaga; Kazunari Ashizawa; Hiroyuki Nagashima; Yoshihito Tateda; Kazuya Yoshizawa; Naoki Sano; Hiroshi Kumagai; Takao Arai; Yoshitomo Sano; Saburou Akiyama; Osamu Nakamura
Japanese Journal of Radiological Technology | 1995
Yoshihito Aikawa; Hajime Sakamoto; Shinji Ohshima; Yoshihito Tateda; Kazuya Yoshizawa; Hiroshi Kumagai; Yoshitomo Sano; Saburou Akiyama; Osamu Nakamura
Japanese Journal of Radiological Technology | 1994
Yoshitomo Sano; Kazuya Yoshizawa; Yoshihito Aikawa; Yoshihito Tateda; Shinji Ohshima; Makoto Yuge; Saburou Akiyama; Osamu Nakamura; Hiroyuki Ohishi; Yoshihiro Sakuma