Masaki Asahara
Kagawa University
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Featured researches published by Masaki Asahara.
Medical Physics | 2012
Masaki Asahara; Yoshie Kodera
PURPOSE The authors developed a computer algorithm to automatically evaluate images of the American College of Radiology (ACR) mammography accreditation phantom. METHODS The developed algorithm consist of the edge detection of wax insert, nonuniformity correction of background, and correction for magnification and also calculate the cross-correlation coefficient by image matching technique. The algorithm additionally evaluates target shape for fibers, target contrast for speck groups, and target circularity for masses. To obtain an ideal template image without noise and spatial resolution loss, the wax insert containing the embedded test pattern was extracted from the phantom and radiographed. Two template images and ten test phantom images were prepared for this study. The results of evaluation using the algorithm outputs were compared with the averaged results of observer studies by six skilled observers. RESULTS In comparing the results from the algorithm outputs with the results of observers, the authors found that the computer outputs were well correlated with the evaluations by observers, and they indicate the quality of the phantom image. The correlation coefficients between results of observer studies and two outputs of computer algorithm, i.e., the cross-correlation coefficient by template matching and indices of target shape for fibers, were 0.89 (95% confidence interval, 0.82-0.93; hereinafter the same) and 0.85 (0.76-0.91). The correlation coefficients between observers results and two outputs: the cross-correlation coefficient and indices of target contrast for speck groups, were 0.83 (0.79-0.86) and 0.85 (0.81-0.88) and between observers results and two outputs: the cross-correlation coefficient and indices of target circularity for masses, were 0.90 (0.84-0.94) and 0.87 (0.77-0.92). CONCLUSIONS Image evaluation using the ACR phantom is indispensable in quality control of a mammography system. The proposed algorithm is useful for quality control and image evaluation of mammography units.
放射線医学物理 | 1999
Yoshiharu Higashida; Masaki Asahara; Tsuguhisa Katoh; Akira Hagiwara; Hiroshi Terada; Katsuhei Horita; Ryuji Suzuki; Keiko Imamura; Noriaki Ohuchi
Nihon Nyugan Kenshin Gakkaishi (journal of Japan Association of Breast Cancer Screening) | 1999
Tsuguhisa Katoh; Mitsuomi Matsumoto; Yoshiharu Higashida; Kanae Nishizawa; Masaki Asahara; Akira Hagiwara; Hiroshi Terada; Katsuhei Horita; Ryuji Suzuki; Keiko Imamura; Yoshihisa Akiyama; Motohiro Nisitani; Norimichi Juto; Hiroshi Kato; Noriaki Ohuchi
Japanese Journal of Radiological Technology | 1998
Ken-Ichi Yoshida; Yasunori Murakami; Masaki Asahara; Satoru Nakamura; Mitsugi Honda; Junji Morishita; Yoshiharu Higashida; Akiyoshi Otsuka; Akira Yoshida
Japanese Journal of Radiological Technology | 1997
Takashi Ishimori; Kazuo Ogawa; Hiroshi Sukeishi; Masaki Asahara; Toshiaki Kusuhara
Japanese Journal of Radiological Technology | 1997
Akiyoshi Ohtsuka; Ken-Ichi Yoshida; Yasunori Murakami; Masaki Asahara; Junji Morishita; Mitsugi Honda; Satoru Nakamura; Akira Yoshida; Yoshiharu Higashida; Yoshiei Kodera
Japanese Journal of Radiological Technology | 1996
Masaki Asahara; Akira Yoshida; Yoshiharu Higashida; Akiyoshi Ohtsuka
Japanese Journal of Radiological Technology | 1996
Kazuo Ogawa; Yasuko Sogou; Takashi Ishimori; Hiroshi Sukeishi; Masaki Asahara; Toshiaki Kusuhara; Setsuo Nakase
Japanese Journal of Radiological Technology | 1996
Hiroomi Sumida; Akiyoshi Ohtsuka; Ken-Ichi Yoshida; Yoshiharu Higashida; Noboru Katsuda; Yasuhiro Hiai; Akira Yoshida; Masaki Asahara; Yoshie Kodera; Masahiko Ohtsuka; Tadashi Sunayashiki
Japanese Journal of Radiological Technology | 1996
Ken-Ichi Yoshida; Akiyoshi Ohtsuka; Z. Higashida; Yasunori Murakami; Masaki Asahara; Junji Morishita; Mitsugi Honda; Yoshie Kodera; Akira Yoshida; Hiroomi Sumida; Masahiko Ohtsuka