Yohei Hashizume
Canon Inc.
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Featured researches published by Yohei Hashizume.
PLOS ONE | 2015
Elham Fakhrejahani; Masae Torii; Toshiyuki Kitai; Shotaro Kanao; Yasufumi Asao; Yohei Hashizume; Yoshiki Mikami; Iku Yamaga; Masako Kataoka; Tomoharu Sugie; Masahiro Takada; Hironori Haga; Kaori Togashi; Tsuyoshi Shiina; Masakazu Toi
Photoacoustic tomography is a recently developed imaging modality that can provide high spatial-resolution images of hemoglobin distribution in tissues such as the breast. Because breast cancer is an angiogenesis-dependent type of malignancy, we evaluated the clinical acceptability of breast tissue images produced using our first prototype photoacoustic mammography (PAM) system in patients with known cancer. Post-excisionally, histological sections of the tumors were stained immunohistochemically (IHC) for CD31 (an endothelial marker) and carbonic anhydrase IX (CAIX) (a marker of hypoxia). Whole-slide scanning and image analyses were used to evaluate the tumor microvessel distribution pattern and to calculate the total vascular perimeter (TVP)/area for each lesion. In this clinical study, 42 lesions were primarily scanned using PAM preoperatively, three of which were reported to be benign and were excluded from statistical analysis. Images were produced for 29 out of 39 cancers (visibility rate = 74.4%) at the median depth of 26.5 (3.25–51.2) mm. Age, menopausal status, body mass index, history of neoadjuvant treatment, clinical stage and histological tumor angiogenesis markers did not seem to affect the visibility. The oxygen saturation level in all of the measured lesions was lower than in the subcutaneous counterpart vessels (Wilcoxon test, p value<0.001), as well as in the counterpart contralateral normal breast region of interest (ROI) (Wilcoxon test, p value = 0.001). Although the oxygen saturation level was not statistically significant between CAIX-positive vs. -negative cases, lesional TVP/area showed a positive correlation with the oxygen saturation level only in the group that had received therapy before PAM. In conclusion, the vascular and oxygenation data obtained by PAM have great potential for identifying functional features of breast tumors.
Journal of Biomedical Optics | 2016
Yasufumi Asao; Yohei Hashizume; Takahiro Suita; Ken Ichi Nagae; Kazuhiko Fukutani; Yoshiaki Sudo; Toshikazu Matsushita; Shuichi Kobayashi; Mariko Tokiwa; Iku Yamaga; Elham Fakhrejahani; Masae Torii; Masahiro Kawashima; Masahiro Takada; Shotaro Kanao; Masako Kataoka; Tsuyoshi Shiina; Masakazu Toi
Abstract. We have constructed a prototype photoacoustic mammography system (PAM-02) capable of simultaneously acquiring photoacoustic (PA) and ultrasound (US) images. Each PA, US, and fused PA/US image can be acquired over a wide area of the breast using the scanning module of a US transducer, a PA detector, and optical prisms. The resolution of the PA images exhibits improvement from 2 to 1 mm compared to images acquired using our previous prototype. The maximum scan area of PAM-02 is 90 mm along the horizontal axis and 150 mm along the vertical axis. In a phantom experiment, the available depth was at least 45 mm. A representative example of the application of the PAM-02 prototype in clinical research at Kyoto University is presented and shows S-factor images, which are considered an approximation parameter related to hemoglobin saturation of tumor-related blood vessels. We confirmed the applicability of the system for anatomical and biological research.
Archive | 2011
Yohei Hashizume
Archive | 2010
Taro Hiroike; Yohei Hashizume
Archive | 2010
Yohei Hashizume
Archive | 2017
Kohtaro Umezawa; Yohei Hashizume; Mie Okano; Yohei Motoki
Archive | 2017
Mie Okano; Yohei Hashizume; Yasufumi Asao
Archive | 2016
Takahiro Suita; Ryo Ogawa; Yohei Hashizume; Yasufumi Asao
Archive | 2012
Yohei Hashizume
Archive | 2010
Fumikazu Kobayashi; Yohei Hashizume