Asao Yasufumi, Hashizume Yohei, Suita Takahiro, Nagae Ken-Ichi, Fukutani Kazuhiko, Sudo Yoshiaki, Matsushita Toshikazu, Kobayashi Shuichi, Tokiwa Mariko, Yamaga Iku, Fakhrejahani Elham, Torii Masae, Kawashima Masahiro, Takada Masahiro, Kanao Shotaro, Kataoka Masako, Shiina Tsuyoshi, Toi Masakazu
Canon Inc., Medical Imaging Development Center, 3-30-2, Shimomaruko, Ohta-ku, Tokyo 1468501, JapanbKyoto University, Graduate School of Medicine, Department of Breast Surgery, 54 Shogoin-Kawaharacho Sakyo-ku, Kyoto 6068507, Japan.
Canon Inc., Medical Imaging Development Center, 3-30-2, Shimomaruko, Ohta-ku, Tokyo 1468501, Japan.
J Biomed Opt. 2016 Nov 1;21(11):116009. doi: 10.1117/1.JBO.21.11.116009.
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.
我们构建了一个能够同时采集光声(PA)和超声(US)图像的光声乳腺成像系统原型(PAM - 02)。使用超声换能器的扫描模块、光声探测器和光学棱镜,可以在乳房的大面积区域采集每个光声、超声以及融合后的光声/超声图像。与使用我们之前的原型采集的图像相比,光声图像的分辨率从2毫米提高到了1毫米。PAM - 02的最大扫描区域在水平轴上为90毫米,在垂直轴上为150毫米。在体模实验中,有效深度至少为45毫米。展示了PAM - 02原型在京都大学临床研究中的一个代表性应用实例,该实例显示了S因子图像,这些图像被认为是与肿瘤相关血管的血红蛋白饱和度相关的近似参数。我们证实了该系统在解剖学和生物学研究中的适用性。