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Three-dimensional photoacoustic imaging with a clinical two-dimensional matrix ultrasound transducer

机译:使用临床二维矩阵超声换能器进行三维光声成像

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摘要

Photoacoustic tomography provides both structural and functional imaging in vivo based on optical absorption contrast. A novel imaging system that incorporates a two-dimensional matrix ultrasound probe for combined photoacoustic and ultrasonic three-dimensional (3D) volumetric imaging is presented. The system consists of a tunable dye laser pumped by a Nd:YAG laser, a commercial ultrasound imaging system (Philips iU22) with a two-dimensional matrix transducer (Philips X7-2, 2500 elements, 2-7 MHz), and a multichannel data acquisition system which allows us to acquire RF channel data. Compared with alternative 3D techniques, this system is attractive because it can generate co-registered 3D photoacoustic and ultrasound images without mechanical scanning. Moreover, the lateral resolution along the azimuth and elevational directions are measured to be 0.77 ± 0.06 mm and 0.96 ± 0.06 mm, respectively, based on reconstructed photoacoustic images of phantoms containing individual human hairs. Finally, in vivo 3D photoacoustic sentinel lymph node mapping using methylene blue dye in a rat model is demonstrated.
机译:光声层析成像基于光吸收对比在体内提供结构和功能成像。提出了一种新颖的成像系统,该系统结合了二维矩阵超声探头,用于组合的光声和超声三维(3D)体积成像。该系统由Nd:YAG激光器泵浦的可调染料激光器,带有二维矩阵换能器(Philips X7-2、2500个元素,2-7 MHz)的商业超声成像系统(Philips iU22)和一个多通道组成数据采集​​系统,可让我们采集RF通道数据。与其他3D技术相比,该系统具有吸引力,因为它可以在不进行机械扫描的情况下生成共同注册的3D光声和超声图像。此外,基于包含单个人发的人体模型的重建光声图像,测得的沿方位角和仰角方向的横向分辨率分别为0.77±0.06 mm和0.96±0.06 mm。最后,在大鼠模型中证明了使用亚甲基蓝染料的体内3D光声前哨淋巴结定位。

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