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Simultaneous Photoacoustic and Ultrasound Imaging Using a Hemispherical Sensor Array

机译:使用半球形传感器阵列同时进行光声和超声成像

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A hemispherical sensor array enables photoacoustic (PA) imaging with more spatially isotropic and finer vasculature than those of a planar sensor array. Combining ultrasound (US) and PA images can clarify structural relations of tissues and vessels. Although a piezoelectric element of the hemispherical sensor array can perform pulse-echo, the array is sparse because of the few channels on data acquisition systems. Therefore, beamforming cannot be applied properly: adequate US image quality is obtainable. For this study, we used mechanical scanning to increase the number of virtual elements. We also used synthetic aperture (SA) imaging to improve US image quality. They enable simultaneous PA and US measurements using a hemispherical sensor array. Measurements taken using PA and US signals from a tissue-mimicking agar phantom demonstrate that scanning sensors improved the US image contrast and the field of view compared to results obtained when a sensor is not scanned. Moreover, a PA image visualized only optical absorbers. Furthermore, combining PA and US images facilitates identification of where optical absorbers are located.
机译:半球形传感器阵列使光声(PA)成像具有比平面传感器阵列更高的空间各向同性和更精细的脉管系统。结合超声(US)图像和PA图像可以阐明组织和血管的结构关系。尽管半球形传感器阵列的压电元件可以执行脉冲回波,但由于数据采集系统上的通道很少,因此阵列稀疏。因此,不能正确应用波束成形:可以获得足够的US图像质量。在本研究中,我们使用机械扫描来增加虚拟元素的数量。我们还使用合成孔径(SA)成像来改善美国图像质量。它们可以使用半球形传感器阵列同时进行PA和US测量。使用来自模仿组织的琼脂模型的PA和US信号进行的测量表明,与不扫描传感器时得到的结果相比,扫描传感器改善了US图像的对比度和视野。此外,PA图像仅显示光学吸收体。此外,组合PA和US图像有助于识别光学吸收器的位置。

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