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Photoacoustic projection imaging using a 64-channel fiber optic detector array

机译:使用64通道光纤探测器阵列的光声投影成像

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In this work we present photoacoustic projection imaging with a 64-channel integrating line detector array, which average the pressure over cylindrical surfaces. For imaging, the line detectors are arranged parallel to each other on a cylindrical surface surrounding a specimen. Thereby, the three-dimensional imaging problem is reduced to a two-dimensional problem, facilitating projection imaging. After acquisition of a dataset of pressure signals, a two-dimensional photoacoustic projection image is reconstructed. The 64 channel line detector array is realized using optical fibers being part of interferometers. The parts of the interferometers used to detect the ultrasonic pressure waves consist of graded-index polymer-optical fibers (POFs), which exhibit better sensitivity than standard glass-optical fibers. Ultrasonic waves impinging on the POFs change the phase of light in the fiber-core due to the strain-optic effect. This phase shifts, representing the pressure signals, are demodulated using high-bandwidth balanced photo-detectors. The 64 detectors are optically multiplexed to 16 detection channels, thereby allowing fast imaging. Results are shown on a Rhodamine B dyed microsphere.
机译:在这项工作中,我们提出了一种具有64通道积分线检测器阵列的光声投影成像,该阵列可以平均圆柱表面上的压力。为了成像,线检测器彼此平行地布置在围绕样本的圆柱表面上。从而,将三维成像问题简化为二维问题,从而有利于投影成像。在获取压力信号的数据集之后,重建二维光声投影图像。使用作为干涉仪一部分的光纤来实现64通道线检测器阵列。用于检测超声波压力波的干涉仪的各个部分由梯度折射率聚合物光纤(POF)组成,该光纤表现出比标准玻璃光纤更好的灵敏度。由于应变光效应,撞击在POF上的超声波会改变光纤纤芯中的光相位。使用高带宽平衡光电探测器对代表压力信号的相移进行解调。将64个检测器光学复用到16个检测通道,从而实现快速成像。结果显示在若丹明B染色的微球上。

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