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Fiber-optic annular detector array for large depth of field photoacoustic macroscopy

机译:光纤环形探测器阵列用于大景深的光声宏观检查

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摘要

We report on a novel imaging system for large depth of field photoacoustic scanning macroscopy. Instead of commonly used piezoelectric transducers, fiber-optic based ultrasound detection is applied. The optical fibers are shaped into rings and mainly receive ultrasonic signals stemming from the ring symmetry axes. Four concentric fiber-optic rings with varying diameters are used in order to increase the image quality. Imaging artifacts, originating from the off-axis sensitivity of the rings, are reduced by coherence weighting. We discuss the working principle of the system and present experimental results on tissue mimicking phantoms. The lateral resolution is estimated to be below 200 μm at a depth of 1.5 cm and below 230 μm at a depth of 4.5 cm. The minimum detectable pressure is in the order of 3 Pa. The introduced method has the potential to provide larger imaging depths than acoustic resolution photoacoustic microscopy and an imaging resolution similar to that of photoacoustic computed tomography.
机译:我们报告了一种新型的成像系统,用于大景深的光声扫描宏观检查。代替通常使用的压电换能器,应用了基于光纤的超声检测。光纤被成形为环形,主要接收来自环形对称轴的超声波信号。为了提高图像质量,使用了四个直径不同的同心光纤环。通过相干加权可以减少源自圆环离轴灵敏度的成像伪影。我们讨论了该系统的工作原理,并提出了在组织模拟体模上的实验结果。横向分辨率估计在1.5厘米深度处小于200μm,在4.5 cm深度处小于230μm。最小可检测压力约为3 Pa。引入的方法具有提供比声分辨率光声显微镜更大的成像深度以及与光声计算机断层扫描相似的成像分辨率的潜力。

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