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Optimizing the light delivery of linear-array-based photoacoustic systems by double acoustic reflectors

机译:通过双声反射器优化基于线性阵列的光声系统的光传输

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摘要

Although linear transducer arrays have been intensely used in photoacoustic imaging, their geometrical shape constrains light illumination. Today, most linear array based photoacoustic systems utilize side-illumination geometry, which consists of two line fiber bundles attached to the side of the probe. The angled light illumination increases the light travel distance in deep tissue, consequently limiting the imaging depth. This issue was partially addressed by adding a right angle prism in front of the transducer. While this design makes the light illumination and acoustic detection co-axial, the transducer and the fiber bundles are orthogonal to each other, making the system inconvenient for handheld use. To overcome this limitation, here we propose a double-reflector design, in which the second reflector redirects the acoustic signals by another 90°, so that the transducer and the fiber bundle are now parallel to each other. In this design, both the transducer and fiber bundle output are fitted into a compact housing for convenient handheld imaging. To evaluate the efficiency of our design, we performed various phantom and human in vivo experiments. Our results demonstrate that the double-reflector design indeed provides deeper imaging depth and it also allows for easy imaging of objects with uneven surfaces.
机译:尽管线性换能器阵列已在光声成像中得到广泛使用,但其几何形状限制了光照。如今,大多数基于线性阵列的光声系统利用侧面照明几何结构,该结构由连接到探头侧面的两根线状纤维束组成。倾斜的光照明增加了在深层组织中的光传播距离,因此限制了成像深度。通过在换能器前面添加直角棱镜可以部分解决此问题。尽管此设计使光照明和声音检测同轴,但换能器和光纤束彼此正交,使得该系统不便于手持使用。为了克服这一限制,在这里我们提出一种双反射器设计,其中第二个反射器将声信号重定向另一个90°,这样换能器和光纤束现在彼此平行。在这种设计中,换能器和光纤束输出均安装在紧凑的外壳中,以方便手持成像。为了评估我们设计的效率,我们进行了各种幻像和人体体内实验。我们的结果表明,双反射器设计确实可以提供更深的成像深度,并且还可以轻松成像具有不平坦表面的物体。

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