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Effect of ultrasound transducer face reflectivity on the light fluence inside a turbid medium in photoacoustic imaging

机译:超声换能器面部反射率对光声成像中混浊介质内部光通量的影响

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摘要

Many endoscopic, intravascular, and transvaginal applications require light to be delivered through optical fibers in a reflection mode. For photoacoustic imaging in reflection geometry, the front-face reflectivity of the ultrasound transducer face imposes a boundary condition that affects the light fluence and its distribution inside a turbid medium. Understanding and characterizing this boundary condition is critical for maximizing tissue illumination and therefore the signal-to-noise ratio of the photoacoustic signal. We systematically analyze the light fluence under three typical commercial transducer faces having reflection coefficients of 1.4, 18, and 28%, and compare the results to a transducer face with 60% coefficient at the laser wavelength of 750 nm. Monte Carlo simulations and experimental results show that light fluence and distribution obtained inside a turbid medium with the use of the 60% reflection coefficient transducer face has a significant improvement over the others, especially at shallower depths.
机译:许多内窥镜,血管内和经阴道的应用都要求光以反射模式通过光纤传输。对于反射几何中的光声成像,超声换能器面的正面反射率会施加边界条件,该边界条件会影响光通量及其在混浊介质内部的分布。理解和表征该边界条件对于最大化组织照明并因此最大化光声信号的信噪比至关重要。我们系统地分析了反射系数分别为1.4、18和28%的三个典型商用换能器面下的光通量,并将结果与​​在750 nm激光波长下具有60%系数的换能器面进行比较。蒙特卡罗模拟和实验结果表明,使用60%反射系数换能器面在浑浊的介质内部获得的光通量和分布具有明显的改善,尤其是在较浅的深度。

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