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Optical and mechanical properties in photorefractive crystal based ultrasound-modulated optical tomography

机译:基于光折叠晶体的超声调制光学断层扫描的光学和力学性能

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Ultrasound-modulated optical tomography (UOT) is a new technique that combines laser light and ultrasound to provide images with good optical contrast and good ultrasound resolution in soft biological tissue. We improve the method proposed by Murray et al to obtain UOT images in thick biological tissues with the use of photorefractive crystal based interferometers. It is found that a long ultrasound burst (on the order of a millisecond) can improve the signal-to-noise ratio dramatically. Also with a long ultrasound burst, the response of the acoustic radiation force impulses can be clearly observed in the UOT signal, which will help to acquire images that record both the optical and mechanical properties of biological soft tissues.
机译:超声调制的光学断层扫描(UOT)是一种新的技术,将激光和超声组合在软化生物组织中提供具有良好光学对比度和良好的超声分辨率的图像。我们通过使用光折射晶体基于干涉仪来改善Murray等人提出的方法,以获得厚生物组织中的UOT图像。发现长超声突发(大约一毫秒)可以显着提高信噪比。还具有长的超声突发,可以在UOT信号中清楚地观察到声辐射力脉冲的响应,这将有助于获取记录生物软组织的光学和机械性能的图像。

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