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High-SNR ultrasound-modulated optical tomography with intense acoustic bursts

机译:高SNR超声调制光学断层扫描,具有激烈的声学爆发

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We present a novel signal-enhancement method for ultrasound modulated optical tomography that can increase the amount of modulated light, compared to previous methods. By applying intense acoustic bursts, particle displacements of several microns are possible at a very local scale. A CCD camera captured the speckle pattern emerging from a laser-illuminated tissue phantom and differences in laser speckle contrast were measured between ultrasound on and off states. When CCD triggering was synchronized with burst initiation, ultrasound radiation force-induced displacements were detected with our technique, and resulting shear waves were shown to degrade image contrast and spatial resolution. Deleterious effects of shear waves were minimized by delaying CCD camera acquisition several ms until shear waves are adequately attenuated. Our system signal-to-noise ratio (SNR) is sufficiently high to perform UOT scanning without signal averaging. Because of substantially improved SNR compared to previous techniques, the use of intense acoustic burst is a new promising method for ultrasound modulated optical tomography.
机译:我们提出了一种用于超声调制光学断层摄影的新型信号增强方法,其可以增加调制光量,与之前的方法相比。通过施加强烈的声学突发,可以以非常局部的尺度施加几微米的粒子位移。 CCD照相机捕获的超声之间测量开和关状态的散斑图案从激光照射的组织模型和在激光散斑对比度的差异出现。当CCD触发与突发启动同步时,用我们的技术检测超声辐射力诱导的位移,并且显示出导致的剪切波来降低图像对比度和空间分辨率。通过延迟CCD摄像机采集,在剪切波被充分减弱之前,通过延迟CCD相机获取最小化剪切波的有害效果。我们的系统信噪比(SNR)足够高,以便在没有信号平均的情况下执行UOT扫描。因为基本上改进的SNR相比,先前的技术,利用声激烈突发是用于超声一个新的有希望的方法调制的光学断层摄影术。

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