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Laser Speckle Contrast Imaging: Theory, Instrumentation and Applications

机译:激光散斑对比度成像:理论,仪器和应用

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摘要

Laser Speckle Contrast Imaging (LSCI) is a wide field of view, non scanning optical technique for observing blood flow. Speckles are produced when coherent light scattered back from biological tissue is diffracted through the limiting aperture of focusing optics. Mobile scatterers cause the speckle pattern to blur; a model can be constructed by inversely relating the degree of blur, termed speckle contrast to the scatterer speed. In tissue, red blood cells are the main source of moving scatterers. Therefore, blood flow acts as a virtual contrast agent, outlining blood vessels. The spatial resolution $({sim 10}~mu{rm m})$ and temporal resolution (10 ms to 10 s) of LSCI can be tailored to the application. Restricted by the penetration depth of light, LSCI can only visualize superficial blood flow. Additionally, due to its non scanning nature, LSCI is unable to provide depth resolved images. The simple setup and non-dependence on exogenous contrast agents have made LSCI a popular tool for studying vascular structure and blood flow dynamics. We discuss the theory and practice of LSCI and critically analyze its merit in major areas of application such as retinal imaging, imaging of skin perfusion as well as imaging of neurophysiology.
机译:激光散斑对比度成像(LSCI)是一种宽范围的非扫描光学技术,用于观察血流。当从生物组织散射回来的相干光通过聚焦光学器件的限制孔衍射时,会产生斑点。移动散射体会导致斑点图案模糊;可以通过将模糊程度(称为斑点对比度)与散射速度反相关来构造模型。在组织中,红细胞是移动散射体的主要来源。因此,血流充当虚拟造影剂,勾勒出血管轮廓。 LSCI的空间分辨率$({sim 10}〜mu {rm m})$和时间分辨率(10 ms至10 s)可以根据应用进行调整。受光的穿透深度的限制,LSCI只能显示表面的血流。此外,由于其非扫描性质,LSCI无法提供深度解析图像。 LSCI的简单设置和不依赖于外源性造影剂的优势使LSCI成为研究血管结构和血流动力学的流行工具。我们讨论了LSCI的理论和实践,并严格分析了它在主要应用领域(如视网膜成像,皮肤灌注成像以及神经生理学成像)的优点。

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