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Spatially resolved diffuse optical correlation spectroscopy (SR-DOCS) for quantitative assessment of skin tissue perfusion matrix

机译:空间分辨漫射光学相关光谱法(SR-DOCS)用于定量评估皮肤组织灌注基质

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Assessment of skin tissue perfusion is vital for understanding the normal and the pathologic physiology of human body. Diffuse optical methods provide numerous pathways for assessing various static and dynamic perfusion markers such as variations in bulk tissue optical properties, depth dimensions of microvascular bed. rate and volume of blood flow and so on. There have been numerous studies on these aspects ending up with qualitative assessments on various parameters, where separate approaches are explored for individual parametric evaluation. With the introduction of precise optical tissue phantom models, integration of different static and dynamic perfusion markers are possible to facilitate quantitative assessment of such a perfusion matrix. In this work, we present the fabrication of a perfused tissue physical model that mimic skin tissue and subsequent estimation of perfusion matrix including optical properties, flow, and depth of the microvascular bed. Different layers of skin are spin coated onto micron-sized embedded channels, and the model was subjected to optical measurements, inducing different flow levels using a syringe pump. The parameters have been estimated using spatially resolved diffuse correlation optical spectral measurements, using a handheld fiber optic probe with a precise source to target distance sensing mechanism and associated signal processing algorithms. This work is aimed to provide a methodology for quantitative assessment of various perfusion parameters using a versatile physical model that provides flexibility in varying involved parameters accurately. The work performed here, after standardization is expected to have potential in developing non-invasive quantitative optical skin biopsy tools to augment the current histopathological studies.
机译:对皮肤组织灌注的评估对于了解人体的正常和病理生理至关重要。漫反射光学方法提供许多途径,用于评估各种静态和动态灌注标志物,例如散装组织光学性质的变化,微血管床的深度尺寸。血流的速率和体积等。关于这些方面有许多研究,这些方面以各种参数的定性评估为止,探索了单独参数评估的单独方法。随着精确的光学组织模型的引入,不同静态和动态灌注标记的整合是可以促进这种灌注基质的定量评估。在这项工作中,我们介绍了灌注组织物理模型的制造,其模拟皮肤组织和随后的灌注基质的估计,包括微血管床的光学性质,流动和深度。将不同的皮肤层旋转涂覆在微米尺寸的嵌入式通道上,并且模型经受光学测量,使用注射泵诱导不同的流量水平。使用具有精确源的手持光纤探针来估计参数,该方法使用具有精确源与目标距离感测机构和相关信号处理算法的手持光纤探头。该工作旨在提供一种使用多功能物理模型来提供各种灌注参数的定量评估方法,该方法可以准确地提供各种涉及参数的灵活性。在这里进行的工作,预期在标准化之后具有发育非侵入性定量光学皮肤活组织检查工具的潜力,以增加目前的组织病理学研究。

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