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FULL-FIELD, nonscanning, optical imaging for perfusion indication

机译:全场,非扫描,光学成像用于灌注指示

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摘要

Laser speckle imaging (LSI) has been gaining popularity for the past few years. Like other optical imaging modalities such as optical coherence tomography (OCT), orthogonal polarization spectroscopy (OPS), and laser Doppler imaging (LDI), LSI utilizes nonionizing radiation. In LSI, blood flow velocity is obtained by analyzing, temporally or spatially, laser speckle (LS) patterns generated when an expanded laser beam illuminates the tissue. The advantages of LSI are that it is fast, does not require scanning, and provides full-field LS images to extract realtime, quantitative hemodynamic information of subtle changes in the tissue vasculature. For medical applications, LSI has been used for obtaining blood velocities in human retina, skin flaps, wounds, and cerebral and sublingual areas. When coupled with optical fibers, LSI can be used for endoscopic measurements for a variety of applications. This paper describes the application of LSI in retinal, sublingual, and skin flap measurements. Evaluation of retinal hemodynamics provides very important diagnostic information, since the human retina offers direct optical access to both the central nervous system (CNS) and afferent and efferent CNS vasculature. The performance of an LSI-based fundus imager for measuring retinal hemodynamics is presented. Sublingual microcirculation may have utility for sepsis indication, since inherent in organ injury caused by sepsis is a profound change in microvascular hemodynamics. Sublingual measurement results using an LSI scope are reported. A wound imager for imaging LS patterns of wounds and skin flaps is described, and results are presented.
机译:过去几年来,激光散斑成像(LSI)越来越流行。像光学相干断层扫描(OCT),正交偏振光谱(OPS)和激光多普勒成像(LDI)等其他光学成像模式一样,LSI利用非电离辐射。在LSI中,通过在时间或空间上分析当扩展的激光束照射组织时产生的激光斑点(LS)图案来获得血流速度。 LSI的优点是速度快,不需要扫描并提供全视野LS图像以提取组织脉管系统细微变化的实时定量血液动力学信息。对于医疗应用,LSI已用于获取人体视网膜,皮瓣,伤口以及脑和舌下区域的血流速度。当与光纤耦合时,LSI可用于各种应用的内窥镜测量。本文介绍了LSI在视网膜,舌下和皮瓣测量中的应用。视网膜血流动力学的评估提供了非常重要的诊断信息,因为人类视网膜可以直接光学访问中枢神经系统(CNS)以及传入和传出的CNS脉管系统。介绍了基于LSI的眼底成像仪测量视网膜血流动力学的性能。舌下微循环可能对脓毒症有用,因为败血症引起的器官损伤所固有的是微血管血流动力学的深刻变化。报告使用LSI示波器的舌下测量结果。描述了一种用于成像伤口和皮瓣的LS模式的伤口成像仪,并给出了结果。

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