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An Optical Approach for Non-invasive Blood Clot Testing

机译:非侵入性血凝凝块测试的光学方法

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Physiological blood coagulation is an essential biological process. Current tests for plasma coagulation (clotting) need to be performed ex vivo and require fresh blood sampling for every test. A recently published work describes a new, non-invasive, in vivo approach to assess blood coagulation status during mechanical occlusion1. For this purpose, we have tested this approach and applied a controlled laser beam to blood micro-vessels of the mouse ear during mechanical occlusion. Standard setup for intravital transillumination videomicroscopy and laser based imaging techniques were used for monitoring the blood clotting process. Temporal mechanical occlusion of blood vessels in the observed area was applied to ensure blood flow cessation. Subsequently, laser irradiation was used to induce vascular micro-injury. Changes in the vessel wall, as well as in the pattern of blood flow, predispose the area to vascular thrombosis, according to the paradigm of Virchow's triad. In our experiments, two elements of Virchow's triad were used to induce the process of clotting in vivo, and to assess it optically. We identified several parameters that can serve as markers of the blood clotting process in vivo. These include changes in light absorption in the area of illumination, as well as changes in the pattern of the red blood cells' micro-movement in the vessels where blood flow is completely arrested. Thus, our results indicate that blood coagulation status can be characterized by non-invasive, in vivo methodologies.
机译:生理血液凝固是一个必要的生物过程。需要进行血浆凝血(凝血)的目前的测试,需要进行exvivo,并需要每次测试的新鲜血液采样。最近公布的工作描述了一种新的非侵入性,体内侵入方法,以评估机械闭塞期间的血液凝固状态。为此目的,我们已经测试了这种方法并在机械闭塞期间将受控激光束施加到鼠标血液的微容器中。用于监测血液凝固过程的标准设置用于监测血液凝血过程。施用观察区域中血管的颞机械闭塞以确保血液流动停止。随后,使用激光辐射诱导血管微损伤。根据Virchow的三合会的范式,血流壁的变化以及血流模式,使该地区倾向于血管血栓形成。在我们的实验中,Virchow的三合会的两个元素用于诱导体内凝结的过程,并光学评估它。我们确定了几种可以用作体内血液凝血过程的标记。这些包括在照明区域中的光吸收的变化,以及血流完全被捕的血管中的红色血细胞微动画的模式的变化。因此,我们的结果表明血液凝固状态可以通过非侵入性,体内方法表征。

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