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The CritiView: a new fiber optic based optical device for the assessment of tissue vitality

机译:批准:一种新的基于光纤的光学装置,用于评估组织活力

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The most important parameter that reflects the balance between oxygen supply and demand in tissues is the mitochondrial NADH redox state that could be monitored In vivo. Nevertheless single parameter monitoring is limited in the interpretation capacity of the very complicated pathophysiological events, therefore three more parameters were added to the NADH and the multiparametric monitoring system was used in experimental and clinical studies. In our previous paper1 we described the CritiView (CRV1) including a fiber optic probe that monitor four physiological parameters in real time. In the new model (CRV3) several factors such as UV safety, size and price of the device were improved significantly. The CRV3 enable to monitor the various parameters in three different locations in the tissue thus increasing the reliability of the data due to the better statistics. The connection between the device and the monitored tissue could be done by various types of probes. The main probe that was tested also in clinical studies was a special 3 points probe that includes 9 optical fibers (3 in each point) that was embedded in a three way Foley catheter. This catheter enabled the monitoring of urethral wall vitality as an indicator of the development of body metabolic emergency state. The three point probe was tested in the brain exposed to the lack of oxygen (Anoxia, Hypoxia or Ischemia). A decrease in blood oxygenation and a large increase in mitochondrial NADH fluorescence were recorded. The microcirculatory blood flow increased during anoxia and hypoxia and decreased significantly under ischemia.
机译:最重要的参数反映氧气供应和组织需求之间的平衡是可以在体内监测的线粒体NADH氧化还原状态。然而,单个参数监测在非常复杂的病理生理事件的解释能力中受到限制,因此将三种参数添加到NADH中,并且在实验和临床研究中使用多射床监测系统。在我们之前的paper1中,我们描述了包括光纤探针的划分(CRV1),该探测器实时监测四个生理参数。在新型号(CRV3)中的几个因素,如UV安全,装置的大小和价格得到了显着提高。 CRV3使能在组织中的三个不同位置的各种参数进行监视,从而提高了由于统计数据更好的数据的可靠性。设备和被监测组织之间的连接可以通过各种类型的探针来完成。在临床研究中也测试的主要探针是一种特殊的3点探针,其包括嵌入三种粪便导管中的9个光纤(每个点3个)。该导管使尿道壁垒活力的监测能够作为身体代谢应急状态发展的指标。在暴露于缺氧(缺氧,缺氧或缺血)的大脑中测试了三点探针。记录血氧氧化的降低和大量增加线粒体NADH荧光。微循环血液流动在缺氧和缺氧期间增加,并且在缺血下显着降低。

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