首页> 外文会议>Optical Fibers and Sensors for Medical Diagnostics and Treatment Applications VI; Progress in Biomedical Optics and Imaging; vol.7 no.6 >Fiber Optic Based Multiparametric Spectroscopy In Vivo: Toward a New Quantitative Tissue Vitality Index
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Fiber Optic Based Multiparametric Spectroscopy In Vivo: Toward a New Quantitative Tissue Vitality Index

机译:基于光纤的体内多参数光谱:建立新的定量组织活力指数

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In our previous publication (Mayevsky et al SPIE 5326: 98-105, 2004) we described a multiparametric fiber optic system enabling the evaluation of 4 physiological parameters as indicators of tissue vitality. Since the correlation between the various parameters may differ in various pathophysiological conditions there is a need for an objective quantitative index that will integrate the relative changes measured in real time by the multiparametric monitoring system into a single number-vitality index. Such an approach to calculate tissue vitality index is critical for the possibility to use such an instrument in clinical environments. In the current presentation we are reporting our preliminary results indicating that calculation of an objective tissue vitality index is feasible. We used an intuitive empirical approach based on the comparison between the calculated index by the computer and the subjective evaluation made by an expert in the field of physiological monitoring. We used the in vivo brain of rats as an animal model in our current studies. The rats were exposed to anoxia, ischemia and cortical spreading depression and the responses were recorded in real time. At the end of the monitoring session the results were analyzed and the tissue vitality index was calculated offline. Mitochondrial NADH, tissue blood flow and oxy-hemoglobin were used to calculate the vitality index of the brain in vivo, where each parameter received a different weight, in each experiment type based on their significance. It was found that the mitochondrial NADH response was the main factor affected the calculated vitality index.
机译:在我们先前的出版物(Mayevsky等,SPIE 5326:98-105,2004)中,我们描述了一种多参数光纤系统,该系统能够评估4个生理参数作为组织活力的指标。由于各种参数之间的相关性可能在各种病理生理条件下有所不同,因此需要一种客观的定量指标,该指标应将多参数监测系统实时测量的相对变化整合为单个数量活力指标。这种计算组织活力指数的方法对于在临床环境中使用这种仪器的可能性至关重要。在当前的介绍中,我们报告了初步结果,表明计算客观组织活力指数是可行的。基于计算机计算的指标与生理监测领域专家进行的主观评估之间的比较,我们使用了直观的经验方法。在当前的研究中,我们将大鼠的体内大脑用作动物模型。大鼠暴露于缺氧,局部缺血和皮质扩散性抑郁症,并实时记录反应。在监测阶段结束时,分析结果并离线计算组织活力指数。线粒体NADH,组织血流量和氧合血红蛋白被用于计算体内脑的活力指数,其中每种参数根据其重要性在每种实验类型中均具有不同的权重。发现线粒体NADH响应是影响计算的活力指数的主要因素。

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