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首页> 外文期刊>Advances in Experimental Medicine and Biology >Evaluation of NIRS data based on theoretical analysis of oxygen transport to cerebral tissue.
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Evaluation of NIRS data based on theoretical analysis of oxygen transport to cerebral tissue.

机译:基于氧气向脑组织的运输的理论分析评估NIRS数据。

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NIRS has been widely utilized for monitoring oxygen concentration of cerebral blood flow (CBF). However, meanings of signals measured by NIRS still have many unclear points. One of the factors is that the physiological mechanism of coupling between neuronal activity, metabolism and CBF is not clarified enough. In this study, we evaluate NIRS data based upon numerical simulation of oxygen transport to cerebral tissue. With a 2-dimensional mathematical model of oxygen transport from an arteriole to its surrounding tissue, we simulate the activity-dependent oxygenation changes. On the basis of calculated oxygen tension distribution, we derive quantities of two kinds of hemoglobin in the arteriole by using the oxygen dissociation curve, and theoretically decompose each hemoglobin change into its factors. This decomposition has revealed that NIRS data can reflect two types of physiological phenomena: a qualitative change caused by oxygen dissociation and a quantitative change caused by an increase of CBF. These results indicate that cellular oxygen consumption can be reflected more in the time courses of deoxygenated hemoglobin than those of oxygenated hemoglobin. It will be desirable to focus not only on oxygenated hemoglobin but also on deoxygenated hemoglobin when conducting evaluation of a brain function.
机译:NIRS已被广泛用于监测脑血流(CBF)的氧气浓度。但是,NIRS测量的信号的含义仍有许多不清楚的地方。因素之一是神经元活动,代谢和脑血流之间耦合的生理机制还不够清楚。在这项研究中,我们基于对脑组织的氧气传输的数值模拟来评估NIRS数据。借助二维的氧气从小动脉向周围组织运输的数学模型,我们模拟了活性依赖的氧合变化。在计算出的氧气张力分布的基础上,我们使用氧气的解离曲线得出小动脉中两种血红蛋白的量,并在理论上将每种血红蛋白的变化分解为其因素。这种分解表明,NIRS数据可以反映两种类型的生理现象:由氧解离引起的质变和由CBF增加引起的定量变化。这些结果表明,与氧合血红蛋白相比,脱氧血红蛋白的时间过程中可以更多地反映细胞耗氧量。当进行脑功能评估时,不仅希望集中在氧化的血红蛋白上,而且集中在脱氧的血红蛋白上。

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