首页> 外文会议>Annual Conference of Japanese Society for Medical and Biological Engineering;Annual International Conference of the IEEE Engineering in Medicine and Biology Society >An algorithm for assessment of inflow and washout of optical contrast agent to the brain by analysis of time-resolved diffuse reflectance and fluorescence signals
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An algorithm for assessment of inflow and washout of optical contrast agent to the brain by analysis of time-resolved diffuse reflectance and fluorescence signals

机译:一种通过分析时间分辨的漫反射率和荧光信号来评估光学对比剂流入和流出大脑的算法

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摘要

In optical measurements of the brain oxygenation and perfusion the problem of contamination of the signals with the components related to the extracerebral tissues remains an obstacle limiting clinical applicability of the technique. In this paper we present an algorithm allowing for derivation of signals related to the changes in absorption in the intracerebral tissues based on analysis of time-resolved diffuse reflectance and fluorescence. The proposed method was validated in series of Monte Carlo simulations in which inflow and washout of an optical contrast agent into the two-layered human head model was considered. It was shown that the decomposed intracerebral component of the signal can be derived with uncertainty of about 5%. This result suggests that the method proposed can be applied in improved estimation of brain perfusion parameters based on the bolus-tracking technique.
机译:在脑氧合和灌注的光学测量中,信号被与脑外组织相关的成分污染的问题仍然是限制该技术的临床适用性的障碍。在本文中,我们基于时间分辨的漫反射和荧光分析,提出了一种算法,该算法可以推导与脑组织吸收变化有关的信号。该方法在一系列蒙特卡洛模拟中得到了验证,其中考虑了光学对比剂流入和冲洗到两层人体头部模型中的情况。结果表明,信号的分解后脑内成分的不确定度约为5%。该结果表明,所提出的方法可用于基于推注跟踪技术的脑灌注参数的改进估计。

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