首页> 外文会议>Conference on Photon Migration and Diffuse - Light Imaging; Jun 22-23, 2003; Munich, Germany >Intra- and extracerebral changes of hemoglobin concentrations by analysis of moments of distributions of times of flight of photons
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Intra- and extracerebral changes of hemoglobin concentrations by analysis of moments of distributions of times of flight of photons

机译:通过光子飞行时间的分布矩分析血红蛋白浓度在脑内和脑外

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摘要

NIRS signals measured on the adult head contain contributions from the brain and from overlying tissue. It was shown recently that measured distributions of times of flight (DTOF) of photons allow to deduce absorption changes occurring in different layers of the head. This method relies on time-dependent mean partial pathlengths calculated by Monte Carlo simulations for assumed background optical properties of the various tissues. Deconvolution of the measured DTOF is required using the instrumental response function. We propose an alternative method to estimate absorption changes in various tissue layers by analyzing changes of moments of DTOFs (integral, mean time of flight and variance) recorded at various source-detector separations. The sensitivity factors corresponding to integral, mean time of flight and variance were obtained by Monte Carlo simulations for a layered model of the head. From experimentally derived mean time of flight and variance the contributions of the instrumental response function were subtracted. The proposed method was applied to multi-distance time-domain measurements during functional stimulation of the brain of healthy volunteers.
机译:在成人头上测量的NIRS信号包含大脑和上覆组织的贡献。最近显示,测得的光子飞行时间(DTOF)分布可以推断出在头的不同层中发生的吸收变化。该方法依赖于由蒙特卡罗模拟计算得出的时间相关的平均部分光程,以假定各种组织的背景光学特性。使用仪器响应函数需要对测得的DTOF进行反卷积。我们提出了一种替代方法,通过分析在各种源探测器分离器处记录的DTOF时刻(积分,平均飞行时间和方差)的变化来估算各种组织层的吸收变化。通过Monte Carlo模拟获得了针对头的分层模型的积分,平均飞行时间和方差的敏感度因子。从实验得出的平均飞行时间和方差中减去了仪器响应函数的贡献。该方法被应用于健康志愿者的大脑功能性刺激过程中的多距离时域测量。

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