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激光多普勒血流仪中采样深度和光子路径长度的预测。

Prediction of sampling depth and photon pathlength in laser Doppler flowmetry.

作者信息

Jakobsson A, Nilsson G E

机构信息

Department of Biomedical Engineering, Linköping University, Sweden.

出版信息

Med Biol Eng Comput. 1993 May;31(3):301-7. doi: 10.1007/BF02458050.

Abstract

Monte Carlo simulation of photon migration in tissue was used to assess the sampling depth, measuring depth and photon pathlength in laser Doppler flowmetry. The median sampling depth and photon pathlength in skin, liver and brain tissue were calculated for different probe geometries. The shallowest median sampling depth found was 68 microns for a 120 microns diameter single fibre probe applied to a one-layered skin tissue model. By using separate transmitting and receiving fibres, the median sampling depth, which amounted to 146 microns for a 250 microns fibre centre separation, can be successively increased to 233 microns when the fibres' centres are separated by 700 microns. Total photon pathlength and thereby the number of multiple Doppler shifts increase with fibre separation, thus favouring the choice of a probe with a small fibre separation when linearity is more important than a large sampling depth. Owing mainly to differences in the tissue g-value and scattering coefficient, the median sampling depth is shallower for liver and deeper for brain, in comparison with skin tissue. For skin tissue, the influence on the sampling depth of a homogeneously distributed blood volume was found to be limited to about 1 per cent per percentage increase in tissue blood content, and may, therefore, be disregarded in most practical situations. Simulations show that the median measuring depth is strongly dependent on the perfusion profile.

摘要

采用蒙特卡罗模拟法对光子在组织中的迁移进行研究,以评估激光多普勒血流仪中的采样深度、测量深度和光子路径长度。针对不同的探头几何形状,计算了皮肤、肝脏和脑组织中的中位采样深度和光子路径长度。对于应用于单层皮肤组织模型的直径为120微米的单纤维探头,发现的最浅中位采样深度为68微米。通过使用单独的发射和接收光纤,当光纤中心间距为250微米时,中位采样深度为146微米;当光纤中心间距为700微米时,中位采样深度可相继增加到233微米。总光子路径长度以及由此产生的多次多普勒频移数量随光纤间距增加,因此,当线性比大采样深度更重要时,倾向于选择光纤间距小的探头。主要由于组织g值和散射系数的差异,与皮肤组织相比,肝脏的中位采样深度较浅,而脑的中位采样深度较深。对于皮肤组织,发现均匀分布的血容量对采样深度的影响在组织血含量每增加一个百分点时约为1%,因此在大多数实际情况下可忽略不计。模拟结果表明,中位测量深度强烈依赖于灌注分布。

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