首页> 外文会议>Conference on photon migration, diffuse spectroscopy, and optical coherence tomography : Imaging and functional assessment >Investigation of the effect of discrete scatterers in CSF layer on optical path length in the brain
【24h】

Investigation of the effect of discrete scatterers in CSF layer on optical path length in the brain

机译:CSF层中离散散射体对大脑光路长度效果的研究

获取原文

摘要

Adequate modelling of light propagation in the complex and heterogeneous tissue of the human head is very important for quantitative near infrared spectroscopy and optical imaging. The presence of a clear and non-scattering CSF layer around the brain has been previously shown to strongly affect light propagation in the head. However the CSF layer is not totally filled with a non-scattering fluid and quite a few fine arachnoid trabeculae are actually present in the layer. In this study light propagation in an adult head model with discrete scatterers distributed within the CSF layer has been predicted by Monte Carlo simulation in order to investigate the effect of scattering caused by the arachnoid trabeculae in the CSF layer. Results show that the presence of the arachnoid trabeculae affect the total optical path length, a parameter which can be directly measured by time-resolved measurement. However, the partial optical path length in the brain tissue, which relates the sensitivity of the near infrared spectroscopy signal to absorption changes in the brain is strongly affected by the CSF layer ever in the presence of the arachnoid trabeculae. The increased partial optical path length results from an increased lateral spreading of the NIR light within the grey matter of the cortex.
机译:在人头部的复合物和异质组织中的浅色繁殖的足够建模对于定量近红外光谱和光学成像非常重要。先前已经示出了围绕大脑的透明和非散射CSF层的存在,以强烈影响头部的光传播。然而,CSF层并不完全填充有非散射液,并且相当一些细小的蛛网膜树脂实际存在于层中。在该研究中,通过Monte Carlo模拟预测了具有分布在CSF层内的离散散射体的成年头模型中的光传播,以研究由CSF层中的蛛网膜内部的散射引起的散射效果。结果表明,蛛网膜内部的存在影响总光路长度,可以通过时间分辨测量直接测量的参数。然而,脑组织中的部分光学路径长度,涉及近红外光谱信号对脑中的吸收变化的敏感性在蛛网膜内部的存在下受CSF层的强烈影响。增加的部分光学路径长度是由皮质灰质内的脉冲内的横向扩展增加。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号