首页> 外文会议>Conference on Optical Techniques in Neurosurgery, Neurophotonics, and Optogenetics >In vivo estimation of light scattering and absorption properties of rat brain using single reflectance fiber probe during anoxic depolarization
【24h】

In vivo estimation of light scattering and absorption properties of rat brain using single reflectance fiber probe during anoxic depolarization

机译:单一反射纤维探针在缺氧去极化中使用单反射纤维探针的光散射和吸收性能

获取原文

摘要

Diffuse reflectance spectroscopy using fiber optic probe is one of most promising technique for evaluating optical properties of biological tissue. We present a method determining the reduced scattering coefficients μ_s', the absorption coefficients μ_a, and tissue oxygen saturation StO_2 of in vivo brain tissue using single reflectance fiber probe with two source-collector geometries. In the present study, we performed in vivo recordings of diffuse reflectance spectra and the electrophysiological signals for exposed brain of rats during normoxia, hyperoxia, hypoxia, and anoxia. The time courses of μ_a in the range from 500 to 584 nm and StO_2 indicated the hemodynamic change in cerebral cortex. Time courses of μ_s' are well correlated with those of μ_a in the range from 530 to 570 nm, which also reflect the scattering by red blood cells. On the other hand, a fast decrease in μ_s' at 800 nm were observed after the respiratory arrest and it synchronized with the negative deflection of the extracellular DC potential. It is said that the DC shift coincident with a rise in extracellular potassium and can evoke cell deformation generated by water movement between intracellular and extracellular compartments, and hence the light scattering by tissue. Therefore, the decrease in μ_s' at 800 after the respiratory arrest is indicative of changes in light scattering by tissue. The results in this study indicate potential of the method to evaluate the pathophysiological and loss of tissue viability in brain tissue.
机译:使用光纤探针的漫反射光谱是用于评估生物组织的光学性质的最有希望的技术之一。我们介绍一种使用具有两个源集电极几何形状的单反反射纤维探针确定体内脑组织的减少散射系数μ_s,吸收系数μ_a和组织氧饱和sto_2。在本研究中,我们在衍射反射光谱的体内记录和常氧,高氧,缺氧和贫血期间暴露大鼠的电生理信号。 μ_a的时间课程在500至584nm和sto_2的范围内表明了脑皮层的血流动力学变化。 μ_s'的时间课程与μ_a的时间源于530至570nm的μ_a,这也反映了红细胞的散射。另一方面,在呼吸停止后观察到800nm处的μ_s的快速减小,并且与细胞外直流电位的负偏转同步。据说据说直流转变与细胞外钾的升高一致,并且可以引起细胞内和细胞内隔室之间的水运动产生的细胞变形,从而通过组织散射光散射。因此,在呼吸停止后800的μ_'在呼吸后的降低指示由组织的光散射的变化。该研究中的结果表明该方法的潜力来评估脑组织中的组织活力的病理生理和丧失。

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