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In vivo imaging of cerebral hemodynamics and tissue scattering in rat brain using a surgical microscope camera system

机译:使用外科显微镜相机系统对大鼠脑内血流动力学和组织散射的体内成像

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We investigated a rapid imaging method to monitor the spatial distribution of total hemoglobin concentration (C_(HbT)), the tissue oxygen saturation (StO_2), and the scattering power b in the expression of musp=a(lambda)^-b as the scattering parameters in cerebral cortex using a digital red-green-blue camera. In the method, Monte Carlo simulation (MCS) for light transport in brain tissue is used to specify a relation among the RGB-values and the concentration of oxygenated hemoglobin (C_(HbO)), that of deoxygenated hemoglobin (C_(HbR)), and the scattering power b. In the present study, we performed sequential recordings of RGB images of in vivo exposed brain of rats while changing the fraction of inspired oxygen (FiO_2), using a surgical microscope camera system. The time courses C_(HbO), C_(HbR), C_(HbT), and StO_2 indicated the well-known physiological responses in cerebral cortex. On the other hand, a fast decrease in the scattering power b was observed immediately after the respiratory arrest, which is similar to the negative deflection of the extracellular DC potential so-called anoxic depolarization. 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 the scattering power b 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 conditions and loss of tissue viability in brain tissue.
机译:我们研究了一种快速成像方法来监测总血红蛋白浓度(C_(HbT)),组织氧饱和度(StO_2)和散射功率b在musp = a(lambda)^-b的表达中的空间分布,数字红绿蓝相机在大脑皮层中散射参数。在该方法中,使用用于脑组织中光传输的蒙特卡罗模拟(MCS)来指定RGB值与氧合血红蛋白(C_(HbO)),脱氧血红蛋白(C_(HbR))的浓度之间的关系。 ,以及散射能力b。在本研究中,我们使用手术显微镜摄像系统对大鼠体内暴露的大脑进行了RGB图像的连续记录,同时改变了吸入氧气(FiO_2)的比例。 C_(HbO),C_(HbR),C_(HbT)和StO_2的时间过程表明大脑皮层中众所周知的生理反应。另一方面,在呼吸停止后立即观察到散射能力b的快速降低,这类似于细胞外DC电势的负偏转,即所谓的缺氧去极化。据说DC移位与细胞外钾的增加同时发生,并且可以引起由细胞内和细胞外区室之间的水运动产生的细胞变形,并因此引起组织的光散射。因此,呼吸停止后散射能力b的降低表明组织的光散射发生了变化。这项研究的结果表明该方法具有评估病理生理条件和脑组织组织活力丧失的潜力。

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