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Effect of task-related extracerebral circulation on diffuse optical tomography: experimental data and simulations on the forehead

机译:任务相关的脑外循环对弥散性光学层析成像的影响:前额的实验数据和模拟

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摘要

The effect of task-related extracerebral circulatory changes on diffuse optical tomography (DOT) of brain activation was evaluated using experimental data from 14 healthy human subjects and computer simulations. Total hemoglobin responses to weekday-recitation, verbal-fluency, and hand-motor tasks were measured with a high-density optode grid placed on the forehead. The tasks caused varying levels of mental and physical stress, eliciting extracerebral circulatory changes that the reconstruction algorithm was unable to fully distinguish from cerebral hemodynamic changes, resulting in artifacts in the brain activation images. Crosstalk between intra- and extracranial layers was confirmed by the simulations. The extracerebral effects were attenuated by superficial signal regression and depended to some extent on the heart rate, thus allowing identification of hemodynamic changes related to brain activation during the verbal-fluency task. During the hand-motor task, the extracerebral component was stronger, making the separation less clear. DOT provides a tool for distinguishing extracerebral components from signals of cerebral origin. Especially in the case of strong task-related extracerebral circulatory changes, however, sophisticated reconstruction methods are needed to eliminate crosstalk artifacts.
机译:使用来自14位健康人类受试者的实验数据和计算机模拟,评估了与任务相关的脑外循环变化对大脑激活的弥散性光学层析成像(DOT)的影响。用放置在前额上的高密度光电二极管网格,测量对工作日复习,口语流利度和手动运动任务的总血红蛋白反应。这些任务引起了不同程度的精神和身体压力,引发了大脑外循环变化,重建算法无法完全区分大脑血液动力学变化,从而导致大脑激活图像中出现伪影。模拟证实了颅内和颅外层之间的串扰。大脑外的影响由于表面信号的减弱而减弱,并在一定程度上取决于心率,因此可以确定在口语流利度任务期间与大脑激活有关的血液动力学变化。在手动运动任务期间,脑外成分更强,使得分离不清晰。 DOT提供了一种区分脑外成分与脑源信号的工具。然而,特别是在与任务相关的强烈脑外循环变化的情况下,需要复杂的重建方法来消除串扰伪像。

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