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High frequency oscillations in brain hemodynamic response

机译:脑血液动力学反应中的高频振荡

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Tight autoregulation of vessel tone guarantees proper delivery of nutrients to the tissues. This regulation is maintained at a more delicate level in the brain since any decrease in the supply of glucose and oxygen to neuronal tissues might lead to unrecoverable injury. Functional near infrared spectroscopy has been proposed as a new tool to monitor the cerebrovascular response during cognitive activity. We have observed that during a Stroop task three distinct oscillatory patterns govern the control of the cerebrovascular reactivity: very low frequency (0.02-0.05 Hz), low frequency (0.08-0.12 Hz) and high frequency (0.12-0.18 Hz). High frequency oscillations have been shown to be related to stress level of the subjects. Our findings indicate that as the stress level is increased so does the energy of the high frequency component indicating a higher stimulation from the autonomic nervous system.
机译:血管音调的紧身自动调节保证适当地向组织提供营养素。该调节在大脑中的更细腻水平维持,因为葡萄糖和氧气供应到神经元组织的任何降低可能导致不可恢复的损伤。已经提出了近红外光谱的功能,作为一种新工具,用于监测认知活动期间的脑血管反应。我们观察到,在速率任务期间,三种不同的振荡模式控制脑血管反应性的控制:非常低频(0.02-0.05 Hz),低频(0.08-0.12 Hz)和高频(0.12-0.18 Hz)。已经显示高频振荡与受试者的应力水平有关。我们的研究结果表明,随着应力水平的增加,高频分量的能量表明从自主神经系统的刺激较高。

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