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Saturation thresholds of evoked neural and hemodynamic responses in awake and asleep rats

机译:清醒和睡眠状态下诱发的神经和血液动力学反应的饱和阈值

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Neural activation generates a hemodynamic response to the localized region replenishing nutrients to the area. Changes in vigilance state have been shown to alter the vascular response where the vascular response is muted during wake compared to quiet sleep. We tested the saturation thresholds of the neurovascular response in the auditory cortex during wake and sleep by chronically implanting rats with an EEG electrode, a light emitting diode (LED, 600 nm), and photodiode to simultaneously measure evoked response potentials (ERPs) and evoked hemodynamic responses. We stimulated the cortex with a single speaker click delivered at random intervals 2-13 s at varied stimulus intensities ranging from 45-80 dB. To further test the potential for activity related saturation, we sleep deprived animals for 2, 4, or 6 hours and recorded evoked responses during the first hour recovery period. With increasing stimulus intensity, integrated ERPs and evoked hemodynamic responses increased; however the hemodynamic response approached saturation limits at a lower stimulus intensity than the ERP. With longer periods of sleep deprivation, the integrated ERPs did not change but evoked hemodynamic responses decreased. There may be physical limits in cortical blood delivery and vascular compliance, and with extended periods of neural activity during wake, vessels may approach these limits.
机译:神经激活对局部区域产生血液动力学反应,向该区域补充营养。与安静的睡眠相比,警觉状态的改变已显示出可以改变血管反应,其中在唤醒过程中血管反应被静音。我们通过向大鼠长期植入EEG电极,发光二极管(LED,600 nm)和光电二极管以同时测量诱发反应电位(ERP)和诱发电位来测试唤醒和睡眠期间听觉皮层神经血管反应的饱和阈值血液动力学反应。我们通过以随机间隔2-13 s在45-80 dB范围内变化的刺激强度发出单个扬声器来刺激皮层。为了进一步测试与活动相关的饱和度的潜力,我们将被剥夺的动物睡眠2、4或6个小时,并在第一个小时的恢复期内记录诱发的反应。随着刺激强度的增加,整合的ERP和诱发的血液动力学反应增加。然而,其血流动力学反应以比ERP更低的刺激强度达到饱和极限。随着睡眠剥夺时间的延长,集成的ERP不变,但引起的血液动力学反应降低。皮质血液的输送和血管顺应性可能存在身体上的限制,并且醒来期间神经活动时间延长,血管可能会接近这些限制。

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