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首页> 外文期刊>NeuroImage >A prominent role for amygdaloid complexes in the Variability in Heart Rate (VHR) during Rapid Eye Movement (REM) sleep relative to wakefulness.
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A prominent role for amygdaloid complexes in the Variability in Heart Rate (VHR) during Rapid Eye Movement (REM) sleep relative to wakefulness.

机译:杏仁核复合物在快速眼动(REM)睡眠期间相对于觉醒的心率变异性(VHR)中具有重要作用。

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Rapid eye movement sleep (REMS) is associated with intense neuronal activity, rapid eye movements, muscular atonia and dreaming. Another important feature in REMS is the instability in autonomic, especially in cardiovascular regulation. The neural mechanisms underpinning the variability in heart rate (VHR) during REMS are not known in detail, especially in humans. During wakefulness, the right insula has frequently been reported as involved in cardiovascular regulation but this might not be the case during REMS. We aimed at characterizing the neural correlates of VHR during REMS as compared to wakefulness and to slow wave sleep (SWS), the other main component of human sleep, in normal young adults, based on the statistical analysis of a set of H(2)(15)O positron emission tomography (PET) sleep data acquired during SWS, REMS and wakefulness. The results showed that VHR correlated more tightly during REMS than during wakefulness with the rCBF in the right amygdaloid complex. Moreover, we assessed whetherfunctional relationships between amygdala and any brain area changed depending the state of vigilance. Only the activity within in the insula was found to covary with the amygdala, significantly more tightly during wakefulness than during REMS in relation to the VHR. The functional connectivity between the amygdala and the insular cortex, two brain areas involved in cardiovascular regulation, differs significantly in REMS as compared to wakefulness. This suggests a functional reorganization of central cardiovascular regulation during REMS.
机译:快速眼动睡眠(REMS)与强烈的神经元活动,快速眼动,肌肉无力和做梦有关。 REMS的另一个重要特征是自主神经系统的不稳定,尤其是在心血管调节方面。 REMS期间支持心率(VHR)变异性的神经机制尚不清楚,尤其是在人类中。在清醒期间,经常报告右岛绝缘参与心血管调节,但是在REMS期间可能并非如此。我们基于一组H(2)的统计分析,旨在表征与正常人相比清醒和慢波睡眠(SWS)(人类睡眠的另一主要组成部分)相比,REMS期间VHR的神经相关性。在SWS,REMS和清醒期间获得的(15)O正电子发射断层扫描(PET)睡眠数据。结果表明,右杏仁核复合物中,VHR与清醒期间与rCBF的关联更紧密。此外,我们评估了杏仁核与任何大脑区域之间的功能关系是否根据警戒状态而改变。与VHR相比,仅发现岛内的活动与杏仁核共舞,在觉醒期间比在REMS期间紧紧得多。与觉醒相比,杏仁核和岛状皮层(参与心血管调节的两个大脑区域)之间的功能连通性在REMS中​​有显着差异。这表明在REMS期间中央心血管调节的功能重组。

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