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与睡眠阶段相关的人类小腿皮下血流的夜间变化。

Nocturnal variations in human lower leg subcutaneous blood flow related to sleep stages.

作者信息

Sindrup J H, Kastrup J, Madsen P L, Christensen H, Jørgensen B, Wildschiødtz G

机构信息

Department of Clinical Physiology/Nuclear Medicine, Bispebjerg Hospital, Copenhagen, Denmark.

出版信息

J Appl Physiol (1985). 1992 Oct;73(4):1246-52. doi: 10.1152/jappl.1992.73.4.1246.

Abstract

Nocturnal subcutaneous adipose tissue blood flow rate was measured in the lower legs of 10 normal human subjects together with systemic arterial blood pressure, heart rate, and registration of sleep stages under ambulatory conditions. The 133Xe washout technique, portable CdTe(Cl) detectors, and a portable data storage unit were used for measurement of blood flow rates. The sleep recordings were performed with a portable computerized sleep analysis system. In accordance with the results of previous studies, a hyperemic blood flow rate phase (mean increase 140%) for 100 min was observed approximately 60 min after the subjects went to bed. The moment of onset of the hyperemic phase was closely related to the moment of onset of the first episode of deep sleep (stages 3 and 4). There was a significant (P < 0.01) overrepresentation of deep sleep in the hyperemic phase compared with adjacent phases, and rapid-eye-movement sleep predominantly occurred in the latter part of the night, when the subcutaneous blood flow rate was stable. The results of the present study are in accordance with current theories of the interrelationship between the thermoregulatory and the arousal state control systems and, thus, might suggest that the nightly subcutaneous hyperemia represents a thermoregulatory effector mechanism.

摘要

在动态条件下,对10名正常受试者的小腿进行夜间皮下脂肪组织血流速率测量,并同时测量其体循环动脉血压、心率以及记录睡眠阶段。采用133Xe洗脱技术、便携式碲化镉(氯)探测器和便携式数据存储单元来测量血流速率。睡眠记录通过便携式计算机化睡眠分析系统进行。根据先前研究的结果,受试者上床睡觉约60分钟后,观察到一个持续100分钟的充血血流速率阶段(平均增加140%)。充血阶段的开始时刻与首次进入深度睡眠(3期和4期)的时刻密切相关。与相邻阶段相比,充血阶段深度睡眠的比例显著过高(P < 0.01),快速眼动睡眠主要发生在夜间后期,此时皮下血流速率稳定。本研究结果与当前关于体温调节和唤醒状态控制系统之间相互关系的理论一致,因此可能表明夜间皮下充血代表一种体温调节效应机制。

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