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Spontaneous activity of single neurones in the hypothalamus of rabbits during sleep and waking

机译:睡眠和醒来时兔下丘脑单个神经元的自发活动

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摘要

1. A method is described for recording from single cells in the hypothalamus of unanaesthetized freely moving rabbits. Behaviour, bodily movement, skin and brain temperatures and e.e.g. were monitored.2. Patterns of unit firing during slow sleep, paradoxical sleep and waking were studied in several regions of the hypothalamus, thalamus and in the septum.3. Of the 144 cells analysed from waking to slow sleep, fifty-six (39%) decreased mean firing rates, thirty (21%) increased spike discharges and fifty-eight (40%) showed no marked change. Dorsal hypothalamic and massa intermedia thalamic cells fired in brief high frequency clusters during slow sleep with a characteristic `bimodal' interspike interval histogram. Waking and paradoxical sleep abolished these cluster discharges with a concomitant change to an `asymmetric' histogram.4. Of the thirty-two cells observed during the three states of waking, slow sleep and paradoxical sleep, a majority (twenty-five or 78%) showed their highest rates of spontaneous discharge during paradoxical sleep. Discharge rates of cells sometimes changed in the course of paradoxical sleep according to the presence or absence of phasic events such as myoclonic motor activity. Two hypothalmic cells were almost totally arrested during paradoxical sleep.5. Analysis of unit firing rates during spontaneous rises in brain temperature during waking and paradoxical sleep revealed that a majority of the neurones (22/24) changed their discharge rates in relation to behaviour rather than to brain temperature. Two cells did appear to respond specifically to the central thermal stimulus.6. Hypothalamic cells do not behave as a homogeneous population in relation to changes in the state of arousal of the rabbit. Spontaneous changes in cell discharge related to sleep-waking behaviour must be considered in any interpretation of hypothalamic unit activity as related to neuroendocrine or autonomic mechanisms.
机译:1.描述了一种从未麻醉的自由移动的兔的下丘脑中的单个细胞记录的方法。行为,身体运动,皮肤和大脑温度以及例如被监测2。在下丘脑,丘脑和中隔的几个区域研究了慢速睡眠,自相矛盾的睡眠和清醒时单位射击的模式。3。从唤醒到缓慢入睡的144个细胞中,平均发射率降低了56个(39%),尖峰放电增加了30个(21%),而58个(40%)没有明显变化。缓慢的睡眠过程中,短暂的高频簇发射了丘脑背丘脑和马萨中丘脑细胞,并具有特征性的“双峰”峰间间隔直方图。清醒和自相矛盾的睡眠消除了这些簇状放电,并伴随着“不对称”直方图的改变。4。在三个状态的清醒,慢速睡眠和自相矛盾的睡眠中观察到的32个细胞中,大多数(二十五或78%)在自相矛盾的睡眠中表现出最高的自发放电率。有时在悖论性睡眠过程中,细胞放电速率会根据是否存在诸如肌阵挛性运动活动等阶段性事件而改变。在悖论性睡眠期间,两个下丘脑细胞几乎全部被捕。5。在清醒和自相矛盾的睡眠过程中,大脑温度自发升高时的单位放电速率的分析表明,大多数神经元(22/24)的放电速率与行为有关,而不是与大脑温度有关。确实有两个细胞对中央热刺激做出了特定反应。6。下丘脑细胞相对于兔子唤醒状态的变化不表现为同质种群。在与神经内分泌或自主神经机制相关的下丘脑单位活动的任何解释中,都必须考虑与清醒行为有关的细胞放电的自发变化。

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