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中缝背核神经元:在自由活动的大鼠中与海马体的θ节律同步放电。

Dorsal raphe neurons: synchronous discharge with the theta rhythm of the hippocampus in the freely behaving rat.

作者信息

Kocsis B, Vertes R P

机构信息

Center for Complex Systems, Florida Atlantic University, Boca Raton 33431.

出版信息

J Neurophysiol. 1992 Oct;68(4):1463-7. doi: 10.1152/jn.1992.68.4.1463.

Abstract
  1. Single-unit activity of 30 dorsal raphe (DR) neurons was recorded along with the cortical and hippocampal electroencephalogram and neck muscle electromyogram in freely behaving rats during sleep-waking states. 2. On the basis of firing rates, DR cells were divided into slow-firing (S-cells), fast firing (F-cells), and very fast firing (FF-cells) units. The S-cells (8 units) fired at rates of < 10 Hz, the F-cells (11 units) at 10-40 Hz, and the FF-cells (11 units) at 55-70 Hz. 3. The activity of 17 of 30 DR units was correlated with the theta rhythm of the hippocampus. They included both slow and rapidly firing DR neurons. These cells typically fired irregularly (single spikes or short-duration bursts of activity) during non-theta states of quiet waking and slow-wave sleep. With the change of behavioral state to awake-moving or rapid eye movement sleep, the activity of these units switched to a regular bursting pattern synchronous with the hippocampal theta rhythm. Seven of these 17 units were classified as theta-rhythmic cells on the basis of the tight phase-locking of their discharge to the hippocampal theta rhythm. The remaining 10 units were classified as theta-modulated cells on the basis of a smaller but significant coherence between unit discharge and the theta rhythm.(ABSTRACT TRUNCATED AT 250 WORDS)
摘要
  1. 在自由活动的大鼠睡眠-觉醒状态下,记录了30个中缝背核(DR)神经元的单单位活动,同时记录了皮质和海马脑电图以及颈部肌肉肌电图。2. 根据放电频率,DR细胞被分为慢放电(S细胞)、快放电(F细胞)和极快放电(FF细胞)单位。S细胞(8个单位)放电频率<10Hz,F细胞(11个单位)放电频率为10-40Hz,FF细胞(11个单位)放电频率为55-70Hz。3. 30个DR单位中的17个单位的活动与海马的θ节律相关。它们包括慢放电和快放电的DR神经元。这些细胞在安静觉醒和慢波睡眠的非θ状态下通常不规则放电(单个尖峰或短时间的活动爆发)。随着行为状态转变为清醒活动或快速眼动睡眠,这些单位的活动转变为与海马θ节律同步的规则爆发模式。根据其放电与海马θ节律的紧密锁相,这17个单位中的7个被归类为θ节律细胞。其余10个单位根据单位放电与θ节律之间较小但显著的相关性被归类为θ调制细胞。(摘要截短于250字)

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