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在药用水蛭中,莱迪希神经元活动调节心跳。

Leydig neuron activity modulates heartbeat in the medicinal leech.

作者信息

Arbas E A, Calabrese R L

机构信息

Arizona Research Laboratories, Division of Neurobiology, University of Arizona, Tucson 85721.

出版信息

J Comp Physiol A. 1990 Nov;167(5):665-71. doi: 10.1007/BF00192660.

Abstract
  1. Leydig neurons fire spontaneously at low rates (less than 4 Hz), but their activity increases with mechanical stimulation or electrical stimulation of mechanosensory neurons. These conditions also cause acceleration of bursting in heart motor neurons. 2. The firing rate of Leydig cells was found to regulate heart rate in chains of isolated ganglia. When Leydig neurons were made to fire action potentials at relatively high frequencies (ca. 5-10 Hz), however, heart motor neurons ceased bursting and were either silenced or fired erratically. 3. Firing of Leydig neurons at high rates caused bilateral heart interneurons of ganglia 3 or 4 to fire tonically rather than in their normal alternating bursts Tonic firing of these heart interneurons accounts for the prolonged barrages of ipsps recorded in heart motor neurons and the disruption of their normal cyclic activity. 4. Preventing spontaneous activity of Leydig neurons with injected currents in isolated ganglia caused deceleration of the heartbeat rhythm but did not halt oscillation. 5. Electrical stimulation of peripheral nerve roots with Leydig neuron activity suppressed in isolated ganglia caused acceleration of heart rate.
摘要
  1. 莱迪希神经元以低频率(低于4赫兹)自发放电,但其活动会随着机械刺激或机械感觉神经元的电刺激而增强。这些情况还会导致心脏运动神经元爆发性放电加速。2. 研究发现,在分离的神经节链中,莱迪希细胞的放电频率可调节心率。然而,当莱迪希神经元以相对较高的频率(约5 - 10赫兹)产生动作电位时,心脏运动神经元停止爆发性放电,要么静息,要么不规则地放电。3. 莱迪希神经元高频放电会导致第3或第4神经节的双侧心脏中间神经元持续放电,而不是正常地交替爆发。这些心脏中间神经元的持续放电是导致在心脏运动神经元中记录到的抑制性突触后电位长时间发放以及其正常周期性活动中断的原因。4. 在分离的神经节中,通过注入电流阻止莱迪希神经元的自发活动会使心跳节律减慢,但不会停止振荡。5. 在分离的神经节中,抑制莱迪希神经元活动后,对外周神经根进行电刺激会导致心率加快。

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