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一种已确定的本体感受器对多刺龙虾胃模式生成的多种影响。

Multiple effects of an identified proprioceptor upon gastric pattern generation in spiny lobsters.

作者信息

Elson R C, Panchin Y V, Arshavsky Y I, Selverston A I

机构信息

Department of Biology, University of California at San Diego, La Jolla 92093-0357.

出版信息

J Comp Physiol A. 1994 Mar;174(3):317-29. doi: 10.1007/BF00240214.

Abstract
  1. Using deafferented preparations of the stomatogastric nervous system of spiny lobsters (Panulirus interruptus), we stimulated the central soma of the Anterior Gastric Receptor neuron (AGR) and analyzed sensorimotor integration in the gastric central pattern generator during rhythm production. 2. Driving AGR to spike tonically at lower frequencies (10-20/s) accelerated the gastric rhythm, while higher frequencies (> or = 30/s) suppressed it. 3. Shorter spike trains in AGR evoked phase-dependent resetting of the gastric rhythm. Repetitive trains could entrain rhythms to both longer and shorter cycle periods. Some pattern-generating effects are consistent with effects upon the lateral gastric neuron, an influential member of the gastric mill network. 4. AGR affected the burst intensity of many of the gastric neurons in specific, complex ways. Some power-stroke motor neurons were excited because AGR activated excitatory, premotor interneurons (E cells). However, AGR also activated parallel, seemingly inhibitory inputs, whose mechanism remains unclear. Still other effects on motor neurons may be mediated partly by synaptic interactions within the network.
摘要
  1. 利用多刺龙虾(Panulirus interruptus)口胃神经系统的去传入神经制备物,我们刺激了前胃受体神经元(AGR)的中枢胞体,并在节律产生过程中分析了胃中枢模式发生器中的感觉运动整合。2. 以较低频率(10 - 20次/秒)驱动AGR产生强直性放电会加速胃节律,而较高频率(≥30次/秒)则会抑制胃节律。3. AGR中较短的脉冲序列会引起胃节律的相位依赖性重置。重复的脉冲序列可以使节律与更长和更短的周期同步。一些模式生成效应与对胃侧神经元的效应一致,胃侧神经元是胃磨网络中有影响力的成员。4. AGR以特定的、复杂的方式影响许多胃神经元的爆发强度。一些动力冲程运动神经元被兴奋,因为AGR激活了兴奋性的运动前中间神经元(E细胞)。然而,AGR也激活了并行的、看似抑制性的输入,其机制尚不清楚。对运动神经元的其他影响可能部分由网络内的突触相互作用介导。

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