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海兔腹神经节介导的行为反应的神经元控制。

Neuronal controls of a behavioral response mediated by the abdominal ganglion of Aplysia.

作者信息

Kupfermann I, Kandel E R

出版信息

Science. 1969 May 16;164(3881):847-50. doi: 10.1126/science.164.3881.847.

Abstract

Tactile stimulation of the siphon and mantle shelf in Aplysia causes a characteristic withdrawal response of the external organs of the mantle cavity. A similar response also occurs spontaneously. Both responses are mediated by the abdominal ganglion and therefore provide an opportunity for correlating cellular functioning and behavior in a relatively simple and well-studied neuronal system. The withdrawal responses are controlled by five identified motor cells which receive two types of synaptic inputs. One set of excitatory connections, activated by tactile stimulation of the siphon and mantle shelf, mediates the defensive withdrawal reflex. A second set of connections is activated by a spontaneous burst of activity in a group of closely coupled interneurons which are excitatory to some of the motor cells and inhibitory to the others. This second set of connections mediates the spontaneous withdrawal response. These two inputs can therefore switch the same population of motor cells from a simple reflex to a more complex, internally organized response.

摘要

对海兔的虹吸管和外套膜进行触觉刺激会引起外套膜腔内外部器官典型的退缩反应。类似的反应也会自发出现。这两种反应均由腹神经节介导,因此为在一个相对简单且研究充分的神经元系统中关联细胞功能与行为提供了契机。退缩反应由五个已确定的运动细胞控制,这些细胞接收两种类型的突触输入。一组兴奋性连接由对虹吸管和外套膜的触觉刺激激活,介导防御性退缩反射。第二组连接由一组紧密耦合的中间神经元的自发活动爆发激活,这些中间神经元对一些运动细胞起兴奋作用,对另一些则起抑制作用。这第二组连接介导自发退缩反应。因此,这两种输入可以将同一群运动细胞从简单反射切换为更复杂的、内在组织化的反应。

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