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医用水蛭行为回路中的多功能中间神经元。

Multifunctional interneurons in behavioral circuits of the medicinal leech.

作者信息

Kristan W B, Wittenberg G, Nusbaum M P, Stern-Tomlinson W

机构信息

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

出版信息

Experientia. 1988 May 15;44(5):383-9. doi: 10.1007/BF01940531.

Abstract

We are using the medicinal leech to study the neuronal basis of behavioral choice. In particular, we are recording from neurons, both extracellularly and intracellularly, in preparations that can express three different behaviors: the shortening reflex, crawling and swimming. We have found that particular mechanosensory neurons can elicit any of the behaviors, and that the movements are produced by just four sets of muscles, each controlled by a small number of motor neurons. Hence, there must be three different pattern-generating neuronal circuits, each of which can be activated by the same set of sensory neurons. We are studying how the choice is made among the three behaviors by recording, while one behavior is being performed, from neurons known to be involved in the initiation of the other two. We have found that an interneuron, cell 204, which is known to initiate and maintain swimming, is also active during shortening and crawling. The activity level in this interneuron can influence whether a mechanosensory stimulus produces shortening or swimming. The neuronal mechanisms by which this choice is normally effected awaits further elucidation of the circuits that elicit and generate shortening and crawling.

摘要

我们正在利用医用水蛭研究行为选择的神经基础。具体而言,我们在能够表现出三种不同行为的标本中,对神经元进行细胞外和细胞内记录,这三种行为分别是缩短反射、爬行和游泳。我们发现特定的机械感觉神经元能够引发任何一种行为,并且这些运动仅由四组肌肉产生,每组肌肉由少数运动神经元控制。因此,必定存在三种不同的模式生成神经回路,每一种都可被同一组感觉神经元激活。我们正在通过记录来研究在这三种行为之间是如何做出选择的,即在执行一种行为时,记录已知参与引发另外两种行为的神经元的活动。我们发现,已知能引发并维持游泳行为的中间神经元204,在缩短反射和爬行过程中也处于活跃状态。这个中间神经元的活动水平会影响机械感觉刺激引发的是缩短反射还是游泳行为。通常实现这种选择的神经机制,有待于进一步阐明引发和产生缩短反射及爬行行为的神经回路。

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