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具有中央细胞体的链状感受器与蝗虫中产生动作电位的局部中间神经元形成突触。

A strand receptor with a central cell body synapses upon spiking local interneurones in the locust.

作者信息

Pflüger H J, Burrows M

出版信息

J Comp Physiol A. 1987 Mar;160(3):295-304. doi: 10.1007/BF00613019.

Abstract

Movements of the femoro-tibial joint of a locust hind leg are monitored by three classes of proprioceptors; a chordotonal organ (Usherwood et al. 1968), multipolar joint receptors (Coillot and Boistel 1968) and a strand receptor innervated by a single afferent with a central cell body (Bräunig 1985). All three classes are excited by imposed or voluntary extension of the tibia. The strand receptor (fe-tiSR) spikes tonically and at a frequency dependent upon the position of the joint whilst the multipolar joint receptors give overlapping information but for a more restricted range. The afferent from the strand receptor makes an excitatory connection with a spiking local interneurone in the midline group of the metathoracic ganglion. The central latency and consistency with which the EPSP follows each sensory spike suggests that the connection is direct. This interneurone also receives convergent inputs from neurones in the chordotonal organ, but not from multipolar joint receptors. Neither the strand receptor nor the multipolar joint receptors apparently synapse upon leg motor neurones that we have tested, in contrast to receptors in the chordotonal organ.

摘要

蝗虫后腿股胫关节的运动由三类本体感受器监测;一种弦音器官(厄舍伍德等人,1968年)、多极关节感受器(科约和博伊斯特尔,1968年)以及一种由单个传入神经支配且具有中央细胞体的链状感受器(布劳尼希,1985年)。这三类感受器都会因施加的或自主的胫骨伸展而兴奋。链状感受器(股胫链状感受器)持续发放动作电位,其频率取决于关节的位置,而多极关节感受器提供重叠的信息,但范围更有限。来自链状感受器的传入神经与后胸神经节中线组的一个发放动作电位的局部中间神经元形成兴奋性连接。兴奋性突触后电位跟随每个感觉动作电位的中枢潜伏期和一致性表明这种连接是直接的。这个中间神经元还接收来自弦音器官中神经元的汇聚输入,但不接收多极关节感受器的输入。与弦音器官中的感受器不同,我们测试过的链状感受器和多极关节感受器显然都不与腿部运动神经元形成突触。

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