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药用水蛭血清素能系统的广泛机械感觉激活。

Widespread mechanosensory activation of the serotonergic system of the medicinal leech.

作者信息

Szczupak L, Kristan W B

机构信息

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

出版信息

J Neurophysiol. 1995 Dec;74(6):2614-24. doi: 10.1152/jn.1995.74.6.2614.

Abstract

The serotonergic system of the medicinal leech comprises a small number of iterated, identified neurons, of which the Retzius (Rz) neurons are major components. Activity in pressure mechanosensory (P) cells sufficient to elicit locomotory and defensive behaviors also excites Rz neurons. We characterized the interactions between P and Rz neurons within the ganglion and at different distances along the nerve cord. 2. Within a ganglion 1) P cells excited both Rz neurons, electrically close to the site of electrical coupling between the Rz neurons; 2) each of the four P cells had similar effects on the Rz neurons; and 3) homologous contralateral P cells shared interneuronal pathways. These data show that P cells provide nearly identical bilateral information onto Rz neurons. 3. Along the nerve cord 1) every P cell excited Rz neurons in ganglia anterior and posterior to the site of stimulation; 2) the signal was carried the entire length of the nerve cord along interneuronal pathways with similar overall (but regionally different) conduction velocities in the two directions; 3) the amplitude of the Rz responses was smaller as the distance to the activated P cell increased; 4) the rate of change of the amplitude along the cord was larger when the signal traveled from front-to-back than in the opposite direction. 4. These data shows that mechanosensory input from any segment could excite Rz neurons along the cord, in proportion to the intensity of the stimulus.

摘要

药用水蛭的5-羟色胺能系统由少量重复的、已明确的神经元组成,其中Retzius(Rz)神经元是主要成分。压力机械感受器(P)细胞中足以引发运动和防御行为的活动也会兴奋Rz神经元。我们描述了神经节内以及沿神经索不同距离处P神经元与Rz神经元之间的相互作用。2. 在神经节内:1)P细胞兴奋两个Rz神经元,电刺激部位靠近Rz神经元之间的电耦合部位;2)四个P细胞中的每一个对Rz神经元都有相似的作用;3)同源对侧P细胞共享中间神经元通路。这些数据表明,P细胞向Rz神经元提供几乎相同的双侧信息。3. 沿神经索:1)每个P细胞兴奋刺激部位前后神经节中的Rz神经元;2)信号沿中间神经元通路在神经索全长上双向传导,两个方向的总体传导速度相似(但区域不同);3)随着与激活的P细胞距离增加,Rz反应的幅度减小;4)信号从前向后传导时,沿神经索幅度的变化率大于相反方向。4. 这些数据表明,来自任何节段的机械感觉输入都可以根据刺激强度兴奋沿神经索的Rz神经元。

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