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池塘蜗牛角螺的防御反应。III. 对平衡囊输入的反应。

Defense reaction in the pond snail Planorbis corneus. III. Response to input from statocysts.

作者信息

Arshavsky Y I, Deliagina T G, Okshtein I L, Orlovsky G N, Panchin Y V, Popova L B

机构信息

Institute of Problems of Information Transmission, Academy of Sciences of Russia, Moscow.

出版信息

J Neurophysiol. 1994 Mar;71(3):898-903. doi: 10.1152/jn.1994.71.3.898.

Abstract
  1. In the intact pond snail Planorbis corneus, a rapid tilt in any plane evoked a defense reaction consisting of a fast movement of the shell towards the head, shortening of the foot, inhibition of locomotion and of rhythmical feeding movements. This reaction was similar to the first phase of the general defense reaction of Planorbis to cutaneous stimulation. 2. A method has been developed for inclination of the isolated CNS in space (up to 90 degrees) and simultaneous intracellular recordings from different neurons. 3. The statocyst receptor cells (SRCs) responded both phasically and tonically to the tilt. The SRCs differ in their spatial zones of sensitivity. 4. Essential manifestations of the defense reaction to the input from statocysts could be observed in the in vitro preparation of the CNS isolated with statocysts. Both tilting of the CNS and electrical stimulation of individual SRCs elicited an excitatory response in numerous neurons from different ganglia, including motor neurons (MNs) of the columellar muscle. This response was of "all-or-none" nature, and could be evoked by electrical stimulation of any SRC. The response was followed by a long (10-20 s) period of refractoriness. 5. Activation of SRCs resulted also in excitation of the giant dopaminergic cell in the left pedal ganglion (related to the control of respiration), in inhibition of the feeding rhythm generator, and in inhibition of the pedal neurons responsible for activation of the ciliary locomotor system. 6. Combined stimulation of two inputs able to evoke a defense reaction, i.e., those from the statocyst and from cutaneous nerve, revealed a strong interdependence of their central effects.(ABSTRACT TRUNCATED AT 250 WORDS)
摘要
  1. 在完整的角贝螺(Planorbis corneus)中,任何平面的快速倾斜都会引发一种防御反应,包括贝壳快速移向头部、足部缩短、运动和节律性进食运动受到抑制。这种反应类似于角贝螺对皮肤刺激的一般防御反应的第一阶段。2. 已开发出一种方法,可使离体中枢神经系统在空间中倾斜(高达90度)并同时对不同神经元进行细胞内记录。3. 平衡囊受体细胞(SRCs)对倾斜既有相位反应也有紧张性反应。SRCs在其空间敏感区域存在差异。4. 在带有平衡囊分离出的中枢神经系统的体外制剂中,可以观察到对来自平衡囊输入的防御反应的基本表现。中枢神经系统的倾斜和对单个SRCs的电刺激都会在来自不同神经节的众多神经元中引发兴奋反应,包括柱状肌的运动神经元(MNs)。这种反应具有“全或无”的性质,并且可以通过对任何SRC的电刺激来诱发。反应之后是一段较长(10 - 20秒)的不应期。5. SRCs的激活还导致左足神经节中的巨大多巴胺能细胞兴奋(与呼吸控制有关),抑制进食节律发生器,并抑制负责激活纤毛运动系统的足神经元。6. 对能够引发防御反应的两种输入(即来自平衡囊和来自皮神经的输入)进行联合刺激,揭示了它们中枢效应之间的强烈相互依赖性。(摘要截选至250字)

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