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长须海葵(Calamactis praelongus)光反应的神经控制

Nervous control of light responses in the sea anemone, Calamactis praelongus.

作者信息

Marks P S

出版信息

J Exp Biol. 1976 Aug;65(1):85-96. doi: 10.1242/jeb.65.1.85.

Abstract
  1. The burrowing sea anemone, Calamactis praelongus, responds to light with local, non-nervous contractions of the column. There are also more extensive responses of the column and retractor muscles co-ordinated by nerve net pulses (NNP's) under pacemaker control. 2. NNP's occur in at least two types of bursts and in sequences which sometimes indicate a rotating site of pulse initiation. 3. Light-evoked NNP sequences can be tape recorded and used later to drive a stimulator to reproduce the original sequences in the same or different anemones, evoking muscular responses which approximate the originals. This technique separates the pacemaker-directed component of the light response from the local effects of light stimulation. 4. Isolated circular and parietal muscles contract slowly when stimulated by light or excited indirectly by NNP's. Retractor muscles are insensitive to light but produce rapid contractions when excited by closely spaced light-evoked NNP's. 5. A model for light responses is proposed which incorporates the characteristics of isolated muscles and intact anemones.
摘要
  1. 穴居海葵Calamactis praelongus通过柱体局部的非神经性收缩对光作出反应。在起搏器控制下,柱体和牵缩肌也会有更广泛的反应,这些反应由神经网脉冲(NNP)协调。2. NNP至少以两种类型的脉冲群出现,其序列有时表明脉冲起始的旋转位点。3. 光诱发的NNP序列可以用磁带记录下来,之后用于驱动刺激器,在相同或不同的海葵中重现原始序列,引发近似原始的肌肉反应。这项技术将光反应中起搏器导向的成分与光刺激的局部效应区分开来。4. 分离出的环形肌和壁肌在受到光刺激或由NNP间接激发时收缩缓慢。牵缩肌对光不敏感,但在受到间隔紧密的光诱发NNP激发时会产生快速收缩。5. 提出了一个光反应模型,该模型整合了分离肌肉和完整海葵的特征。

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