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小龙虾中间神经元对定向机械感觉输入的整合。

Integration of directional mechanosensory input by crayfish interneurons.

作者信息

Wiese K, Calabrese R L, Kennedy D

出版信息

J Neurophysiol. 1976 Jul;39(4):834-43. doi: 10.1152/jn.1976.39.4.834.

DOI:10.1152/jn.1976.39.4.834
PMID:966041
Abstract
  1. Interneurons activated by mechanosensory hairs on the crayfish telson respond selectively to directional displacements of the medium; the directions of maximum sensitivity lie 180 degrees apart in approximately the rostrocaudal plane, corresponding to the directional sensitivities of the two populations of primary afferent neurons. We have examined the basis for this selectivity by intracellular recording in the interneurons, correlating subthreshold potentials with activity evoked in identified afferents by bending single hairs or by producing nearfield displacements of the medium. 2. Interneurons can usually be caused to discharge by a brief train of impulses in single sensory axons. Unitary EPEPs are associated with arriving affterent spikes in the fourth (sensory) root; each primary interneuron receives convergence from several sensory axons, all sensitive to the same direction of movement. Since each afferent axon is drawn from a pair innervating a single sensory structure, this remarkable specificity of connection is unlikely to depend on an anatomical mode of address. 3. Higher order interneurons receive from directionally sensitive lower order interneurons of the same class, as well as from primary afferents of that class. The responses of such cells may show much more decrement during a train of displacement stimuli than do those of lower order cells. Directionality does not appear to be enhanced. 4. During the "null phase" some interneurons appear to be actively inhibited: bending of single hairs 180 degrees away from the effective direction may produce membrane hyperpolarization and slow spontaneous discharges, and shocks to afferent roots produce mixtures of monosynaptic EPSPs and polysynaptic IPSPs.
摘要
  1. 小龙虾尾节上的机械感觉毛激活的中间神经元对介质的定向位移有选择性反应;最大敏感方向在大致的前后平面上相隔180度,与两类初级传入神经元的定向敏感性相对应。我们通过对中间神经元进行细胞内记录来研究这种选择性的基础,将阈下电位与通过弯曲单根毛或产生介质近场位移在已识别传入神经中诱发的活动相关联。2. 中间神经元通常可由单个感觉轴突中的一串短暂冲动引发放电。单一的兴奋性突触后电位(EPEP)与第四(感觉)根中传入冲动的到达相关;每个初级中间神经元接收来自几个感觉轴突的汇聚,所有这些轴突都对相同的运动方向敏感。由于每个传入轴突都来自支配单个感觉结构的一对轴突,这种显著的连接特异性不太可能依赖于解剖学上的寻址方式。3. 高阶中间神经元接收来自同一类定向敏感的低阶中间神经元以及该类初级传入神经元的输入。在一串位移刺激期间,这类细胞的反应可能比低阶细胞的反应衰减得多。方向性似乎没有增强。4. 在“零相位”期间,一些中间神经元似乎受到主动抑制:将单根毛向远离有效方向弯曲180度可能会产生膜超极化和缓慢的自发放电,并且对传入根的电击会产生单突触兴奋性突触后电位(EPSP)和多突触抑制性突触后电位(IPSP)的混合。

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Integration of directional mechanosensory input by crayfish interneurons.小龙虾中间神经元对定向机械感觉输入的整合。
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Invertebrate presynaptic inhibition and motor control.无脊椎动物的突触前抑制与运动控制。
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Comparison of directional selectivity in identified spiking and nonspiking mechanosensory neurons in the crayfish Orconectes limosus.小龙虾奥氏原螯虾中已识别的发放动作电位和不发放动作电位的机械感觉神经元的方向选择性比较。
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Resistance of a crayfish sensory interneurone to hyperinnervation by acceptable afferents.小龙虾感觉中间神经元对可接受传入神经超神经支配的抗性。
J Physiol. 1982 Oct;331:35-49. doi: 10.1113/jphysiol.1982.sp014363.
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Transient, axotomy-induced changes in the membrane properties of crayfish central neurones.短暂的、轴突切断诱导的小龙虾中枢神经元膜特性变化。
J Physiol. 1981 Aug;317:435-61. doi: 10.1113/jphysiol.1981.sp013835.
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J Comp Physiol A. 1986 Jun;158(6):751-64. doi: 10.1007/BF01324819.
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Biophys J. 1979 Aug;27(2):277-85. doi: 10.1016/S0006-3495(79)85217-0.