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新生猫正中神经损伤对猫楔状核内触觉神经元反应性的影响。

The effects of neonatal median nerve injury on the responsiveness of tactile neurones within the cuneate nucleus of the cat.

作者信息

Murray G M, Taub D R, Mackie P D, Zhang H Q, Ghosh S, Rowe M J

机构信息

School of Physiology and Pharmacology, University of New South Wales, Sydney, Australia.

出版信息

J Physiol. 1997 Dec 15;505 ( Pt 3)(Pt 3):759-68. doi: 10.1111/j.1469-7793.1997.759ba.x.

Abstract
  1. The capacity of cuneate neurones to attain normal functional properties following neonatal median nerve injury was investigated with single neurone recording in anaesthetized cats, 12-24 months subsequent to a controlled crush injury. Effectiveness of the peripheral nerve injury was confirmed by the abolition of the median nerve compound action potential following the crush. 2. Cuneate recording was carried out after denervation of the forearm, apart from the median nerve, to ensure that neurones studied had receptive fields within the distribution zone of the regenerated median nerve. Controlled and reproducible tactile stimuli were used to evaluate the functional capacities of neurones to determine whether they were consistent with those reported earlier for cuneate neurones in cats that had normal peripheral nerve development. 3. Twenty-two cuneate neurones with well-defined tactile receptive fields within the distribution zone of the regenerated median nerve were classified according to their adaptation characteristics and functional properties. Slowly adapting neurones responded throughout static skin indentations and had graded and approximately linear stimulus-response relations over indentation ranges up to 1.5 mm. Rapidly adapting neurones responded to the dynamic phases of skin indentations and could be divided into two broad classes, one most sensitive to vibrotactile stimuli at 200-400 Hz which appeared to receive a predominant input from Pacinian corpuscle receptors, and a non-Pacinian group that included neurones most sensitive to skin vibration at 5-50 Hz which appeared to receive glabrous skin input from the rapidly adapting class of afferent fibres. 4. Based on the stimulus-response relations and on measures of phase locking in the responses to vibrotactile stimuli, it appears that the functional properties of cuneate neurones activated from the field of a regenerated median nerve subsequent to a neonatal nerve crush injury were consistent with those reported previously for 'control' cuneate neurones. The results indicate that cuneate neurones can acquire normal tactile coding capacities despite the disruption caused by prior crush injury to their peripheral nerve source.
摘要
  1. 在麻醉猫身上采用单神经元记录法,研究了在新生儿正中神经损伤12至24个月后,经控制挤压损伤的楔束神经元获得正常功能特性的能力。挤压后正中神经复合动作电位消失,证实了周围神经损伤的有效性。2. 除正中神经外,在前臂去神经后进行楔束记录,以确保所研究的神经元在再生正中神经的分布区内有感受野。使用可控且可重复的触觉刺激来评估神经元的功能能力,以确定它们是否与先前报道的外周神经发育正常的猫的楔束神经元的功能能力一致。3. 根据适应特性和功能特性,对22个在再生正中神经分布区内具有明确触觉感受野的楔束神经元进行了分类。慢适应神经元在静态皮肤压痕过程中均有反应,在压痕范围达1.5毫米时具有分级且近似线性的刺激 - 反应关系。快适应神经元对皮肤压痕的动态阶段有反应,可分为两大类,一类对200 - 400赫兹的振动触觉刺激最敏感,似乎主要接受来自环层小体感受器的输入;另一类非环层小体组包括对5 - 50赫兹皮肤振动最敏感的神经元,似乎接受来自快适应传入纤维类的无毛皮肤输入。4. 根据刺激 - 反应关系以及对振动触觉刺激反应中的锁相测量,新生儿神经挤压损伤后从再生正中神经区域激活的楔束神经元的功能特性似乎与先前报道的“对照”楔束神经元一致。结果表明,尽管先前的挤压损伤对其外周神经源造成了破坏,但楔束神经元仍可获得正常的触觉编码能力。

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Neural mechanisms in vibrotactile adaptation.振动触觉适应中的神经机制。
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本文引用的文献

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Regeneration in the mammalian peripheral nervous system.哺乳动物外周神经系统的再生
Physiol Rev. 1956 Oct;36(4):441-78. doi: 10.1152/physrev.1956.36.4.441.

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