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猫楔状核中神经元对皮肤速度感受器受控机械刺激的反应模式。

Patterns of responses of neurons in cuneate nucleus to controlled mechanical stimulation of cutaneous velocity receptors in the cat.

作者信息

Golovchinsky V

出版信息

J Neurophysiol. 1980 Jun;43(6):1673-99. doi: 10.1152/jn.1980.43.6.1673.

Abstract
  1. The responses of single cuneate neurons to controled mechanical stimulation of skin were recorded in cats lightly anesthetized with a nitrous oxide-halothane mixture. The discharge patterns and peripheral receptive-field characteristics were studied in neurons driven by sensitive cutaneous mechanoreceptors, including slowly adapting skin mechanoreceptors. Virtually all cuneate neurons display maximum discharge during the velocity component of displacement. 2. Among cuneate neurons encountered in this study, approximately 46% were driven by guard hair mechanoreceptors, 15% were driven by field receptors, and 13% were driven by slowly adapting skin receptors. Neurons responding to stimulation of deep tissues (including claws) were not studied with controlled mechanical stimulation and accounted for 19%. The rest of the neurons were driven by Pacinian corpuscles, received afferent inputs from several different first-order afferents, or were not definitely identified. There was no clear evidence of down hair or high-threshold mechanoreceptor representation. 3. The discharge pattern in response to a constant-velocity stimulus proved most valuable in describing submodality classes of neurons driven by hair and field receptors since sensitivity of these neurons to dynamic and to static phases of stimulation constitute respective continua and, thus, preclude sharp separation into distinct groups. 4. The majority of neurons displayed response properties and receptive fields similar to those of first-order afferents. A minority of cells had receptive fields that were larger than those of primary afferents, with nearly identical modality and velocity characteristics throughout the receptive field. 5. Approximately 2% of recorded neurons displayed convergent properties not encountered in first-order afferents, including neurons driven from receptors of different modalities or from discontinuous receptive fields. 6. Inhibition of neuronal firing generated from outside the receptive field was rarely seen, possibly due to anesthetic conditions. In a small number of neurons, irregularities in the discharge were observed that might indicate inhibitory influences originating from within the receptive field.
摘要
  1. 在使用氧化亚氮 - 氟烷混合物轻度麻醉的猫身上,记录了单个楔束神经元对皮肤受控机械刺激的反应。研究了由敏感皮肤机械感受器驱动的神经元的放电模式和外周感受野特征,包括慢适应皮肤机械感受器。几乎所有楔束神经元在位移的速度分量期间显示最大放电。2. 在本研究中遇到的楔束神经元中,约46% 由触毛机械感受器驱动,15% 由场感受器驱动,13% 由慢适应皮肤感受器驱动。对深部组织(包括爪子)刺激有反应的神经元未用受控机械刺激进行研究,占19%。其余神经元由环层小体驱动,接受来自几种不同一级传入纤维的传入输入,或未明确识别。没有明确证据表明有下毛或高阈值机械感受器的代表。3. 响应恒速刺激的放电模式在描述由毛发和场感受器驱动的神经元的亚模态类别方面被证明最有价值,因为这些神经元对刺激的动态和静态阶段的敏感性构成了各自的连续体,因此排除了明显分为不同组的可能性。4. 大多数神经元表现出与一级传入纤维相似的反应特性和感受野。少数细胞的感受野比初级传入纤维的大,在整个感受野中具有几乎相同的模态和速度特征。5. 约2% 的记录神经元表现出一级传入纤维中未遇到的会聚特性,包括由不同模态的感受器或不连续感受野驱动的神经元。6. 很少见到来自感受野外部产生的神经元放电抑制,可能是由于麻醉条件。在少数神经元中,观察到放电不规则,这可能表明来自感受野内部的抑制性影响。

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