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楔束核神经元对触觉刺激信息的编码

Coding of information about tactile stimuli by neurones of the cuneate nucleus.

作者信息

Douglas P R, Ferrington D G, Rowe M

出版信息

J Physiol. 1978 Dec;285:493-513. doi: 10.1113/jphysiol.1978.sp012585.

Abstract
  1. The responses of cuneate neurones to controlled tactile stimulation of the foot pads were examined in unanaesthetized, decerebrate cats. The neurones were divided into three functional classes; one sensitive to steady tactile stimuli, and two dynamically sensitive classes which could be readily differentiated by their responsiveness to cutaneous vibration. Each class appeared to receive an exclusive input from only one of the three known groups of tactile receptors associated with the foot pads, namely the Pacinian corpuscles, the Merkel endings and the intradermal, encapsulated endings known as Krause or Meissner corpuscles. 2. Cuneate neurones responsive to steady indentation of the skin displayed approximately linear or sigmoidal stimulus-response relations over indentation ranges up to approximately 1.5--2 mm. Response variability at a fixed stimulus intensity was relatively low and showed little systematic change over the full range of the stimulus-response curves. 3. One class of dynamically sensitive cuneate neurones responded to cutaneous vibration over a range of approximately 5-80 Hz with maximal responsiveness around 30 Hz. The other class, the Pacinian neurones, responded over a range of approximately 80- greater than 600 Hz with maximal responsiveness at 200-400 Hz. The thresholds and combined band width of vibratory sensitivity of these populations were comparable with known subjective thresholds and range of cutaneous vibratory sensibility. 4. Responses of cuneate neurones were phase-locked to the vibratory stimulus suggesting that information about vibration frequency could be coded by the patterns of impulse activity. Quantitative measures indicated that maximal phase-locking occurred in responses to vibration frequencies of 10-50 Hz with a progressive decline at higher frequencies. Above 400 Hz, impulse activity occurred almost randomly throughout the vibratory stimulus cycle and therefore carried little further signal of vibratory frequency. The decline, with increasing frequency, in the ability of cuneate neurones to signal information about vibratory frequency parallels the known subjective capacities for frequency discrimination. 5. A switch-over occurred at approximately 80 Hz in the population of cuneate neurones able to provide the more reliable signal of vibratory frequency; above 80 Hz, the Pacinian neurones; below 80 Hz, the neurones receiving intradermal, rapidly adapting receptor input from the pads. 6. The observed properties of cuneate neurones are compatible with a role in signalling information which could contribute to subjective tactile abilities.
摘要
  1. 在未麻醉、去大脑的猫中,研究了楔束神经元对足底受控触觉刺激的反应。这些神经元被分为三个功能类别:一类对稳定的触觉刺激敏感,另外两类对动态刺激敏感,可通过它们对皮肤振动的反应轻易区分。每一类似乎仅从与足底相关的三种已知触觉感受器组中的一组接收排他性输入,即环层小体、默克尔终末以及称为克劳斯或迈斯纳小体的真皮内包囊终末。2. 对皮肤稳定压痕有反应的楔束神经元在压痕范围达约1.5 - 2毫米时显示出近似线性或S形的刺激 - 反应关系。在固定刺激强度下的反应变异性相对较低,并且在刺激 - 反应曲线的整个范围内几乎没有系统性变化。3. 一类动态敏感的楔束神经元在约5 - 80赫兹的范围内对皮肤振动有反应,最大反应性在30赫兹左右。另一类,即环层小体神经元,在约80 - 大于600赫兹的范围内有反应,最大反应性在200 - 400赫兹。这些群体的振动敏感性阈值和综合带宽与已知的主观阈值和皮肤振动感受范围相当。4. 楔束神经元的反应与振动刺激锁相,表明关于振动频率的信息可以通过冲动活动模式编码。定量测量表明,最大锁相出现在对10 - 50赫兹振动频率的反应中,在更高频率时逐渐下降。高于400赫兹时,冲动活动在整个振动刺激周期中几乎随机发生,因此携带的振动频率信号很少。随着频率增加,楔束神经元传递振动频率信息能力的下降与已知的频率辨别主观能力相似。5. 在能够提供更可靠振动频率信号的楔束神经元群体中,在约80赫兹处发生了转换;高于80赫兹,是环层小体神经元;低于80赫兹,是接收来自足底真皮内快速适应感受器输入的神经元。6. 观察到的楔束神经元特性与在传递可能有助于主观触觉能力的信息方面的作用相符。

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