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猫中与帕西尼小体感受器相关的触觉纤维振动诱发反应中的相位相干性。

Phase coherence in vibration-induced responses of tactile fibres associated with Pacinian corpuscle receptors in the cat.

作者信息

Greenstein J, Kavanagh P, 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. 1987 May;386:263-75. doi: 10.1113/jphysiol.1987.sp016533.

Abstract
  1. In pentobarbitone-anaesthetized cats, responses were recorded in peripheral nerves or cervical dorsal columns from sensory fibres associated with Pacinian corpuscle (P.c.) receptors in the forelimb footpads. Factors affecting the phase of response to cutaneous vibration in individual P.c. fibres, and the extent of phase coherence in the responses of different P.c. fibres were examined when sinusoidal vibratory stimuli at 100-400 Hz were delivered using a 1 mm diameter probe. 2. Increases in vibration amplitude from the absolute to the 1:1 threshold for the P.c. fibre led to phase advances in the response, often of about 60 deg, in over 85% of fibres tested at 200 and 300 Hz, but further increases had little effect. 3. Variations in stimulus position within the receptive field led to unpredictable changes in the response phase that ranged from minimal change to shifts of 180 deg. As the response phase was unrelated to the distance from the point of peak sensitivity it is likely that at high vibration frequencies (greater than or equal to 100 Hz) the recruited population of P.c. fibres will respond over the whole range of phase angles. 4. The calculated phase of spike initiation in different pairs of P.c. fibres that shared coincident points of best sensitivity on the skin ranged from near synchrony to maximum asynchrony indicating that there is little phase coherence even in the subpopulation of somatotopically related P.c. fibres recruited by high-frequency cutaneous vibration. 5. Paired recordings from P.c. fibres within the cervical dorsal columns revealed a broad range of phase discrepancies in the responses of P.c. fibres to vibration at 200 and 300 Hz. 6. Several hypotheses are considered to explain the known presence of phase-locked responses to high-frequency (greater than or equal to 100 Hz) vibration in the central neurones of dorsal column nuclei.
摘要
  1. 在戊巴比妥麻醉的猫中,记录前肢足垫中与帕西尼小体(P.c.)感受器相关的感觉纤维在外周神经或颈背柱中的反应。当使用直径1毫米的探头施加100 - 400赫兹的正弦振动刺激时,研究了影响单个P.c.纤维对皮肤振动反应相位的因素,以及不同P.c.纤维反应中的相位相干程度。2. 从P.c.纤维的绝对阈值到1:1阈值增加振动幅度,会导致反应相位提前,在200和300赫兹测试的超过85%的纤维中,相位提前通常约为60度,但进一步增加幅度影响不大。3. 感受野内刺激位置的变化会导致反应相位出现不可预测的变化,范围从最小变化到180度的偏移。由于反应相位与距峰值敏感点的距离无关,所以在高振动频率(大于或等于100赫兹)时,募集的P.c.纤维群体可能会在整个相位角范围内做出反应。4. 在皮肤上具有最佳敏感重合点的不同对P.c.纤维中,计算出的动作电位起始相位范围从接近同步到最大异步,这表明即使在高频皮肤振动募集的躯体定位相关P.c.纤维亚群中,相位相干性也很小。5. 颈背柱内P.c.纤维的配对记录显示,P.c.纤维在200和300赫兹对振动的反应中存在广泛的相位差异。6. 考虑了几种假设来解释背柱核中枢神经元中已知的对高频(大于或等于100赫兹)振动的锁相反应的存在。

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