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刺激猫的皮肤伤害性C纤维可引起攀缘纤维的紧张性和同步性活动。

Stimulation of cat cutaneous nociceptive C fibres causing tonic and synchronous activity in climbing fibres.

作者信息

Ekerot C F, Oscarsson O, Schouenborg J

机构信息

Institute of Physiology and Biophysics, Lund University, Sweden.

出版信息

J Physiol. 1987 May;386:539-46. doi: 10.1113/jphysiol.1987.sp016550.

DOI:10.1113/jphysiol.1987.sp016550
PMID:3681719
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1192478/
Abstract
  1. The input from cutaneous nociceptors to climbing fibres projecting to the forelimb area of the C3 zone in the cerebellar anterior lobe was examined in barbiturate-anaesthetized cats. Climbing fibre responses were simultaneously recorded in single Purkinje cells and as field potentials from the cerebellar surface close to these cells. 2. The cutaneous receptive field of the climbing fibres studied were located on the ipsilateral forelimb. All climbing fibres were activated by both non-noxious tactile stimulation and noxious pinch of the skin. The location of the receptive field and the distribution of sensitivity in the receptive field appeared to be identical for noxious and tactile stimuli. 3. A phasic response in the climbing fibres was evoked by either short- or long-lasting non-noxious pressure applied to their cutaneous receptive field. By contrast, all climbing fibres studied were strongly and tonically activated (up to 4-11 Hz for the duration of the stimulation) by sustained noxious pinch in the most sensitive area of their receptive fields. 4. Experiments with anodal block of impulse conduction in myelinated fibres indicated that a major input to climbing fibres during sustained noxious pinch originates from nociceptive C fibres. 5. Sustained noxious pinch of the skin evoked large field potentials on the cerebellar surface. These field potentials were evoked simultaneously with climbing fibre responses in single Purkinje cells and were due to synchronous activation of many climbing fibres. These field potentials and discharges in single climbing fibres were elicited from the same area of the skin suggesting that many of the synchronously discharging climbing fibres have the same receptive field on the skin.
摘要
  1. 在巴比妥类麻醉的猫身上,研究了皮肤伤害感受器向前庭叶C3区前肢区域投射的攀缘纤维的输入情况。在单个浦肯野细胞中同时记录攀缘纤维反应,并从靠近这些细胞的小脑表面记录场电位。2. 所研究的攀缘纤维的皮肤感受野位于同侧前肢。所有攀缘纤维都可被无害的触觉刺激和皮肤的有害捏压激活。有害刺激和触觉刺激的感受野位置以及感受野内的敏感性分布似乎是相同的。3. 对其皮肤感受野施加短期或长期无害压力,可诱发攀缘纤维的相位反应。相比之下,在所研究的所有攀缘纤维中,在其感受野最敏感区域持续施加有害捏压会强烈且持续地激活它们(刺激期间频率高达4 - 11赫兹)。4. 对有髓纤维进行阳极冲动传导阻断的实验表明,在持续有害捏压期间,攀缘纤维的主要输入来自伤害性C纤维。5. 持续有害捏压皮肤会在小脑表面诱发大的场电位。这些场电位与单个浦肯野细胞中的攀缘纤维反应同时诱发,是由许多攀缘纤维的同步激活引起的。这些场电位和单个攀缘纤维的放电是由皮肤的同一区域诱发的,这表明许多同步放电的攀缘纤维在皮肤上具有相同的感受野。

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