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猴子皮肤C类纤维伤害感受器的热感受野与机械感受野的比较。

Comparison of heat and mechanical receptive fields of cutaneous C-fiber nociceptors in monkey.

作者信息

Treede R D, Meyer R A, Campbell J N

机构信息

Department of Neurosurgery, School of Medicine, Johns Hopkins University, Baltimore, Maryland 21205.

出版信息

J Neurophysiol. 1990 Nov;64(5):1502-13. doi: 10.1152/jn.1990.64.5.1502.

Abstract
  1. Receptive-field properties were investigated in cutaneous C-fiber nociceptive afferents (CMH) responsive to mechanical and heat stimuli. Teased-fiber techniques were used to record from 28 CMHs that innervated the hairy skin of upper or lower limb in anesthetized monkeys. 2. The response to mechanical stimuli was studied with the use of calibrated von Frey probes. The response to heat stimuli was studied with the use of a laser thermal stimulator that provided stepped increases in skin temperature with rise times to the desired temperature near 100 ms. The size of the receptive field (RF) for mechanical stimuli was determined by use of a suprathreshold stimulus that consisted of a 0.5-mm-diam probe that exerted a 200-mN force (10 bar). The size of the heat RF was determined by use of a 49 degrees C stimulus applied to a 7.5-mm-diam area for 1 s. 3. Heat thresholds were determined with an ascending series of stimulus intensities and were found to be stable over many hours: they ranged from 37 to 46 degrees C (mean, 41.1 degrees C). Mechanical thresholds ranged from 1.3 to 7.3 bar (mean, 3.3 bar). There was no correlation between mechanical and heat thresholds. Both thresholds extended well below the corresponding psychophysical pain thresholds in the literature. This suggests that spatial and/or temporal summation of C-fiber input are important for pain induced by either stimulus modality. 4. Mechanical RF diameters ranged from 3.3 to 9.6 mm (mean, 4.7 mm); heat RF diameters ranged from punctate (less than 1 mm) to 9.5 mm (mean, 4.3 mm). There was a significant linear correlation between mechanical and heat RF sizes with a slope of one. The distance between the center of the mechanical RF and the center of the heat RF along one axis ranged from 0 to 1.1 mm (mean, 0.4 mm). These data indicate that the heat RFs coincided with the mechanical RFs. 5. Within the mechanical RF determined with the suprathreshold stimuli, all CMHs had one or more punctate areas of maximal mechanical sensitivity where mechanical threshold was lowest. Heat excitability extended greater than 2 mm beyond these mechanically sensitive spots. Because lateral transmission of the heat stimulus is small, this indicates that heat transduction occurs outside the regions of maximal mechanical sensitivity. 6. Both the threshold to heat and the response magnitude at suprathreshold intensities depended on the percentage of the RF area overlapped by the heat stimulus. This indicates that multiple transducer sites probably contribute to the total evoked response.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 我们研究了对机械和热刺激有反应的皮肤C纤维伤害性传入神经(CMH)的感受野特性。在麻醉的猴子身上,采用分离纤维技术,从支配上肢或下肢多毛皮肤的28条CMH上进行记录。2. 使用校准的von Frey探针研究对机械刺激的反应。使用激光热刺激器研究对热刺激的反应,该刺激器能使皮肤温度呈阶梯式升高,升温至所需温度的上升时间接近100毫秒。通过使用一个直径为0.5毫米、施加200毫牛力(10巴)的阈上刺激来确定机械刺激的感受野(RF)大小。通过将49摄氏度的刺激施加到直径为7.5毫米的区域1秒钟来确定热RF的大小。3. 通过一系列递增的刺激强度来确定热阈值,发现其在数小时内保持稳定:范围为37至46摄氏度(平均41.1摄氏度)。机械阈值范围为1.3至7.3巴(平均3.3巴)。机械阈值和热阈值之间没有相关性。这两个阈值都远低于文献中相应的心理物理学疼痛阈值。这表明C纤维输入的空间和/或时间总和对于由任何一种刺激方式引起的疼痛都很重要。4. 机械RF直径范围为3.3至9.6毫米(平均4.7毫米);热RF直径范围从点状(小于1毫米)到9.5毫米(平均4.3毫米)。机械和热RF大小之间存在显著的线性相关性,斜率为1。沿着一个轴,机械RF中心与热RF中心之间的距离范围为0至1.1毫米(平均0.4毫米)。这些数据表明热RF与机械RF重合。5. 在由阈上刺激确定的机械RF内,所有CMH都有一个或多个点状的最大机械敏感区域,此处机械阈值最低。热兴奋性在这些机械敏感点之外延伸超过2毫米。由于热刺激的横向传播很小,这表明热转导发生在最大机械敏感区域之外。6. 热阈值和阈上强度时的反应幅度都取决于热刺激覆盖的RF区域的百分比。这表明多个换能器部位可能对总的诱发反应有贡献。(摘要截断于400字)

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