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异源伤害性信息汇聚到猕猴(食蟹猴)延髓尾侧网状结构的神经元上。

Convergence of heterotopic nociceptive information onto neurons of caudal medullary reticular formation in monkey (Macaca fascicularis).

作者信息

Villanueva L, Cliffer K D, Sorkin L S, Le Bars D, Willis W D

机构信息

Marine Biomedical Institute, University of Texas Medical Branch, Galveston 77550-2772.

出版信息

J Neurophysiol. 1990 May;63(5):1118-27. doi: 10.1152/jn.1990.63.5.1118.

Abstract
  1. Recordings were made in anesthetized monkeys from neurons in the medullary reticular formation (MRF) caudal to the obex. Responses of 19 MRF neurons to mechanical, thermal, and/or electrical stimulation were examined. MRF neurons exhibited convergence of nociceptive cutaneous inputs from widespread areas of the body and face. 2. MRF neurons exhibited low levels of background activity. Background activity increased after periods of intense cutaneous mechanical or thermal stimulation. Nearly all MRF neurons tested failed to respond to heterosensory stimuli (flashes, whistle sounds), and none responded to joint movements. 3. MRF neurons were excited by and encoded the intensity of noxious mechanical stimulation. Responses to stimuli on contralateral limbs were greater than those to stimuli on ipsilateral limbs. Responses were greater to stimuli on the forelimbs than to stimuli on the hindlimbs. 4. MRF neurons responded to noxious thermal stimulation (51 degrees C) of widespread areas of the body. Mean responses from stimulation at different locations were generally parallel to those for noxious mechanical stimulation. Responses increased with intensity of noxious thermal stimulation (45-50 degrees C). 5. MRF neurons responded with one or two peaks of activation to percutaneous electrical stimulation applied to the limbs, the face, or the tail. The differences in latency of responses to stimulating two locations along the tail suggested that activity was elicited by activation of peripheral fibers with a mean conduction velocity in the A delta range. Stimulation of the contralateral hindlimb elicited greater responses, with lower thresholds and shorter latencies, than did stimulation of the ipsilateral hindlimb. 6. Electrophysiological properties of monkey MRF neurons resembled those of neurons in the medullary subnucleus reticularis dorsalis (SRD) in the rat. Neurons in the caudal medullary reticular formation could play a role in processing nociceptive information. Convergence of nociceptive cutaneous input from widespread areas of the body suggests that MRF neurons may contribute to autonomic, affective, attentional, and/or sensory-motor processes related to pain.
摘要
  1. 在延髓闩尾侧的延髓网状结构(MRF)中的神经元上,对麻醉的猴子进行记录。检测了19个MRF神经元对机械、热和/或电刺激的反应。MRF神经元表现出来自身体和面部广泛区域的伤害性皮肤输入的汇聚。2. MRF神经元表现出低水平的背景活动。在强烈的皮肤机械或热刺激后,背景活动增加。几乎所有测试的MRF神经元对异感觉刺激(闪光、哨声)均无反应,对关节运动也无反应。3. MRF神经元被伤害性机械刺激兴奋并编码其强度。对侧肢体刺激的反应大于同侧肢体刺激的反应。前肢刺激的反应大于后肢刺激的反应。4. MRF神经元对身体广泛区域的伤害性热刺激(51摄氏度)有反应。不同部位刺激的平均反应通常与伤害性机械刺激的反应平行。反应随伤害性热刺激强度(45 - 50摄氏度)增加。5. MRF神经元对施加于肢体、面部或尾部的经皮电刺激以一个或两个激活峰做出反应。刺激尾部两个部位的反应潜伏期差异表明,活动是由平均传导速度在Aδ范围内的外周纤维激活引起的。刺激对侧后肢比刺激同侧后肢引起的反应更大,阈值更低,潜伏期更短。6. 猴子MRF神经元的电生理特性类似于大鼠延髓背侧网状亚核(SRD)中的神经元。延髓尾侧网状结构中的神经元可能在伤害性信息处理中起作用。来自身体广泛区域的伤害性皮肤输入的汇聚表明,MRF神经元可能有助于与疼痛相关的自主、情感、注意力和/或感觉运动过程。

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