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大鼠中脑对肢体退缩和甩尾反射的抑制作用:与骶髓神经元下行抑制的相关性

Midbrain suppression of limb withdrawal and tail flick reflexes in the rat: correlates with descending inhibition of sacral spinal neurons.

作者信息

Carstens E, Douglass D K

机构信息

Section of Neurobiology, Physiology and Behavior, University of California, Davis 95616, USA.

出版信息

J Neurophysiol. 1995 Jun;73(6):2179-94. doi: 10.1152/jn.1995.73.6.2179.

Abstract
  1. The aim of this study was to utilize new quantitative behavioral methods in rats to investigate the effects of electrical stimulation in midbrain analgesia areas on the magnitude of flexion hindlimb withdrawal and tail flick reflexes evoked by graded noxious heating. Electrophysiological experiments were then done with the use of these animals to correlate behavioral data with the effects of identical midbrain stimulation on sacral dorsal horn neuronal responses to graded heating of the tail. 2. To quantify limb withdrawals, electromyographs (EMGs) were recorded in biceps femoris during withdrawals elicited by noxious heat stimuli (40-52 degrees C, 5 s, 2-min intervals) delivered to the plantar surface of the hind paw, without and during concomitant electrical stimulation (100 ms, 100-Hz trains, 3/s, 10-600 microA) in midbrain periaqueductal gray (PAG) or laterally adjacent reticular formation (LRF) via previously implanted electrodes. The same animals were tested with the use of a tail flick paradigm modified to allow measurement of the force of tail movements in three orthogonal planes and thereby calculate the overall force vector of tail flicks elicited by graded noxious radiant heat pulses (38-58 degrees C, 5 s, 2-min intervals) delivered to the tail, again with and without concomitant PAG or LRF stimulation. Finally, the same rats were anesthetized with pentobarbital sodium and microelectrode recordings made from single sacral dorsal horn neurons responsive to the same noxious heat stimuli delivered to the tail to assess effects of PAG and LRF stimulation. 3. PAG and LRF stimulation suppressed the magnitude of limb flexor EMGs, and tail flick force vectors, in an intensity-dependent manner. Recruitment of suppression of both limb withdrawal EMGs and tail flicks was generally more effective for LRF compared with PAG stimulation, although mean thresholds for suppression were similar. Tail flick force and limb withdrawal EMGs recorded from the same rat in separate sessions were suppressed about equally in a majority of cases. 4. Limb withdrawal EMG magnitude increased monotonically from threshold (approximately 40 degrees C) to 52 degrees C. The population stimulus-response function was fit equally well by linear regression or a 2 degrees polynomial function (r2 = 0.79 for both). PAG stimulation significantly reduced the mean slope of the stimulus-response function (to 73%; n = 15), whereas LRF stimulation shifted it toward the right with a smaller slope reduction (to 85%) and 3 degrees C increase in threshold.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 本研究的目的是利用大鼠新的定量行为方法,来探究中脑镇痛区域的电刺激对分级有害热刺激诱发的后肢屈曲退缩幅度和甩尾反射的影响。然后利用这些动物进行电生理实验,将行为数据与相同中脑刺激对骶背角神经元对尾巴分级热刺激反应的影响进行关联。2. 为了量化肢体退缩,在通过先前植入的电极对中脑导水管周围灰质(PAG)或外侧相邻网状结构(LRF)进行伴随电刺激(100毫秒,100赫兹串,每秒3次,10 - 600微安)期间和不进行电刺激时,记录后爪足底表面受到有害热刺激(40 - 52摄氏度,5秒,间隔2分钟)诱发的股二头肌的肌电图(EMG)。使用经过改良的甩尾范式对相同动物进行测试,该范式可测量尾巴在三个正交平面上的运动力,从而计算分级有害辐射热脉冲(38 - 58摄氏度,5秒,间隔2分钟)施加于尾巴诱发的甩尾的总力向量,同样在有和没有伴随PAG或LRF刺激的情况下进行测试。最后,用戊巴比妥钠麻醉相同的大鼠,从对施加于尾巴的相同有害热刺激有反应的单个骶背角神经元进行微电极记录,以评估PAG和LRF刺激的效果。3. PAG和LRF刺激以强度依赖的方式抑制肢体屈肌EMG的幅度和甩尾力向量。与PAG刺激相比,LRF刺激对肢体退缩EMG和甩尾的抑制募集通常更有效,尽管抑制的平均阈值相似。在大多数情况下,同一只大鼠在不同实验环节记录的甩尾力和肢体退缩EMG受到的抑制程度大致相同。4. 肢体退缩EMG幅度从阈值(约40摄氏度)到52摄氏度单调增加。群体刺激 - 反应函数通过线性回归或二次多项式函数拟合效果相同(两者的r2均为0.79)。PAG刺激显著降低了刺激 - 反应函数的平均斜率(降至73%;n = 15),而LRF刺激使其向右移动,斜率降低较小(降至85%)且阈值升高3摄氏度。(摘要截断于400字)

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