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脊髓猫中皮肤神经输入对生理性屈肌后肢运动神经元的差异性突触效应。

Differential synaptic effects on physiological flexor hindlimb motoneurons from cutaneous nerve inputs in spinal cat.

作者信息

Leahy J C, Durkovic R G

机构信息

Department of Physiology, State University of New York Health Science Center, Syracuse 13210.

出版信息

J Neurophysiol. 1991 Aug;66(2):460-72. doi: 10.1152/jn.1991.66.2.460.

Abstract
  1. We previously demonstrated in the spinal cat that superficial peroneal cutaneous nerve stimulation produced strong reflex contraction in tibialis anterior (TA) and semitendinosus (St) muscles but unexpectedly produced mixed effects in another physiological flexor muscle, extensor digitorum longus (EDL). The goal of the present study was to further characterize the organization of ipsilateral cutaneous reflexes by examining the postsynaptic potentials (PSPs) produced in St, TA, and EDL motoneurons by superficial peroneal and saphenous nerve stimulation in decerebrate, spinal cats. 2. In TA and St motoneurons, low-intensity cutaneous nerve stimulation that activated only large (A alpha) fibers [i.e., approximately 2-3 times threshold (T)], typically produced biphasic PSPs consisting of an initial excitatory phase and subsequent inhibitory phase (EPSP, IPSP). Increasing the stimulus intensity to activate both large (A alpha) and small (A delta) myelinated cutaneous fibers supramaximally (15-45 T) tended to enhance later excitatory components in TA and St motoneurons. 3. In EDL motoneurons, 2-3 T stimulation of the superficial peroneal nerve evoked initial inhibition (of variable magnitude) in 7/10 EDL motoneurons tested, with either excitation (n = 2) or mixed effects (n = 1) observed in the remaining EDL motoneurons. Saphenous nerve stimuli produced excitation either alone, or preceded by an inhibitory phase in EDL. Increasing the stimulus intensity enhanced later inhibitory influences from superficial peroneal and excitatory influences both from superficial peroneal and saphenous nerve inputs in EDL motoneurons. 4. Short-latency (less than 1.8 ms) EPSPs were observed in a few motoneurons in all reflex pathways examined, except for EPSPs in EDL motoneurons evoked by saphenous stimulation. IPSPs with central latencies less than 1.8 ms were also produced by both saphenous (TA, n = 1; EDL, n = 2) and superficial peroneal (EDL, n = 4) nerve stimulation. 5. The results, in comparison with other reports employing spinal and nonspinal preparations, suggest that removal of influences from higher centers reveals inhibitory circuits from the superficial peroneal and saphenous nerves to EDL motoneurons in the spinal preparation. The inhibitory inputs observed are thought to reflect the activation of "specialized" reflex pathways. Additionally, the demonstration of short-latency EPSPs and IPSPs suggest that the minimal linkage in both the excitatory and inhibitory cutaneous reflex pathways examined is disynaptic. The results are discussed in relation to previous studies on classically conditioned flexion reflex facilitation in spinal cat.
摘要
  1. 我们之前在脊髓猫中证明,刺激腓浅皮神经能使胫骨前肌(TA)和半腱肌(St)产生强烈的反射性收缩,但出乎意料的是,在另一块生理屈肌——趾长伸肌(EDL)中却产生了混合效应。本研究的目的是通过在去大脑脊髓猫中刺激腓浅神经和隐神经,检测St、TA和EDL运动神经元产生的突触后电位(PSP),进一步明确同侧皮肤反射的组织情况。2. 在TA和St运动神经元中,仅激活大直径(Aα)纤维的低强度皮肤神经刺激[即约为阈值(T)的2 - 3倍],通常会产生双相PSP,包括初始的兴奋相和随后的抑制相(兴奋性突触后电位,抑制性突触后电位)。将刺激强度增加到超最大程度激活大直径(Aα)和小直径(Aδ)有髓皮肤纤维(15 - 45 T),往往会增强TA和St运动神经元中较晚出现的兴奋成分。3. 在EDL运动神经元中,对腓浅神经进行2 - 3 T的刺激,在测试的10个EDL运动神经元中有7个诱发了初始抑制(幅度各异),其余EDL运动神经元中观察到兴奋(n = 2)或混合效应(n = 1)。隐神经刺激在EDL中单独产生兴奋,或先出现抑制相。增加刺激强度会增强EDL运动神经元中来自腓浅神经的较晚抑制性影响以及来自腓浅神经和隐神经输入的兴奋性影响。4. 在所有检测的反射通路中的少数运动神经元中观察到了短潜伏期(小于1.8 ms)的兴奋性突触后电位,但隐神经刺激诱发的EDL运动神经元中的兴奋性突触后电位除外。隐神经(TA,n = 1;EDL,n = 2)和腓浅神经(EDL,n = 4)刺激也产生了中枢潜伏期小于1.8 ms的抑制性突触后电位。5. 与其他采用脊髓和非脊髓标本的报告相比,这些结果表明,去除高级中枢的影响后,在脊髓标本中揭示了从腓浅神经和隐神经到EDL运动神经元的抑制性回路。观察到的抑制性输入被认为反映了“特殊”反射通路的激活。此外,短潜伏期兴奋性突触后电位和抑制性突触后电位的证明表明,在所检测的兴奋性和抑制性皮肤反射通路中,最小的联系是双突触的。将结合之前关于脊髓猫经典条件性屈肌反射易化的研究对这些结果进行讨论。

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