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猫腓肠肌运动神经元中皮肤多突触兴奋性突触后电位的脊髓上易化作用。

Supraspinal facilitation of cutaneous polysynaptic EPSPs in cat medical gastrocnemius motoneurons.

作者信息

Pinter M J, Burke R E, O'Donovan M J, Dum R P

出版信息

Exp Brain Res. 1982;45(1-2):133-43. doi: 10.1007/BF00235772.

Abstract

We examined the characteristics of postsynaptic potentials (PSPs) produced in antidromically-identified medical gastrocnemius (MG) alpha-motoneurons by electrical stimulation of low threshold (less than 3 x T) distal limb cutaneous afferents in the sural (SUR) nerve in adult cats anesthetized with alpha-chloralose, together with the effects of SUR PSPs of supraspinal conditioning stimulation of the contralateral red nucleus (RN) and pyramidal tract (PT). In the majority of MG motoneurons, SUR afferents with electrical thresholds less than 1.5 x T produced early excitatory synaptic potentials (EPSPs) with minimum central latency of about 2.0 ms, suggesting activation of a trisynaptic segmental pathway with two interposed interneurons. Such early EPSPs were often detectable with stimuli less than 1.2 x T, as determined by recording the compound action potential in the sciatic nerve and from the first appearance of the N1 wave of the cord dorsum potential. Inhibitory synaptic potentials (IPSPs) were regularly produced by SUR volleys of only slightly greater strength (often as low as 1.3 x T) and these had minimum central latencies of about 3.0 ms (about 1.0 ms longer than the earliest EPSPs), suggesting a three interneuron central pathway. Repetitive stimulation of RN and PT regularly produced facilitation of both EPSP and IPSP components in the SUR response, suggesting that these supraspinal systems directly or indirectly excite some of the same interneurons that convey the SUR effects to MG motoneurons. When using very low strength SUR stimuli, PT conditioning produced relatively pure facilitation of the SUR EPSPs but with larger SUr volleys, PT clearly facilitated both EPSPs and IPSPs. RN conditioning produced more parallel facilitation of SUR EPSPs and IPSPs. Supraspinal control of the polysynaptic pathway producing SUR EPSPs is of particular interest because of earlier evidence that this pathway is differentially distributed to motoneurons of fast twitch versus slow twitch MG motor units.

摘要

我们通过电刺激成年氯醛糖麻醉猫的腓肠外侧皮神经(SUR)中低阈值(小于3×阈强度)的远端肢体皮肤传入纤维,研究了在逆行鉴定的内侧腓肠肌(MG)α运动神经元中产生的突触后电位(PSP)的特征,以及对侧红核(RN)和锥体束(PT)的脊髓上调节刺激对SUR PSPs的影响。在大多数MG运动神经元中,电阈值小于1.5×阈强度的SUR传入纤维产生早期兴奋性突触后电位(EPSP),其最小中枢潜伏期约为2.0毫秒,这表明有一个具有两个中间神经元的三突触节段通路被激活。通过记录坐骨神经复合动作电位和脊髓背电位N1波的首次出现来确定,这种早期EPSP通常在刺激强度小于1.2×阈强度时即可检测到。抑制性突触后电位(IPSP)通常由强度仅略高(通常低至1.3×阈强度)的SUR群峰电位产生,其最小中枢潜伏期约为3.0毫秒(比最早的EPSP长约1.0毫秒),这表明有一个包含三个中间神经元的中枢通路。对RN和PT的重复刺激通常会使SUR反应中的EPSP和IPSP成分都得到易化,这表明这些脊髓上系统直接或间接兴奋了一些将SUR效应传递给MG运动神经元的相同中间神经元。当使用非常低强度的SUR刺激时,PT条件刺激对SUR EPSP产生相对纯粹的易化作用,但当SUR群峰电位较大时,PT明显易化了EPSP和IPSP。RN条件刺激对SUR EPSP和IPSP产生更平行的易化作用。由于早期证据表明该通路在快肌与慢肌MG运动单位的运动神经元中分布不同,所以对产生SUR EPSP的多突触通路的脊髓上控制尤为重要。

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