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来自II类传入纤维的反射通路中的腰中部神经元参与猫运动的证据。

Evidence that mid-lumbar neurones in reflex pathways from group II afferents are involved in locomotion in the cat.

作者信息

Edgley S A, Jankowska E, Shefchyk S

机构信息

Department of Physiology, University of Göteborg, Sweden.

出版信息

J Physiol. 1988 Sep;403:57-71. doi: 10.1113/jphysiol.1988.sp017238.

Abstract
  1. A group of interneurons in the mid-lumbar segments of the cat spinal cord which mediate disynaptic excitation or inhibition of motoneurones from group II muscle afferents have recently been described. To test the possibility that the activity of these interneurones is related to the activity in the neuronal networks which subserve locomotion we have investigated whether they are influenced by two procedures which can induce locomotion. These procedures were electrical stimulation within the cuneiform nucleus (the 'mesencephalic locomotor region') in anaesthetized preparations and systemic administration of 3,4-dihydroxyphenylalanine (DOPA) in decerebrate, spinalized, unanaesthetized preparations. The interneurones we have tested were located in the fourth lumbar (L4) segment and were excited by group II muscle afferents; more than half of them were antidromically activated from the hindlimb motor nuclei. 2. Stimuli applied in the cuneiform nucleus evoked excitatory postsynaptic potentials (EPSPs) in a high proportion of these interneurones. The stimuli also evoked distinct extracellular field potentials in the ventral horn of the L4 segment. The properties and latencies of both the intra- and extracellularly recorded potentials show that they were evoked disynaptically, via supraspinally located relay neurones and a fast-conducting descending tract. 3. Stimulation of the cortico- and rubrospinal tracts excited or inhibited some of the L4 neurones, often at latencies suggesting mono- or disynaptic coupling. The neurones which appeared to be monosynaptically excited from the cortico- and rubrospinal tracts tended to be located dorsal to the neurones which were activated from the cuneiform nucleus. 4. Systemic administration of DOPA depressed the responses evoked by stimulation of group II afferents of L4 interneurones which projected to motor nuclei. DOPA also depressed extracellular field potentials evoked by group II afferents in the intermediate zone and in the ventral horn (at the location of the interneurones) but hardly affected those in the dorsal horn. 5. By showing that both stimulation in the cuneiform nucleus and the administration of DOPA influence activity of L4 interneurones which are excited by group II afferents and which project to motor nuclei, the results of this study support the hypothesis that these neurones are in some way involved in locomotion. However, the opposing effects of DOPA administration and of stimulation in the cuneiform nucleus make the interpretation of their role in locomotion rather difficult before it is known to what extent they are active throughout the step cycle.
摘要
  1. 最近已经描述了猫脊髓腰中部节段中的一组中间神经元,它们介导来自II类肌肉传入纤维对运动神经元的双突触兴奋或抑制。为了检验这些中间神经元的活动是否与参与运动的神经网络活动有关,我们研究了它们是否受到两种可诱导运动的程序的影响。这些程序分别是对麻醉制剂的楔状核(“中脑运动区”)进行电刺激,以及对去大脑、脊髓横断、未麻醉的制剂全身给予3,4-二羟基苯丙氨酸(DOPA)。我们测试的中间神经元位于第四腰节(L4),并由II类肌肉传入纤维兴奋;其中一半以上可被来自后肢运动核的逆向激活。2. 在楔状核施加的刺激在这些中间神经元中很大一部分诱发了兴奋性突触后电位(EPSP)。这些刺激还在L4节段的腹角诱发了明显的细胞外场电位。细胞内和细胞外记录电位的特性和潜伏期表明,它们是通过位于脊髓上的中继神经元和快速传导的下行束双突触诱发的。3. 刺激皮质脊髓束和红核脊髓束可兴奋或抑制一些L4神经元,其潜伏期常提示单突触或双突触联系。似乎由皮质脊髓束和红核脊髓束单突触兴奋的神经元往往位于从楔状核激活的神经元的背侧。4. 全身给予DOPA可抑制L4中间神经元刺激II类传入纤维所诱发的反应,这些中间神经元投射至运动核。DOPA还抑制了II类传入纤维在中间带和腹角(中间神经元所在位置)诱发的细胞外场电位,但对背角的电位几乎没有影响。5. 本研究结果表明,楔状核刺激和DOPA给药均影响由II类传入纤维兴奋并投射至运动核的L4中间神经元的活动,支持了这些神经元在某种程度上参与运动的假说。然而,DOPA给药和楔状核刺激的相反作用使得在了解它们在整个步周期中的活跃程度之前,很难解释它们在运动中的作用。

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