首页> 美国卫生研究院文献>The Journal of Physiology >The same interneurones mediate inhibition of dorsal spinocerebellar tract cells and lumbar motoneurones in the cat.
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The same interneurones mediate inhibition of dorsal spinocerebellar tract cells and lumbar motoneurones in the cat.

机译:相同的中间神经元在猫中介导对脊髓小脑束细胞和腰部运动神经元的抑制。

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摘要

The aim of the study was to investigate whether inhibition of dorsal spinocerebellar tract (d.s.c.t.) cells evoked from group I afferents is mediated by the same interneurones which mediate the non-reciprocal inhibition of hind-limb motoneurones. The origin of inhibition of d.s.c.t. cells from group I afferents was compared in intact preparations, after lesions of the dorsal funiculi (when it could only be mediated by lower lumbar interneurones) and after lesions of the lateral and ventral funiculi (when it would be expected to be evoked by upper lumbar interneurones). In all three preparations extensors were the most common source of inhibition, as in motoneurones. Lower lumbar interneurones inhibiting d.s.c.t. cells were found to be co-excited by group I (Ia and/or Ib) and cutaneous and joint afferents, and by rubrospinal tract fibres, as are interneurones mediating inhibition of motoneurones. Co-excitation by group I and rubrospinal fibres was also found for upper lumbar interneurones. I.p.s.p.s were evoked in hind-limb motoneurones from within Clarke's column in cats with the dorsal funiculi cut between L4 and L5 segments; they were evoked at thresholds as low as 2 microA, i.e. by stimuli with very local actions. The latencies of these i.p.s.p.s were short enough to allow them to be evoked monosynaptically via axonal branches of the same interneurones which projected to Clarke's column. Correspondingly, i.p.s.p.s were evoked in d.s.c.t. cells from within motor nuclei in L7 segments; they were evoked at similarly low thresholds and with similar latencies. In confirmation of previous reports i.p.s.p.s of Ia origin evoked in d.s.c.t. cells were not found to be depressed by Renshaw cells, which excludes their mediation by interneurones responsible for Ia reciprocal inhibition. The study leads to the conclusion that the inhibition of d.s.c.t. cells from group I afferents is, at least in part, collateral to the non-reciprocal inhibition of lumbar motoneurones.
机译:这项研究的目的是研究从第I组传入的脊髓小脑背侧(d.s.c.t.)细胞的抑制是否由相同的中间神经元介导,该中间神经元介导对后肢运动神经元的非交互抑制。抑制d.s.c.t.在完整的制剂中比较了第一组传入细胞的细胞,在背侧真菌病灶发生后(只能由下腰椎间神经节介导),在外侧和腹侧真菌病灶发生后(预期是上腰椎引起)间神经元)。与运动神经元一样,在所有三种制剂中,伸肌是最常见的抑制来源。下腰椎间神经节抑制d.s.c.t.发现细胞与组I(Ia和/或Ib),皮肤和关节传入神经,以及交感神经束纤维共同激发,中间神经元介导对运动神经元的抑制。上腰椎间神经元也发现有第一组和红松纤维共同激发。在猫的Clarke柱内诱发后肢运动神经元腹腔积液,其背侧cut突在L4和L5段之间切开。它们在低至2 microA的阈值下被诱发,即受到非常局部作用的刺激。这些i.p.s.p.s的潜伏期短到足以让它们通过投射到Clarke柱上的相同神经元的轴突分支被单突触诱发。相应地,在d.s.c.t.中引起了i.p.s.p.s.来自L7节段运动核内的细胞;他们被认为具有相似的低阈值和相似的潜伏期。为了确认以前的报告,在d.s.c.t.中引起了Ia起源的i.p.s.p.s。没有发现Renshaw细胞抑制了这些细胞的生长,Renshaw细胞排除了它们受到负责Ia相互抑制的中间神经元的介导。该研究得出的结论是抑制d.s.c.t.来自第I组传入细胞的细胞至少部分与对腰运动神经元的非交互抑制有关。

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