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Ia类肌梭传入纤维冲动对运动神经元的自生抑制

Autogenetic inhibition of motoneurones by impulses in group Ia muscle spindle afferents.

作者信息

Fetz E E, Jankowska E, Johannisson T, Lipski J

出版信息

J Physiol. 1979 Aug;293:173-95. doi: 10.1113/jphysiol.1979.sp012884.

Abstract
  1. Inhibitory post-synaptic potentials evoked by adequate stimulation of group Ia muscle spindle afferents of homonymous and synergistic muscles and by selective electrical stimulation of tendon organ afferents were analysed in motoneurones of triceps surae and plantaris. 2. Selective activation of Ia afferents was verified to occur with brief stretches of triceps surae and plantaris 35 micrometer or less in amplitude with an initial muscle tension of 5 N; stretches of 30--35 micrometer were estimated to activate 80--90% of Ia afferents in these muscles. Under the same conditions the lowest thresholds for group Ib tendon organ afferents were about 40 micrometer. 3. Stretches less than or equal to 30 micrometer evoked i.p.s.p.s in 80% of triceps surae and plantaris motoneurones; lowest thresholds for evoking i.p.s.p.s wef triceps surae and plantaris motoneurones; lowest thresholds for evoking i.p.s.p.s were 10 micrometer or less. However, such low thresholds for stretch-evoked i.p.s.p.s, lower than the thresholds for activation of Ib afferents, were found mainly in spinalized, unanaesthetized (after decerebration) or lightly anaesthetized animals. The latencies of these i.p.s.p.s indicated disynaptic and trisynaptic coupling between Ia afferents and motoneurones. The i.p.s.p.s were evoked (i) from the homonymous and synergistic muscles stretched together, (ii) from the homonymous muscles alone and (iii) from the synergistic muscles alone. 4. Control experiments showed that i.p.s.p.s could be evoked by stretches sub-threshold for discharging motoneurones, thus showing that those i.p.s.p.s were not mediated by Renshaw cells. The stretch-evoked i.p.s.p.s disappeared after sectioning the nerves from the corresponding muscles, further excluding their mediation by afferents other than group Ia afferents from thf stretched muscle. 5. In order to selectively activate tendon organ afferents, thresholds for excitation of Ia afferents by electrical stimuli were increased to a level above the threshold for Ib afferents by prolonged muscle vibration (Coppin, Jack & MacLennan, 1970). I.p.s.p.s evoked by stimuli near threshold for Ib afferents appeared with latencies indicating disynaptic coupling. Later (trisynaptic) components of Ib i.p.s.p.s required somewhat stronger stimuli. 6. Amplitudes of Ia i.p.s.p.s evoked by muscle stretches activating about 80% of muscle spindle afferents were compared with amplitudes of Ib i.p.s.p.s due to less than 50% of tendon organ afferents of the same muscles. The Ia i.p.s.p.s were much smaller (16--35%) than the Ib i.p.s.p.s. The amplitudes of such Ia and Ib i.p.s.p.s constituted about 10 and 25--66%, respectively, of the maximal i.p.s.p.s evoked by electrical stimulation of all group I afferents. 7. We conclude that inhibition of motoneurones may be evoked from Ia muscle spindle afferents from homonymous and synergistic muscles as well as from Ib tendon organ afferents...
摘要
  1. 在腓肠肌和跖肌的运动神经元中,分析了由同名肌和协同肌的Ia类肌梭传入纤维的适宜刺激以及腱器官传入纤维的选择性电刺激所诱发的抑制性突触后电位。2. 通过对腓肠肌和跖肌进行幅度为35微米或更小、初始肌肉张力为5牛的短暂拉伸,证实了Ia传入纤维的选择性激活;估计30 - 35微米的拉伸可激活这些肌肉中80 - 90%的Ia传入纤维。在相同条件下,Ib类腱器官传入纤维的最低阈值约为40微米。3. 小于或等于30微米的拉伸在80%的腓肠肌和跖肌运动神经元中诱发抑制性突触后电位;诱发抑制性突触后电位的最低阈值在腓肠肌和跖肌运动神经元中为10微米或更低。然而,这种拉伸诱发抑制性突触后电位的低阈值,低于Ib传入纤维的激活阈值,主要在脊髓横断、未麻醉(去大脑后)或轻度麻醉的动物中发现。这些抑制性突触后电位的潜伏期表明Ia传入纤维与运动神经元之间存在双突触和三突触联系。抑制性突触后电位由以下情况诱发:(i) 同时拉伸同名肌和协同肌,(ii) 仅拉伸同名肌,(iii) 仅拉伸协同肌。4. 对照实验表明,低于运动神经元放电阈值的拉伸可诱发抑制性突触后电位,这表明这些抑制性突触后电位不是由闰绍细胞介导的。切断相应肌肉的神经后,拉伸诱发的抑制性突触后电位消失,进一步排除了除拉伸肌肉的Ia类传入纤维之外的其他传入纤维介导这些电位的可能性。5. 为了选择性激活腱器官传入纤维,通过长时间肌肉振动(Coppin、Jack和MacLennan,1970)将电刺激诱发Ia传入纤维兴奋的阈值提高到高于Ib传入纤维的阈值水平。接近Ib传入纤维阈值的刺激所诱发的抑制性突触后电位出现的潜伏期表明存在双突触联系。Ib抑制性突触后电位的后期(三突触)成分需要更强一些的刺激。6. 将激活约80%肌梭传入纤维的肌肉拉伸所诱发的Ia抑制性突触后电位的幅度,与同一肌肉中不到50%的腱器官传入纤维所诱发的Ib抑制性突触后电位的幅度进行比较。Ia抑制性突触后电位比Ib抑制性突触后电位小得多(16 - 35%)。这种Ia和Ib抑制性突触后电位的幅度分别约占所有I类传入纤维电刺激所诱发的最大抑制性突触后电位的10%和25 - 66%。7. 我们得出结论,运动神经元的抑制可能由同名肌和协同肌的Ia肌梭传入纤维以及Ib腱器官传入纤维诱发……

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