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Properties and distribution of peripherally evoked presynaptic hyperpolarization in cat lumbar spinal cord

机译:猫腰脊髓周围诱发突触前超极化的特性和分布

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摘要

1. The action of peripheral nerve volleys on the polarization of presynaptic terminals of inactive sensory fibres in cat lumbar spinal cord has been investigated by recording (a) the dorsal root potential (DRP), (b) intracellular changes in polarization of single preterminal axons (PAD or PAH), and (c) changes in excitability of populations of preterminal axons.2. Presynaptic hyperpolarization (positive DRP-PAH) can be evoked by stimulation of muscle group III afferents as well as by volleys in cutaneous Aβ, Aδ and C afferents. These volleys can also produce presynaptic depolarization (negative DRP-PAD).3. The positive DRP is observed in the decerebrate state and increases in amplitude following spinalization.4. Picrotoxin blocks the positive DRP at the same dosages required to block the negative DRP. Test negative DRPs are depressed during a conditioning positive DRP. These results are used to support earlier suggestions that the positive DRP results from inhibition of interneurones mediating the negative DRP.5. Trains of group III stimuli at 20/sec evoke a steady positive DRP. Trains of the same intensity at 200/sec evoke a phasic negative DRP. This frequency dependence is observed for PAD and PAH in single sensory axons.6. The DRPs recorded from different dorsal root filaments in response to a given stimulus vary widely in the ratio of negative to positive DRP.7. Intracellular recording from single axons reveals that the same stimuli evoke widely varying ratios of PAD and PAH.8. Stimulation of FRA evokes PAH > PAD in PBST group I afferents, PAD > PAH in sural A fibres and intermediate effects in G-S group I units.9. It is suggested that activation of flexor reflex afferents may selectively potentiate the synaptic efficacy of large muscle afferents mediating the flexor reflex rather than large skin afferents or large afferents from extensor muscles.
机译:1.通过记录(a)背根电位(DRP),(b)单个前末端轴突极化的细胞内变化,研究了周围神经凌空对猫腰脊髓非活动性感觉纤维突触前末端极化的作用。 (PAD或PAH),以及(c)末端前轴突群体的兴奋性变化2。突触前超极化(阳性DRP-PAH)可通过刺激III类肌肉传入神经以及皮肤Aβ,Aδ和C传入神经的凌空诱发。这些齐射还可以产生突触前去极化(负DRP-PAD)。3。阳性DRP在无脑状态下观察到,并在脊柱化后振幅增加4。微毒素以阻断阴性DRP所需的相同剂量阻断阳性DRP。测试负DRP在调节正DRP期间被压低。这些结果用于支持较早的建议,即正DRP是由抑制介导负DRP的中间神经元产生的。5。 III组刺激的火车以20 / sec的速度唤起稳定的正DRP。强度相同的火车以200 / sec的速度触发相位负DRP。在单个感觉轴突中PAD和PAH观察到这种频率依赖性。6。响应给定刺激而从不同背根细丝记录的DRP,负DRP与正DRP之比差异很大。7。单轴突的细胞内记录表明,相同的刺激物引起PAD和PAH的比例差异很大。8。对FRA的刺激引起PBST I组传入的PAH> PAD,腓肠肌A纤维中PAD> PAH以及G-S I组的中间作用。9。提示屈肌反射传入的激活可以选择性地增强介导屈肌反射的大肌肉传入而不是来自伸肌的大皮肤传入或大传入的突触效力。

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