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猫脊髓中Ia类传入纤维的去极化产生所涉及的特异性和非特异性机制。

Specific and nonspecific mechanisms involved in generation of PAD of group Ia afferents in cat spinal cord.

作者信息

Jiménez I, Rudomín P, Solodkin M, Vyklický L

出版信息

J Neurophysiol. 1984 Nov;52(5):921-40. doi: 10.1152/jn.1984.52.5.921.

Abstract

In the spinal cord of the anesthetized cat, we measured the changes in extracellular concentration of potassium ions [K+]e and the negative DC shifts produced by stimulation of muscle, cutaneous and mixed afferent nerves, together with alterations in the threshold of single group Ia fibers that were tested at the same site as the potassium measurements. This approach provided information on the extent to which the excitability changes of single Ia-fibers can be correlated with the changes in [K+]e occurring at the same site. Stimulation of the tibial (TIB) nerve and of the cutaneous sural (SU), and superficial peroneous (SP) nerve (100-Hz trains lasting 30-60 s) with stimulus strengths of 10-15 times threshold increased the concentration of [K+]e in the dorsal horn by 2-5 mmol/l above the resting value of 3 mmol/l. This was in clear contrast with the very small [K+]e increases produced at the same site during stimulation of muscle nerves, such as the posterior biceps and semitendinosus (PBSt), gastrocnemius soleus (GS), and deep peroneus (DP), which were generally smaller than 0.25 mmol/l. Stimulation of the PBSt and GS muscle nerves did produce small, but clear, increases of [K+]e (up to 0.3 mmol/l) in the region of the intermediate nucleus, where these fibers synapse with second order cells. These changes were nevertheless smaller than those produced at the same site by stimulation of the TIB, SU, and SP nerves. The peak amplitudes of the [K+]e transients produced by long-lasting 100-Hz trains applied to cutaneous and/or to muscle nerves showed a linear relationship with the amplitudes of the slow negative DC shifts, which were simultaneously recorded from the NaCl barrel of the potassium electrode assembly. Stimulus trains (100 Hz) applied to group I muscle afferents (PBSt and DP) very effectively reduced the threshold for intraspinal activation of individual group I GS fibers but produced negligible negative DC shifts at the same site. On the other hand, 100-Hz stimulus trains applied to the SU and SP nerves produced large negative DC shifts, even with low-stimulus strengths (2 X T, where T is threshold), but had much smaller effects on the threshold of group Ia GS fibers. Increasing the intensity of the stimuli applied to cutaneous and mixed nerves above 2 X T strength further reduced the threshold of the Ia-fibers.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

在麻醉猫的脊髓中,我们测量了细胞外钾离子浓度[K+]e的变化以及刺激肌肉、皮肤和混合传入神经所产生的负向直流偏移,同时还测量了在与钾离子测量相同部位测试的单根Ia类纤维阈值的变化。这种方法提供了关于单根Ia类纤维兴奋性变化与同一部位[K+]e变化之间关联程度的信息。以高于阈值10 - 15倍的刺激强度刺激胫神经(TIB)、腓肠皮神经(SU)和腓浅神经(SP)(100Hz串刺激持续30 - 60秒),使背角处的[K+]e浓度比3mmol/l的静息值升高2 - 5mmol/l。这与刺激肌肉神经(如肱二头肌和半腱肌(PBSt)、腓肠肌比目鱼肌(GS)和腓深神经(DP))时在同一部位所产生的非常小的[K+]e升高形成鲜明对比,后者通常小于0.25mmol/l。刺激PBSt和GS肌肉神经确实在中间核区域产生了小而明显的[K+]e升高(高达0.3mmol/l),这些纤维在该区域与二级细胞形成突触。然而,这些变化仍小于刺激TIB、SU和SP神经在同一部位所产生的变化。施加于皮肤和/或肌肉神经的持续100Hz串刺激所产生的[K+]e瞬变的峰值幅度与从钾电极组件的NaCl槽中同时记录到的缓慢负向直流偏移的幅度呈线性关系。施加于I类肌肉传入纤维(PBSt和DP)的100Hz串刺激非常有效地降低了单根I类GS纤维脊髓内激活的阈值,但在同一部位产生的负向直流偏移可忽略不计。另一方面,施加于SU和SP神经的100Hz串刺激即使在低刺激强度(2×T,其中T为阈值)下也会产生大的负向直流偏移,但对Ia类GS纤维的阈值影响要小得多。将施加于皮肤和混合神经的刺激强度增加到高于2×T会进一步降低Ia类纤维的阈值。(摘要截于400字)

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