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Differential modulation of primary afferent depolarization of segmental and ascending intraspinal collaterals of single muscle afferents in the cat spinal cord

机译:猫脊髓中单个肌肉传入的节段性和上升性脊柱侧支原发性传入去极化的差分调制

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摘要

We examined primary afferent depolarization (PAD) in the anesthetized cat elicited in 109 pairs of intraspinal collaterals of single group I afferents from the gastrocnemius nerve, one of the pair ending in the L3 segment, around the Clarke’s column nuclei, and the other in the L6 segment within the intermediate zone. Tests for refractoriness were made to assess whether the responses produced by intraspinal stimulation in the L3 and L6 segments were due to activation of collaterals of the same afferent fiber. PAD in each collateral was estimated by independent computer-controlled measurement of the intraspinal current required to maintain a constant probability of antidromic firing. In most fibers, stimulation of the ipsilateral posterior biceps and semitendinosus (PBSt) nerve with trains of pulses maximal for group I afferents had a qualitatively similar effect but produced a larger PAD in the L6 than in the L3 collaterals. Stimulation of cutaneous nerves (sural and superficial peroneus) with single pulses and of the posterior articular nerve, the ipsilateral reticular formation, nucleus raphe magnus and contralateral motor cortex with trains of pulses often had qualitatively different effects. They could produce PAD and/or facilitate the PBSt-induced PAD in one collateral, and produce PAH and/or inhibit the PAD in the other collateral. These patterns could be changed in a differential manner by sensory or supraspinal conditioning stimulation. In summary, the present investigation suggests that the segmental and ascending collaterals of individual afferents are not fixed routes for information transmission, but parts of dynamic systems in which information transmitted to segmental reflex pathways and to Clarke’s column neurons by common sources can be decoupled by sensory and descending inputs and funneled to specific targets according to the motor tasks to be performed.
机译:我们检查了109对成对的I型单根I脊柱侧支从腓肠神经传入的麻醉猫中的初级传入去极化(PAD),其中一对在L3段结束,在Clarke柱状核周围,另一对终止于L3段。中间区域内的L6段。进行耐火性测试以评估L3和L6节段中椎管内刺激产生的反应是否是由于同一传入纤维的侧支的激活引起的。通过独立的计算机控制的椎管内电流的测量来估算每个侧支中的PAD,以维持恒定的抗drodrim放电概率。在大多数纤维中,I组传入脉冲的刺激最大,对同侧后二头肌和半腱肌(PBSt)神经的刺激在质量上相似,但在L6中产生的PAD大于在L3侧支中。单脉冲刺激皮肤神经(腓骨和腓浅神经)和后关节神经,同侧网状组织,核裂缘大核和对侧运动皮层的脉冲序列通常在质量上有不同的影响。它们可以在一侧产生PAD和/或促进PBSt诱导的PAD,而在另一侧产生PAH和/或抑制PAD。这些模式可以通过感觉或脊柱上调理刺激以不同的方式改变。总而言之,目前的研究表明,个体传入和传代的分段和上升分支都不是信息传递的固定路径,而是动态系统的一部分,在该系统中,通过共同来源传递给分段反射路径和克拉克柱神经元的信息可以通过感觉分离。输入和降序输入,并根据要执行的电机任务分配到特定目标。

著录项

  • 来源
    《Experimental Brain Research》 |2004年第3期|377-391|共15页
  • 作者单位

    Department of Physiology Biophysics and Neurosciences Centro de Investigación y de Estudios Avanzados del IPNDepartment of Physiology Biophysics and Neurosciences Centro de Investigación y de Estudios Avanzados Av. Instituto Politécnico Nacional 2508;

    Department of Physiology Biophysics and Neurosciences Centro de Investigación y de Estudios Avanzados del IPNEscuela Superior de Medicina Instituto Politécnico Nacional;

    Department of Physiology Biophysics and Neurosciences Centro de Investigación y de Estudios Avanzados del IPNDepartment of Physiology Biophysics and Neurosciences Centro de Investigación y de Estudios Avanzados Av. Instituto Politécnico Nacional 2508;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Primary afferent depolarization; Presynaptic inhibition; Muscle afferents; Spinal reflexes;

    机译:原发性去极化;突触前抑制;肌肉传入;脊髓反射;

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