Department of Physiology and Neuroscience, Sahlgrenska Academy, University of Gothenburg, 405 30 Göteborg, Sweden.
Eur J Neurosci. 2010 Sep;32(6):881-93. doi: 10.1111/j.1460-9568.2010.07354.x. Epub 2010 Aug 16.
A first step towards understanding the operation of a neural network is identification of the populations of neurons that contribute to it. Our aim here is to reassess the basis for subdivision of adult mammalian spinal interneurons that mediate reflex actions from tendon organs (group Ib afferents) and muscle spindle secondary endings (group II afferents) into separate populations. Re-examining the existing experimental data, we find no compelling reasons to consider intermediate zone interneurons with input from group Ib afferents to be distinct from those co-excited by group II afferents. Similar patterns of distributed input have been found in subpopulations that project ipsilaterally, contralaterally or bilaterally, and in both excitatory and inhibitory interneurons; differences in input from group I and II afferents to individual interneurons showed intra- rather than inter-population variation. Patterns of reflex actions evoked from group Ib and II afferents and task-dependent changes in these actions, e.g. during locomotion, may likewise be compatible with mediation by premotor interneurons integrating information from both group I and II afferents. Pathological changes after injuries of the central nervous system in humans and the lineage of different subclasses of embryonic interneurons may therefore be analyzed without need to consider subdivision of adult intermediate zone interneurons into subpopulations with group Ib or group II input. We propose renaming these neurons 'group I/II interneurons'.
了解神经网络运作的第一步是确定参与其中的神经元群体。我们的目的是重新评估将介导来自腱器官(Ib 类传入纤维)和肌梭次级末梢(II 类传入纤维)反射活动的成年哺乳动物脊髓中间神经元细分的基础。重新检查现有的实验数据,我们没有充分的理由认为接受 Ib 类传入纤维输入的中间区中间神经元与受 II 类传入纤维共同兴奋的中间神经元不同。在投射到同侧、对侧或双侧的亚群中,以及在兴奋性和抑制性中间神经元中,都发现了具有分布式输入的相似模式;个体中间神经元接受来自 I 组和 II 组传入纤维的输入差异表现为种群内差异,而不是种群间差异。来自 Ib 和 II 类传入纤维的反射活动模式以及这些活动的任务依赖性变化(例如在运动过程中)同样可以与来自 Ib 和 II 类传入纤维的信息整合的运动前中间神经元介导相兼容。因此,在人类中枢神经系统损伤后的病理变化以及不同胚胎中间神经元子类的谱系可以在无需考虑将成年中间区中间神经元细分为具有 Ib 或 II 类输入的亚群的情况下进行分析。我们建议将这些神经元重新命名为“Group I/II 中间神经元”。