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Effects of Selective Deafferentation on the Discharge Characteristics of Medial Rectus Motoneurons

机译:选择性脱除花粉对内侧直肌运动神经元放电特性的影响

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摘要

Medial rectus motoneurons receive two main pontine inputs: abducens internuclear neurons, whose axons course through the medial longitudinal fasciculus (MLF), and neurons in the lateral vestibular nucleus, whose axons project through the ascending tract of Deiters (ATD). Abducens internuclear neurons are responsible for conjugate gaze in the horizontal plane, whereas ATD neurons provide medial rectus motoneurons with a vestibular input comprising mainly head velocity. To reveal the relative contribution of each input to the oculomotor physiology, single-unit recordings from medial rectus motoneurons were obtained in the control situation and after selective deafferentation from cats with unilateral transection of either the MLF or the ATD. Both MLF and ATD transection produced similar short-term alterations in medial rectus motoneuron firing pattern, which were more drastic in MLF of animals. However, long-term recordings revealed important differences between the two types of lesion. Thus, while the effects of the MLF section were permanent, 2 months after ATD lesioning all motoneuronal firing parameters were similar to the control. These findings indicated a more relevant role of the MLF pathway in driving motoneuronal firing and evidenced compensatory mechanisms following the ATD lesion. Confocal immunocytochemistry revealed that MLF transection produced also a higher loss of synaptic boutons, mainly at the dendritic level. Moreover, 2 months after ATD transection, we observed an increase in synaptic coverage around motoneuron cell bodies compared with short-term data, which is indicative of a synaptogenic compensatory mechanism of the abducens internuclear pathway that could lead to the observed firing and morphological recovery.>SIGNIFICANCE STATEMENT Eye movements rely on multiple neuronal circuits for appropriate performance. The abducens internuclear pathway through the medial longitudinal fascicle (MLF) and the vestibular neurons through the ascending tract of Deiters (ATD) are a dual system that supports the firing of medial rectus motoneurons. We report the effect of sectioning the MLF or the ATD pathway on the firing of medial rectus motoneurons, as well as the plastic mechanisms by which one input compensates for the lack of the other. This work shows that while the effects of MLF transection are permanent, the ATD section produces transitory effects. A mechanism based on axonal sprouting and occupancy of the vacant synaptic space due to deafferentation is the base for the mechanism of compensation on the medial rectus motoneuron.
机译:内侧直肌运动神经元接受两个主要的桥脑输入:外展核内神经元,其轴突穿过内侧纵束(MLF),以及前庭外侧核中的神经元,其轴突穿过Deiters(ATD)的上升道。外展核内神经元负责水平面中的共轭凝视,而ATD神经元则为内侧直肌运动神经元提供主要包括头部速度的前庭输入。为了揭示每个输入对动眼生理的相对贡献,在控制情况下以及从具有MLF或ATD单侧横断的猫选择性脱除咖啡因后,获得了来自内侧直肌运动神经元的单单位记录。 MLF和ATD横断均产生类似的短期直肌运动神经元放电模式改变,这在动物的MLF中更为剧烈。但是,长期记录显示两种类型的病变之间存在重要差异。因此,尽管MLF切片的效果是永久性的,但ATD损伤后2个月,所有的运动神经元放电参数均与对照组相似。这些发现表明,MLF途径在驱动单动性神经元放电方面具有更重要的作用,并在ATD病变后证实了补偿机制。共聚焦免疫细胞化学显示,MLF横切也产生了较高的突触钮扣损失,主要在树突状水平。此外,在ATD横切后2个月,我们观察到与短期数据相比,运动神经元细胞体周围突触覆盖率增加,这表明外展核通路之间的突触补偿机制可能导致观察到的放电和形态恢复。 >重要声明:眼球运动依赖于多个神经元回路才能发挥适当的性能。穿过内侧纵束(MLF)的外展核通路和穿过Deiters升管(ATD)的前庭神经元是支持双侧直肌运动神经元放电的双重系统。我们报告了切片MLF或ATD通路对内侧直肌运动神经元放电的影响,以及一种输入补偿另一输入缺失的塑性机制。这项工作表明,尽管MLF横断的影响是永久性的,但ATD断面却会产生短暂的影响。基于轴突出芽和由于脱除脱果皮而占据突触空位的机制是补偿运动神经内侧直肌的机制的基础。

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