首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Putative cholinergic neurons of the pedunculopontine tegmental nucleus projecting to the superior colliculus consist of sensory responsive and unresponsive populations which are functionally distinct from other mesopontine neurons.
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Putative cholinergic neurons of the pedunculopontine tegmental nucleus projecting to the superior colliculus consist of sensory responsive and unresponsive populations which are functionally distinct from other mesopontine neurons.

机译:伸向上丘的足小脑弓形被盖核的假定胆碱能神经元由感觉上有反应的和无反应的群体组成,这些群体在功能上不同于其他中桥本神经元。

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We examined the sensory properties of putative cholinergic neurons of the pedunculopontine tegmental nucleus projecting to the superior colliculus. Projection neurons were identified by antidromic activation from the contralateral posterior superior colliculus; stimulation of the anterior half was essentially ineffective. Identified neurons fell into two groups, one with a somatosensory input (39%) and one without a sensory input. Somatosensory responsive projection neurons were low threshold and rapidly adapting. Receptive fields were contralateral (94%) and predominantly orofacial (57%). Sensory responsive and unresponsive projection neurons were intermingled within the pedunculopontine tegmental nucleus as identified histologically by reduced nicotinamide adenine dinucleotide phosphate diaphorase or acetylcholinesterase. The properties of neurons outside the nucleus differed significantly. They could not be activated antidromically from the superior colliculus; many had ipsi- or bilateral receptive fields (75%) and wide dynamic range or nociceptive response patterns (52%). The presence of two functionally distinct groups of projection neurons implies a dual or more complex modulation of tectal neurons by the pedunculopontine tegmental nucleus. The pedunculopontine tegmental nucleus has been implicated in a multiplicity of behaviors and, in particular, in rapid eye movement sleep and alerting or arousal functions. By virtue of its many connections with the basal ganglia, limbic system and reticular structures, the projection to the superior colliculus of two distinct groups may provide an important differentiating element of the tectal organization of orienting and spatial cognitive behavior.
机译:我们检查了推向上丘的小足弓形被盖核的假定胆碱能神经元的感觉特性。投射神经元通过对侧后上丘的反行激活来识别。前半部的刺激基本上无效。识别出的神经元分为两组,一组具有体感输入(39%),另一组没有感觉输入。体感反应性投射神经元阈值低且适应迅速。接受区域是对侧的(94%),主要是口面的(57%)。通过减少的烟酰胺腺嘌呤二核苷酸磷酸黄递酶或乙酰胆碱酯酶的组织学鉴定,感觉反应性和无反应性投射神经元混杂在足小腿骨被盖核内。核外神经元的性质差异很大。它们不能被上丘胶体抗激活地激活。许多人具有同侧或双侧感受野(75%)和宽动态范围或伤害反应模式(52%)。投射神经元的两个功能上不同的组的存在暗示了枕小脑桥骨被盖核对顶盖神经元的双重或更复杂的调节。人脚桥骨被盖核与多种行为有关,特别是与快速眼动睡眠和警报或唤醒功能有关。由于其与基底神经节,边缘系统和网状结构的许多联系,向两个不同组的上丘的投射可提供定向和空间认知行为的顶盖组织的重要区分元素。

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