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Neuroglial modulation in peripheral sensory systems.

机译:周围感觉系统中的神经胶质调节。

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摘要

Glia are increasingly appreciated as active participants in central neural processing via calcium waves, electrical coupling, and even synaptic-like release of "neuro"-transmitters. In some sensory organs (e.g., retina, olfactory bulb), glia have been shown to interact with neurons in the same manner, although their role in perception has yet to be elucidated. In the organ of Corti, synapses occur between supporting cells and neurons. In one sensory organ, the Pacinian corpuscle (fine touch), glia have been shown to play just as important a role in sensory transduction as they do in neural processing in the brain, and the functional role is quite clear; the modified Schwann cells of the capsule are responsible for the rapid adaptation process of the PCs, integral to its function as a vibration detector. This complex glialeuronal relationship may be a recent evolutionary phenomenon and may account for much of the relative sophistication of vertebrate nervous systems.
机译:胶质细胞逐渐成为通过钙波,电耦合甚至“神经”递质类似突触释放的中枢神经处理的积极参与者。尽管尚未阐明它们在感知中的作用,但在某些感觉器官(例如,视网膜,嗅球)中,神经胶质已显示与神经元相互作用。在Corti的器官中,突触发生在支持细胞和神经元之间。在一种感觉器官,即Pacinian小体(精细接触)中,神经胶质已被证明在感觉传导中的作用与在大脑神经处理中一样重要,其功能作用十分明显。胶囊的改良雪旺氏细胞负责PC的快速适应过程,这是PC作为振动检测器不可或缺的功能。这种复杂的神经胶质/神经元关系可能是最近的进化现象,并且可能解释了脊椎动物神经系统的相对复杂性。

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