Noise or signal? Spontaneous activity of dorsal horn neurons: patterns and function in health and disease.

IF 2.9 4区 医学 Q2 PHYSIOLOGY
Javier Lucas-Romero, Ivan Rivera-Arconada, Jose Antonio Lopez-Garcia
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Abstract

Spontaneous activity refers to the firing of action potentials by neurons in the absence of external stimulation. Initially considered an artifact or "noise" in the nervous system, it is now recognized as a potential feature of neural function. Spontaneous activity has been observed in various brain areas, in experimental preparations from different animal species, and in live animals and humans using non-invasive imaging techniques. In this review, we specifically focus on the spontaneous activity of dorsal horn neurons of the spinal cord. We use a historical perspective to set the basis for a novel classification of the different patterns of spontaneous activity exhibited by dorsal horn neurons. Then we examine the origins of this activity and propose a model circuit to explain how the activity is generated and transmitted to the dorsal horn. Finally, we discuss possible roles of this activity during development and during signal processing under physiological conditions and pain states. By analyzing recent studies on the spontaneous activity of dorsal horn neurons, we aim to shed light on its significance in sensory processing. Understanding the different patterns of activity, the origins of this activity, and the potential roles it may play, will contribute to our knowledge of sensory mechanisms, including pain, to facilitate the modeling of spinal circuits and hopefully to explore novel strategies for pain treatment.

Abstract Image

噪音还是信号?背角神经元的自发活动:健康和疾病中的模式和功能。
自发活动指的是神经元在没有外部刺激的情况下发射动作电位。自发活动最初被认为是神经系统中的一种假象或 "噪音",现在则被认为是神经功能的一种潜在特征。自发活动已在不同的脑区、不同动物物种的实验制备物以及使用无创成像技术的活体动物和人类中被观察到。在这篇综述中,我们特别关注脊髓背角神经元的自发活动。我们从历史的角度出发,对脊髓背角神经元自发活动的不同模式进行了全新的分类。然后,我们研究了这种活动的起源,并提出了一个模型电路来解释这种活动是如何产生并传递到背角的。最后,我们讨论了这种活动在发育过程中以及在生理条件和疼痛状态下的信号处理过程中可能发挥的作用。通过分析最近对背角神经元自发活动的研究,我们旨在阐明其在感觉处理过程中的意义。了解这种活动的不同模式、起源及其可能发挥的作用,将有助于我们了解包括疼痛在内的感觉机制,促进脊髓回路建模,并有望探索出治疗疼痛的新策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
8.80
自引率
2.20%
发文量
121
审稿时长
4-8 weeks
期刊介绍: Pflügers Archiv European Journal of Physiology publishes those results of original research that are seen as advancing the physiological sciences, especially those providing mechanistic insights into physiological functions at the molecular and cellular level, and clearly conveying a physiological message. Submissions are encouraged that deal with the evaluation of molecular and cellular mechanisms of disease, ideally resulting in translational research. Purely descriptive papers covering applied physiology or clinical papers will be excluded. Papers on methodological topics will be considered if they contribute to the development of novel tools for further investigation of (patho)physiological mechanisms.
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