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节律性丘脑-皮层信息流在周围神经性疼痛状态下的动力学变化。

Dynamics of Circadian Thalamocortical Flow of Information during a Peripheral Neuropathic Pain Condition.

机构信息

Departamento de Biologia Experimental, Faculdade de Medicina, Universidade do Porto Porto, Portugal.

出版信息

Front Integr Neurosci. 2011 Aug 23;5:43. doi: 10.3389/fnint.2011.00043. eCollection 2011.

Abstract

It is known that the thalamocortical loop plays a crucial role in the encoding of sensory-discriminative features of painful stimuli. However, only a few studies have addressed the changes in thalamocortical dynamics that may occur after the onset of chronic pain. Our goal was to evaluate how the induction of chronic neuropathic pain affected the flow of information within the thalamocortical loop throughout the brain states of the sleep-wake cycle. To address this issue we recorded local field potentials (LFPs) - both before and after the establishment of neuropathic pain in awake freely moving adult rats chronically implanted with arrays of multielectrodes in the lateral thalamus and primary somatosensory cortex. Our results show that the neuropathic injury induced changes in the number of wake and slow-wave-sleep (SWS) state episodes, and especially in the total number of transitions between brain states. Moreover, partial directed coherence - analysis revealed that the amount of information flow between cortex and thalamus in neuropathic animals decreased significantly, indicating that the overall thalamic activity had less weight over the cortical activity. However, thalamocortical LFPs displayed higher phase-locking during awake and SWS episodes after the nerve lesion, suggesting faster transmission of relevant information along the thalamocortical loop. The observed changes are in agreement with the hypothesis of thalamic dysfunction after the onset of chronic pain, and may result from diminished inhibitory effect of the primary somatosensory cortex over the lateral thalamus.

摘要

已知丘脑皮质环路在编码疼痛刺激的感觉辨别特征方面起着至关重要的作用。然而,只有少数研究探讨了慢性疼痛发作后可能发生的丘脑皮质动力学变化。我们的目标是评估慢性神经性疼痛的诱导如何影响整个睡眠-觉醒周期的脑状态下丘脑皮质环路内的信息流动。为了解决这个问题,我们在清醒、自由活动的成年大鼠中记录了局部场电位 (LFPs),这些大鼠在慢性植入外侧丘脑和初级体感皮层的多电极阵列后建立了神经性疼痛。我们的结果表明,神经性损伤导致清醒和慢波睡眠 (SWS) 状态发作次数的变化,特别是在脑状态之间的总转换次数方面。此外,部分定向相干分析显示,神经性动物皮质和丘脑之间的信息流减少,表明整体丘脑活动对皮质活动的权重降低。然而,丘脑皮质 LFPs 在神经损伤后清醒和 SWS 期显示出更高的相位锁定,表明沿着丘脑皮质环路更快地传输相关信息。观察到的变化与慢性疼痛发作后丘脑功能障碍的假设一致,并且可能是由于初级体感皮层对外侧丘脑的抑制作用减弱所致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a19a/3188809/e60524d3c386/fnint-05-00043-g001.jpg

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