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疼痛对人类皮质稳态可塑性的影响:一项系统综述。

Effects of pain on cortical homeostatic plasticity in humans: a systematic review.

作者信息

Zolezzi Daniela M, Larsen Dennis B, McPhee Megan, Graven-Nielsen Thomas

机构信息

Center for Neuroplasticity and Pain (CNAP), Department of Health Science and Technology, Aalborg University, Aalborg, Denmark.

出版信息

Pain Rep. 2024 Mar 4;9(2):e1141. doi: 10.1097/PR9.0000000000001141. eCollection 2024 Apr.

Abstract

Homeostatic plasticity (HP) is a negative feedback mechanism that prevents excessive facilitation or depression of cortical excitability (CE). Cortical HP responses in humans have been investigated by using 2 blocks of noninvasive brain stimulation with a no-stimulation block in between. A healthy HP response is characterized by reduced CE after 2 excitatory stimulation blocks and increased CE when using inhibitory stimulation. Conversely, impaired HP responses have been demonstrated in experimental and chronic pain conditions. Therefore, this systematic review aimed to provide an overview of the effect of pain on cortical HP in humans. Scopus, Embase, and PubMed were searched from inception until November 20, 2023. The included studies (1) compared experimental or clinical pain conditions with healthy controls, (2) induced HP using 2 blocks of stimulation with a no-stimulation interval, and (3) evaluated CE measures such as motor-evoked potentials. Four studies were included, consisting of 5 experiments and 146 participants, of whom 63 were patients with chronic pain and 48 were subjected to an experimental pain model. This systematic review found support for an HP impairment in pain compared with that in pain-free states, reflected by a lack of CE reduction after excitatory-excitatory HP induction over the primary motor cortex. Inhibitory-inhibitory HP induction did not produce a consistent HP response across studies, independent of pain or pain-free states. Standardization of HP induction protocols and outcome calculations is needed to ensure reproducibility and study comparison. Future HP studies may consider investigating sensory domains including nociception, which would further our understanding of abnormal HP regulation in pain conditions.

摘要

稳态可塑性(HP)是一种负反馈机制,可防止皮质兴奋性(CE)过度增强或抑制。通过使用两组非侵入性脑刺激并在其间设置无刺激组,对人类的皮质HP反应进行了研究。健康的HP反应表现为在两组兴奋性刺激后CE降低,而在使用抑制性刺激时CE升高。相反,在实验性和慢性疼痛条件下已证实存在HP反应受损的情况。因此,本系统评价旨在概述疼痛对人类皮质HP的影响。检索了Scopus、Embase和PubMed数据库,检索时间从建库至2023年11月20日。纳入的研究(1)将实验性或临床疼痛状况与健康对照进行比较,(2)使用两组有无刺激间隔的刺激来诱导HP,(3)评估诸如运动诱发电位等CE指标。纳入了四项研究,包括5项实验和146名参与者,其中63名是慢性疼痛患者,48名接受了实验性疼痛模型。本系统评价发现,与无痛状态相比,疼痛状态下存在HP受损的情况,这表现为在对初级运动皮层进行兴奋性-兴奋性HP诱导后CE没有降低。在各项研究中,抑制性-抑制性HP诱导并未产生一致的HP反应,无论处于疼痛状态还是无痛状态。需要对HP诱导方案和结果计算进行标准化,以确保可重复性和研究间的比较。未来的HP研究可考虑研究包括伤害感受在内的感觉领域,这将增进我们对疼痛状态下异常HP调节的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/99c4/10914232/1645cefa060d/painreports-9-e1141-g001.jpg

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