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首页> 外文期刊>Neuromodulation: journal of the International Neuromodulation Society >Analgesic Effects of Noninvasive Brain Stimulation in Rodent Animal Models: A Systematic Review of Translational Findings
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Analgesic Effects of Noninvasive Brain Stimulation in Rodent Animal Models: A Systematic Review of Translational Findings

机译:啮齿动物模型中无创脑刺激的镇痛作用:转化结果的系统评价。

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Objectives: Noninvasive brain stimulation (NIBS) interventions have demonstrated promising results in the clinical treatment of pain, according to several preliminary trials, although the results have been mixed. The limitations of clinical research on NIBS are the insufficient understanding of its mechanisms of action, a lack of adequate safety data, and several disparities with regard to stimulation parameters, which have hindered the generalizability of such studies. Thus, experimental animal research that allows the use of more invasive interventions and creates additional control of independent variables and confounders is desirable. To this end, we systematically reviewed animal studies investigating the analgesic effects of NIBS. In addition, we also explored the investigation of NIBS in animal models of stroke as to compare these findings with NIBS animal pain research.Methods: Of 1916 articles that were found initially, we identified 15 studies (stroke and pain studies) per our eligibility criteria that used NIBS methods, such as transcranial direct current stimulation, paired associative stimulation, transcranial magnetic stimulation, and transcranial electrostimulation. We extracted the main outcomes on stroke and pain, as well as the methods and electrical parameters of each technique.Results: NIBS techniques are effective in alleviating pain. Similar beneficial clinical effects are observed in stroke. The main insights from these animal studies are the following: 1) combination of NIBS with analgesic drugs has a synergistic effect; 2) effects are dependent on the parameters of stimulation, and in fact, not necessarily the strongest stimulation parameter (i.e., the largest intensity of stimulation) is associated with the largest benefit; 3) pain studies show an overall good quality as indexed by Animals in Research: Reporting In Vivo Experiments guidelines of the reporting of animal experiments, but insufficient with regard to the reporting of safety data for brain stimulation; 4) these studies suggest that NIBS techniques have a primary effect on synaptic plasticity, but they also suggest other mechanisms of action such as via neurovascular modulation.Conclusions: We found a limited number of animal studies for both pain and stroke NIBS experimental research. There is a lack of safety data in animal studies in these two topics and results from these studies have not been yet fully tested and translated to human research. We discuss the challenges and limitations of translating experimental animal research on NIBS into clinical studies.
机译:目的:根据一些初步试验,无创性脑刺激(NIBS)干预在疼痛的临床治疗中已显示出令人鼓舞的结果,尽管结果好坏参半。关于NIBS的临床研究的局限性是对其作用机理的了解不足,缺乏足够的安全性数据以及刺激参数方面的若干差异,这些都阻碍了此类研究的推广。因此,需要允许使用更具侵入性的干预措施并创建对自变量和混杂因素的额外控制的实验动物研究。为此,我们系统地回顾了研究NIBS止痛作用的动物研究。此外,我们还探索了卒中动物模型中NIBS的研究,以将这些发现与NIBS动物疼痛研究进行比较。方法:在最初发现的1916篇文章中,我们根据入选标准确定了15项研究(中风和疼痛研究)他们使用NIBS方法,例如经颅直流电刺激,配对联想刺激,经颅磁刺激和经颅电刺激。我们提取了卒中和疼痛的主要结果,以及每种技术的方法和电学参数。结果:NIBS技术可有效缓解疼痛。在中风中观察到类似的有益临床效果。这些动物研究的主要见解如下:1)NIBS与止痛药联合使用具有协同作用; 2)效果取决于刺激的参数,实际上,不一定最强的刺激参数(即最大的刺激强度)与最大的益处相关; 3)疼痛研究显示出《动物研究》中报告的总体良好质量:动物实验报告的体内实验报告指南,但在脑刺激安全性数据报告方面不够; 4)这些研究表明,NIBS技术对突触可塑性起主要作用,但也暗示了其他作用机制,例如通过神经血管调节。结论:我们发现有限的动物研究涉及疼痛和中风NIBS实验研究。在这两个主题的动物研究中都缺乏安全性数据,这些研究的结果尚未经过充分测试,无法转化为人类研究。我们讨论了将NIBS实验动物研究转化为临床研究的挑战和局限性。

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