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射频电不对称输送器(REAC)对运动障碍的影响:一项综合综述。

Effects of the radio electric asymmetric conveyer (REAC) on motor disorders: An integrative review.

作者信息

Machado Vinícius Gomes, Brun Ana Beatriz Sorgenfrei, Manffra Elisangela Ferretti

机构信息

Health Technology Graduate Program, Pontifícia Universidade Católica do Paraná, Curitiba, Brazil.

Physiotherapy Under-Graduate Program, Pontifícia Universidade Católica do Paraná, Curitiba, Brazil.

出版信息

Front Med Technol. 2023 Feb 27;5:1122245. doi: 10.3389/fmedt.2023.1122245. eCollection 2023.

Abstract

INTRODUCTION

The radio electric asymmetric conveyer (REAC) is a technology that has the purpose of restoring the cellular polarity triggering the rebalancing of the endogenous bioelectric field, which considering the neurological dysfunctions, affects the neural communication mechanisms. The studies published so far show that the REAC neuromodulation technology has positive effects in treating these dysfunctions, with the principles of endogenous bioelectricity as a basis to achieve these effects.

OBJECTIVES

This study aims to review the literature that explored the effects of REAC protocols on motor control and to identify which mechanisms would be involved.

MATERIALS AND METHODS

This integrative review considered studies that used REAC as a therapeutic intervention directed at human motor control and experimental research with animals that applied REAC to obtain effects related to motor behavior.

RESULTS

Ten articles were included, eight clinical and two experimental studies. The clinical studies used the neuro postural optimization (NPO) protocol in 473 patients, of which 53 were healthy subjects, 91 were Alzheimer's disease patients, 128 were patients with atypical swallowing, 12 subjects with neurological diseases, and 189 were without the specification of disease. The experimental studies used the antalgic neuromodulation and neurodegeneration protocols in animal models.

CONCLUSION

The information integrated in this review made it possible to consider REAC technology a promising resource for treating motor control dysfunctions. It is possible to infer that the technology promotes functional optimization of neuronal circuits that may be related to more efficient strategies to perform motor tasks.

摘要

引言

射频电不对称输送器(REAC)是一项旨在恢复细胞极性、触发内源性生物电场重新平衡的技术,鉴于神经功能障碍,这种内源性生物电场会影响神经通讯机制。迄今为止发表的研究表明,REAC神经调节技术在治疗这些功能障碍方面具有积极效果,是以内源性生物电原理为基础来实现这些效果的。

目的

本研究旨在回顾探索REAC方案对运动控制影响的文献,并确定其中涉及哪些机制。

材料与方法

本整合性综述纳入了将REAC用作针对人类运动控制的治疗干预措施的研究,以及对动物应用REAC以获得与运动行为相关效果的实验研究。

结果

共纳入10篇文章,其中8篇临床研究和2篇实验研究。临床研究对473名患者使用了神经姿势优化(NPO)方案,其中53名是健康受试者,91名是阿尔茨海默病患者,128名是非典型吞咽患者,12名是神经系统疾病患者,189名未明确疾病类型。实验研究在动物模型中使用了镇痛神经调节和神经退行性变方案。

结论

本综述整合的信息使我们有可能认为REAC技术是治疗运动控制功能障碍的一种有前景的资源。可以推断,该技术促进了神经元回路的功能优化,这可能与执行运动任务的更有效策略有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc2d/10009233/bfb7fd87ef86/fmedt-05-1122245-g001.jpg

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