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基于材料的被动交互实现电容神经调节:在帕金森病运动功能改善中的疗效。

Capacitive Neuromodulation via Material-Based Passive Interaction: Efficacy in Motor Function Improvement in Parkinson Disease.

机构信息

Politecnico di Milano, Department of Mechanical Engineering, Via La Masa 1, 20156 Milan, Italy.

ASL Taranto, Viale Virgilio, 31, 74121 Taranto, Italy.

出版信息

Biosensors (Basel). 2024 Jul 20;14(7):354. doi: 10.3390/bios14070354.

Abstract

A non-invasive and non-pharmacological approach is evaluated for the proprioceptive and postural improvement of PD subjects. The authors evaluated the effectiveness of a class I medical device according to EU regulation 745/2017 designed to develop the mechanism of action based on the modulation of action potentials, which occurs in prevalent pathways of the afferent peripheral nervous system efferent in subjects with spasticity. The present observational study, structured in a double-blind randomized manner, therefore, had the main aim of evaluating the ability of the device to improve on the motor and proprioceptive function of PD patients. This study was based on the instrumented gait analysis performed according to the Timed Up and Go (TUG) test procedure, as well as using a fall risk assessment in accordance with the Berg Balance Scale (BBS) procedures. This study involved 25 participants in the active group (no placebo) and 25 in the non-active group (placebo), the latter to whom non-functional devices were applied, but in every respect identical to the functional devices applied to the 25 patients in the no placebo group. Data analysis was conducted using statistical methodologies for statistics, the statistical significance of the results for the observed samples and the interdependence between the measured variables. The study of the mechanism of action based on the remodulation of action potentials was preliminary conducted through numerical modeling of the Hodgkin-Huxley axon, modified by introducing the influence of the capacitive device applied in clinical tests into the validated model to target the dielectric properties of materials constituting the passive sensor. The use of the neuromodulation device promises observable improvements in motor function among PD patients, including increased limb mobility and greater postural stability.

摘要

评估一种非侵入性和非药物的方法,以改善 PD 患者的本体感觉和姿势。作者根据欧盟法规 745/2017 评估了一种 I 类医疗设备的有效性,该法规旨在根据动作电位的调制来设计作用机制,这发生在有痉挛的外周传出神经系统传入途径的常见途径中。因此,本观察性研究采用双盲随机方式,主要目的是评估该设备改善 PD 患者运动和本体感觉功能的能力。该研究基于根据定时起立行走(TUG)测试程序进行的仪器步态分析,以及根据 Berg 平衡量表(BBS)程序进行的跌倒风险评估。该研究涉及 25 名主动组(无安慰剂)和 25 名非主动组(安慰剂)参与者,后者应用了非功能性设备,但在各方面都与应用于无安慰剂组 25 名患者的功能性设备相同。数据分析采用统计方法进行统计学分析,对观察样本的结果进行统计显著性检验,以及对测量变量之间的相关性进行检验。基于动作电位的重新调制的作用机制研究是通过对 Hodgkin-Huxley 轴突进行数值建模初步进行的,该模型通过在验证模型中引入应用于临床测试的电容设备的影响,针对构成被动传感器的材料的介电特性进行了修改。使用神经调节设备有望改善 PD 患者的运动功能,包括增加肢体活动度和更大的姿势稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2653/11275089/895b78146b72/biosensors-14-00354-g001.jpg

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