{"title":"通过前庭刺激找到平衡","authors":"Ruth McLaren","doi":"10.24135/rangahau-aranga.v2i3.176","DOIUrl":null,"url":null,"abstract":"Weakening of the vestibular system through disease or aging leads to imbalance, restricted mobility, and falls (Hain et al., 2018). Vestibular weakness affects one-third of people over the age of 40, and 85% of those over 80 years (Agrawal et al., 2009). The delicate cells of the vestibular system do not regenerate and thus it becomes an incurable chronic condition. A promising treatment is noisy galvanic vestibular stimulation (nGVS), a non-invasive electrical stimulation, delivered to the vestibular system, aiming to restore absent vestibular information and improve balance (McLaren et al., 2022). This presentation reports the results of a scoping review investigating the stimulation parameters that can be manipulated to improve the efficacy of nGVS. A comprehensive systematic search of five databases up to December 2022 identified studies applying nGVS to people with the aim of improving their postural control. Two independent reviewers screened and identified eligible studies and extracted parameter data. Thirty-one studies met the eligibility criteria. The review identified that a broad array of settings have been employed across studies. The nGVS parameters of waveform, amplitude, frequency band, duration of stimulation, method of amplitude optimization, size and composition of electrodes and the electrode skin interface are all likely to influence the efficacy of nGVS. However, the ability to draw robust conclusions about the selection of optimal nGVS parameters is hindered by a lack of studies that directly compare parameter settings. I propose a guideline for the accurate reporting of nGVS parameters. This will help establish standardized stimulation protocols bringing us one step closer to becoming a readily available clinical treatment.","PeriodicalId":491085,"journal":{"name":"Rangahau Aranga AUT Graduate Review","volume":"50 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2023-09-29","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Finding Balance with Vestibular Stimulation\",\"authors\":\"Ruth McLaren\",\"doi\":\"10.24135/rangahau-aranga.v2i3.176\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"Weakening of the vestibular system through disease or aging leads to imbalance, restricted mobility, and falls (Hain et al., 2018). Vestibular weakness affects one-third of people over the age of 40, and 85% of those over 80 years (Agrawal et al., 2009). The delicate cells of the vestibular system do not regenerate and thus it becomes an incurable chronic condition. A promising treatment is noisy galvanic vestibular stimulation (nGVS), a non-invasive electrical stimulation, delivered to the vestibular system, aiming to restore absent vestibular information and improve balance (McLaren et al., 2022). This presentation reports the results of a scoping review investigating the stimulation parameters that can be manipulated to improve the efficacy of nGVS. A comprehensive systematic search of five databases up to December 2022 identified studies applying nGVS to people with the aim of improving their postural control. Two independent reviewers screened and identified eligible studies and extracted parameter data. Thirty-one studies met the eligibility criteria. The review identified that a broad array of settings have been employed across studies. The nGVS parameters of waveform, amplitude, frequency band, duration of stimulation, method of amplitude optimization, size and composition of electrodes and the electrode skin interface are all likely to influence the efficacy of nGVS. However, the ability to draw robust conclusions about the selection of optimal nGVS parameters is hindered by a lack of studies that directly compare parameter settings. I propose a guideline for the accurate reporting of nGVS parameters. 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引用次数: 0
摘要
前庭系统因疾病或衰老而减弱,导致不平衡、活动受限和跌倒(Hain et al., 2018)。前庭神经衰弱影响了三分之一的40岁以上人群和85%的80岁以上人群(Agrawal et al., 2009)。前庭系统的脆弱细胞不能再生,因此它成为一种无法治愈的慢性疾病。嘈杂的前庭电刺激(nGVS)是一种很有前景的治疗方法,它是一种非侵入性的电刺激,传递给前庭系统,旨在恢复缺失的前庭信息并改善平衡(McLaren et al., 2022)。本报告报告了一项范围审查的结果,该审查调查了可以操纵的增产参数,以提高nGVS的效果。截至2022年12月,对五个数据库进行了全面系统的搜索,确定了将nGVS应用于人类的研究,目的是改善他们的姿势控制。两名独立审稿人筛选并确定了符合条件的研究并提取了参数数据。31项研究符合入选标准。该综述发现,在研究中采用了一系列广泛的设置。nGVS的波形、振幅、频带、刺激持续时间、振幅优化方法、电极的尺寸和组成以及电极皮肤界面等参数都可能影响nGVS的效果。然而,由于缺乏直接比较参数设置的研究,得出关于最佳nGVS参数选择的可靠结论的能力受到阻碍。我提出了一个准确报告nGVS参数的指南。这将有助于建立标准化的刺激方案,使我们更接近于成为一种现成的临床治疗方法。
Weakening of the vestibular system through disease or aging leads to imbalance, restricted mobility, and falls (Hain et al., 2018). Vestibular weakness affects one-third of people over the age of 40, and 85% of those over 80 years (Agrawal et al., 2009). The delicate cells of the vestibular system do not regenerate and thus it becomes an incurable chronic condition. A promising treatment is noisy galvanic vestibular stimulation (nGVS), a non-invasive electrical stimulation, delivered to the vestibular system, aiming to restore absent vestibular information and improve balance (McLaren et al., 2022). This presentation reports the results of a scoping review investigating the stimulation parameters that can be manipulated to improve the efficacy of nGVS. A comprehensive systematic search of five databases up to December 2022 identified studies applying nGVS to people with the aim of improving their postural control. Two independent reviewers screened and identified eligible studies and extracted parameter data. Thirty-one studies met the eligibility criteria. The review identified that a broad array of settings have been employed across studies. The nGVS parameters of waveform, amplitude, frequency band, duration of stimulation, method of amplitude optimization, size and composition of electrodes and the electrode skin interface are all likely to influence the efficacy of nGVS. However, the ability to draw robust conclusions about the selection of optimal nGVS parameters is hindered by a lack of studies that directly compare parameter settings. I propose a guideline for the accurate reporting of nGVS parameters. This will help establish standardized stimulation protocols bringing us one step closer to becoming a readily available clinical treatment.