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Promises and Challenges in the Use of Wearable Sensors and Nonlinear Signal Analysis for Balance and Fall Risk Assessment in Older Adults

机译:使用可穿戴式传感器和非线性信号分析对老年人平衡和秋季风险评估的承诺和挑战

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The rise of wearable technologies is enabling novel ways of assessing balance and risk of falling in later life. Wearable inertial sensors are a promising addition to clinical balance assessment tools since they provide an objective and accurate fall risk assessment. Moreover, wearable devices also enable the ambulatory monitoring of physiological and behavioural variables, which can be used to infer health status and health-related behaviours linked to impaired balance and fall risk (e.g. sleep disturbances and poor sleep quality). This situation could potentially expand the prevailing paradigm in fall prevention, from the current one mainly involving the occasional assessment of risk factors to a new paradigm also including the continuous monitoring and detection of short-lived factors that might result in an imminent fall. Additionally, the diffusion of the dynamical systems theory and methods within the medical research community is inspiring a new approach to the study of ageing and balance in older adults. In particular, nonlinear signal analysis methods could potentially provide with further information on the underlying control mechanisms in ageing and produce more sensitive measures of fall risk. However, there are several challenges in the adoption of these devices and methods, which still preclude a firm conclusion on their clinical value. This paper summarises three studies performed to address some of these challenges and distils the lessons learnt from them. Collectively, the findings of this research confirm that these sensors and methods could improve currents tools and practices for balance and fall risk assessment, and provides some insights concerning their optimal use.
机译:可穿戴技术的兴起是实现评估平衡和堕落的生活风险的新方法。可穿戴惯性传感器是临床平衡评估工具的有希望的补充,因为它们提供了一个客观和准确的风险评估。此外,可穿戴设备还能够实现生理和行为变量的动态监测,可用于推断与平衡和跌倒风险受损的健康状况和与健康相关的行为相连(例如,睡眠障碍和睡眠质量不佳)。这种情况可能潜在地扩大了预防下降的现行范式,目前主要涉及偶尔评估危险因素的新范式,其中还包括不断监测和检测可能导致迫在眉睫的秋季的短暂因素。此外,医学研究界的动态系统理论和方法的扩散是鼓励一种新的成年人衰老和平衡研究的新方法。特别地,非线性信号分析方法可能提供有关衰老的潜在控制机制的进一步信息,并产生更敏感的坠落风险措施。然而,在采用这些设备和方法时存在若干挑战,这仍然排除了他们临床价值的坚决结论。本文总结了三项研究,以解决其中一些挑战,并蒸发这些挑战。统称,本研究的结果证实,这些传感器和方法可以改善水平和秋季风险评估的电流工具和实践,并提供了一些关于其最佳用途的见解。

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