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评估基于低成本微控制器的称重传感器放大器测量下肢和上肢肌肉力量的有效性和可靠性。

Assessing the Validity and Reliability of A Low-Cost Microcontroller-Based Load Cell Amplifier for Measuring Lower Limb and Upper Limb Muscular Force.

机构信息

Faculté des Sciences de la Santé et des Services Communautaires, École de Kinésiologie et de Loisir, Université de Moncton, Moncton, NB E1A 3E9, Canada.

出版信息

Sensors (Basel). 2020 Sep 3;20(17):4999. doi: 10.3390/s20174999.

Abstract

Lower and upper limb maximum muscular force development is an important indicator of physical capacity. Manual muscle testing, load cell coupled with a signal conditioner, and handheld dynamometry are three widely used techniques for measuring isometric muscle strength. Recently, there is a proliferation of low-cost tools that have potential to be used to measure muscle strength. This study examined both the criterion validity, inter-day reliability and intra-day reliability of a microcontroller-based load cell amplifier for quantifying muscle strength. To do so, a low-cost microcontroller-based load cell amplifier for measuring lower and upper limb maximal voluntary isometric muscular force was compared to a commercial grade signal conditioner and to a handheld dynamometer. The results showed that the microcontroller-based load cell amplifier correlated nearly perfectly (Pearson's R-values between 0.947 to 0.992) with the commercial signal conditioner and the handheld dynamometer, and showed good to excellent association when calculating ICC scores, with values of 0.9582 [95% C.I.: 0.9297-0.9752] for inter-day reliability and of 0.9269 [95% C.I.: 0.8909-0.9533] for session one, intra-day reliability. Such results may have implications for how the evaluation of muscle strength measurement is conducted in the future, particularly for offering a commercial-like grade quality, low cost, portable and flexible option.

摘要

上下肢最大肌肉力量的发展是身体能力的一个重要指标。手动肌肉测试、与信号调理器耦合的负载单元和手持测力计是三种广泛用于测量等长肌肉力量的技术。最近,出现了许多低成本工具,这些工具具有用于测量肌肉力量的潜力。本研究检验了基于微控制器的负载单元放大器用于量化肌肉力量的标准有效性、日内可靠性和日内可靠性。为此,比较了一种用于测量上下肢最大自愿等长肌肉力量的低成本基于微控制器的负载单元放大器与商用级信号调理器和手持测力计。结果表明,基于微控制器的负载单元放大器与商用信号调理器和手持测力计几乎完全相关(Pearson 相关系数值在 0.947 到 0.992 之间),并且在计算 ICC 分数时具有良好到极好的相关性,日内可靠性的 ICC 值为 0.9582[95%CI:0.9297-0.9752],第一次会话的日内可靠性 ICC 值为 0.9269[95%CI:0.8909-0.9533]。这些结果可能对未来肌肉力量测量评估的方式产生影响,特别是提供商业级质量、低成本、便携性和灵活性的选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2052/7506672/ee0e9ce1c89c/sensors-20-04999-g001.jpg

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