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The Development, validity, and reliability of a manual muscle testing device with integrated limb position sensors

机译:带有集成肢体位置传感器的手动肌肉测试设备的开发,有效性和可靠性

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摘要

Li RC, Jasiewicz JM, Middleton J, Condie P, Barriskill A, Hebnes H, Purcell B. The development, validity, and reliability of a manual muscle testing device with integrated limb position sensors. Objective: To report the development and validation of a new hand-held muscle strength-testing device that is integrated with orientation sensors and designed to test the strength of major muscle groups at a given limb or joint position. Design: Design description and validation study. Setting: University-based human movement facility. Participants: Twenty-eight able-bodied, healthy subjects. Interventions: Not applicable. Main Outcome Measure: A device was developed based on a hand-held force dynamometer with integrated orientation sensors. The validity and reliability (interrater, intertrial) of 5 maximum isometric contractions of hip flexion, knee extension, and ankle plantarflexion and dorsiflexion were assessed. The results were compared with those from an isokinetic dynamometer (KinCom). Results: The new manual muscle tester was highly reliable and valid in estimating muscle strength of the lower limbs. The coefficient of variation between trials of all movements was low, with a mean less than 10% (range, 3.7%–8.9%). The only significant difference in muscle strength between the new device and the isokinetic dynamometer was found for hip flexion. Conclusions: The new hand-held muscle strength tester appears to be a reliable and valid clinical assessment tool that can be used to objectively assess muscle strength at particular limb positions and/or joint angles. This feature appears to represent a technical advance in portable muscle strength devices, providing comparable information to those obtained by isokinetic dynamometers at a fraction of the cost and size. However, the device needs to be validated in clinical populations, such as patients with spinal cord injury and stroke, in order to demonstrate its general clinical utility.
机译:Li RC,Jasiewicz JM,Middleton J,Condie P,Barriskill A,Hebnes H和PurcellB。具有集成肢体位置传感器的手动肌肉测试设备的开发,有效性和可靠性。目的:报告新型手持式肌肉力量测试设备的开发和验证,该设备与方向传感器集成在一起,旨在测试给定肢体或关节位置的主要肌肉群的力量。设计:设计说明和验证研究。地点:基于大学的人体运动设施。参加者:28名身体健康的受试者。干预措施:不适用。主要成果测量:基于带有集成方向传感器的手持式测力计开发了一种设备。评估了髋关节屈曲,膝盖伸展以及踝plant屈和背屈的5个最大等距收缩的有效性和可靠性(interrater,trial)。将结果与等速测功机(KinCom)进行了比较。结果:新的手动肌肉测试仪在评估下肢的肌肉力量方面非常可靠且有效。所有动作试验之间的变异系数都很低,平均值小于10%(范围为3.7%–8.9%)。发现新设备与等速测功机之间唯一的肌肉力量差异是髋关节屈曲。结论:新型手持式肌肉力量测试仪似乎是一种可靠且有效的临床评估工具,可用于客观评估特定肢体位置和/或关节角度的肌肉力量。此功能似乎代表了便携式肌肉力量设备的一项技术进步,它可以通过等速测功机获得相当的信息,而成本和尺寸却很小。但是,该设备需要在临床人群中进行验证,例如患有脊髓损伤和中风的患者,以证明其一般的临床实用性。

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