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Techniques of Force and Pressure Measurement in the Small Joints of the Wrist

机译:手腕小关节的力和压力测量技术

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摘要

>Background: The alteration of forces across joints can result in instability and subsequent disability. Previous methods of force measurements such as pressure-sensitive films, load cells, and pressure-sensing transducers have been utilized to estimate biomechanical forces across joints and more recent studies have utilized a nondestructive method that allows for assessment of joint forces under ligamentous restraints. >Methods: A comprehensive review of the literature was performed to explore the numerous biomechanical methods utilized to estimate intra-articular forces. >Results: Methods of biomechanical force measurements in joints are reviewed. >Conclusions: Methods such as pressure-sensitive films, load cells, and pressure-sensing transducers require significant intra-articular disruption and thus may result in inaccurate measurements, especially in small joints such as those within the wrist and hand. Non-destructive methods of joint force measurements either utilizing distraction-based joint reaction force methods or finite element analysis may offer a more accurate assessment; however, given their recent inception, further studies are needed to improve and validate their use.
机译:>背景:跨关节力的改变可能会导致不稳定和随后的残疾。以前的力测量方法(例如压敏膜,称重传感器和压力传感换能器)已被用来估算跨关节的生物力学力,而最近的研究则采用了一种无损方法,该方法可以评估韧带约束下的关节力。 >方法:对文献进行了全面的回顾,以探索用于估算关节内力的多种生物力学方法。 >结果:回顾了关节中生物力学力的测量方法。 >结论:诸如压敏膜,称重传感器和压力传感换能器之类的方法需要进行明显的关节内破坏,因此可能导致测量结果不准确,尤其是在小关节(例如手腕和手。利用基于分散力的联合反作用力方法或有限元分析进行的联合力测量的无损方法可能会提供更准确的评估;但是,鉴于它们的成立不久,需要进一步研究以改进和验证其用法。

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