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运动中头部撞击的物理重建的最佳实践。

Best Practices for Conducting Physical Reconstructions of Head Impacts in Sport.

机构信息

Biocore LLC, 1627 Quail Run, Charlottesville, VA, 22911, USA.

McIntosh Consultancy and Research, Sydney, Australia.

出版信息

Ann Biomed Eng. 2022 Nov;50(11):1409-1422. doi: 10.1007/s10439-022-03024-w. Epub 2022 Jul 25.

Abstract

Physical reconstructions are a valuable methodology for quantifying head kinematics in sports impacts. By recreating the motion of human heads observed in video using instrumented test dummies in a laboratory, physical reconstructions allow for in-depth study of real-world head impacts using well-established surrogates such as the Hybrid III crash test dummy. The purpose of this paper is to review all aspects of the physical reconstruction methodology and discuss the advantages and limitations associated with different choices in case selection, study design, test surrogate, test apparatus, text matrix, instrumentation, and data processing. Physical reconstructions require significant resources to perform and are therefore typically limited to small sample sizes and a case series or case-control study design. Their accuracy may also be limited by a lack of dummy biofidelity. The accuracy, repeatability, and sensitivity of the reconstruction process can be characterized and improved by good laboratory practices and iterative testing. Because wearable sensors have their own limitations and are not available or practical for many sports, physical reconstructions will continue to provide a useful and complementary approach to measuring head acceleration in sport for the foreseeable future.

摘要

物理重建是一种用于量化运动冲击中头部运动学的有价值的方法。通过使用实验室中的仪器测试假人重现视频中观察到的人类头部运动,物理重建允许使用成熟的替代物(如 Hybrid III 碰撞测试假人)对真实世界中的头部冲击进行深入研究。本文的目的是回顾物理重建方法的各个方面,并讨论在案例选择、研究设计、测试替代物、测试设备、文本矩阵、仪器和数据处理方面的不同选择所带来的优势和局限性。物理重建需要大量资源才能进行,因此通常仅限于小样本量和病例系列或病例对照研究设计。由于测试假人缺乏生物逼真度,其准确性也可能受到限制。通过良好的实验室实践和迭代测试,可以对重建过程的准确性、可重复性和敏感性进行描述和改进。由于可穿戴传感器有其自身的局限性,并且对许多运动来说并不实用或不切实际,因此在可预见的未来,物理重建将继续为测量运动中的头部加速度提供一种有用且互补的方法。

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