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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part P. Journal of Sports Engineering and Technology >Laboratory evaluation of a wearable head impact sensor for use in water polo and land sports
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Laboratory evaluation of a wearable head impact sensor for use in water polo and land sports

机译:用于水球和土地运动的可穿戴头部冲击传感器的实验室评估

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摘要

The SIM-G is a waterproof head impact sensor that has been previously evaluated for use in a headband, but not yet in a mode of attachment suitable for water polo. For this study, a CADEX linear impactor was used to impact a Hybrid III headform while wearing either a headband or modified water polo cap, each housing a SIM-G. In both headgears, the SIM-G consistently underestimated peak linear acceleration (p < .001) and peak rotational velocity (p < .001), and consistently overestimated peak rotational acceleration (p < .001) relative to the headform. These inaccuracies are consistent with previous evaluations of the SIM-G, but notably, impact magnitudes did not differ between the different modes of attachment (p > .198). The proprietary SIM-G algorithm used for classifying false/true positives performed poorly at the back and crown impact locations in both the water polo cap and headband, but accuracy of this algorithm did not significantly differ between the water polo cap and headband (60.5% vs 49.4%, respectively). The SIM-G's ability to correctly predict impact location also performed poorly in both headgears when impacts occurred at the crown location, but was significantly better overall in the water polo cap than the headband (80.2% vs 55.6%, respectively). These results demonstrate that the SIM-G exhibits shared limitations and a similar performance overall when placed in either a headband or water polo cap. Potential explanations for the inaccuracies of the SIM-G, as well as methods of optimizing its application in sports, are discussed.
机译:SIM-G是一种防水头冲击传感器,先前已经评估用于头带,但尚未处于适合于水球的附件模式。对于本研究,CADEX线性冲击器用于磨损的杂交III头部,同时佩戴头带或改性水球盖,每个壳体A壳SIM-G。在头部标识中,SIM-G始终低估的峰值线性加速度(P <.001)和峰值旋转速度(P <.001),以及相对于头部的始终升高的峰值旋转加速度(P <.001)。这些不准确性与SIM-G的先前评估一致,但值得注意的是,影响幅度在不同的附件模式之间没有区别(P> .198)。专有的SIM-G算法用于对水球盖和头带两者的背部和冠撞击位置进行分类的假/真阳性,但水球盖和头带之间该算法的准确性没有显着不同(60.5%与49.4%分别)。当在冠位置发生冲击时,SIM-G正确预测冲击位置的能力也在头带上发生不良,但在水球帽中总体上显着优于头带(分别为85.6%)。这些结果表明,当放置在头带或水马球盖上时,SIM-G表现出共同的限制和相似的性能。讨论了SIM-G的不准确的潜在解释,以及优化其在体育中的应用的方法。

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