模拟人造运动场地皮肤损伤风险的新方法

M. MacFarlane, Eric O’Donnell, Eric Harrison, Marc Douglas, Neale Lees, P. Theobald
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摘要

人造草坪提供了一种稳定耐用的表面,但在球员摔倒或滑倒时,人造草坪历来具有较高的皮肤损伤风险,即 "摩擦灼伤"。第二代人造草皮的特点是地毯绒毛较短,而第三代(3G)人造草皮的地毯绒毛则较长,因此可以集成高性能填充物。3G 球场表面具有足够的能量吸收特性,因此被批准为橄榄球草坪;然而,尽管采用了基于摩擦力的测试方法进行评估,此类球场仍可能造成皮肤损伤。降低皮肤损伤风险促使本研究开发出一种更灵敏的测试方法。本研究提出了一种新的测试仪器和冲击器,可实现代表精英男子橄榄球擒抱动作的运动学特性。为确保收集到可重复的有效数据,采用了市售的皮肤模拟物。摄影和阈值处理用于评估表面磨损和材料转移,热像仪则用于捕捉表面温度变化。加速度计对冲击和滑动阶段的表面阻力进行量化。这些指标被汇编成麦克斯韦三体指数(MTI),为皮肤损伤风险提供了单一的衡量标准。四个小组测试了四种不同的 3G 表面,结果显示了良好的可重复性和有效性。这些结果与专家小组的排序结果相比毫不逊色。
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A Novel Methodology for Simulating Skin Injury Risk on Synthetic Playing Surfaces
Artificial turf provides a consistent and durable surface; however, it has historically been associated with a high skin injury risk, or a ‘friction burn’, when a player falls or slides. Second-generation surfaces feature a short carpet pile, whilst third generation (3G) carpet piles are longer, enabling the integration of a performance infill. 3G surfaces provide sufficient energy absorption characteristics to be approved as Rugby Turf; however, such pitches can still cause skin injuries, despite being assessed using a friction-based test. Reducing skin injury risk motivates this study to develop a more sensitive testing methodology. A new test apparatus and impactor are proposed, achieving kinematics representative of an elite male rugby tackle. A commercially available skin simulant is employed to ensure the collection of repeatable and valid data. Photography and thresholding were used to assess surface abrasion and material transfer, whilst a thermal camera captured surface temperature change. Accelerometers quantified the surface resistance during the impact and sliding phases. These metrics were compiled into the Maxwell Tribo Index (MTI), providing a single measure of skin injury risk. The results demonstrated good repeatability and validity when four teams tested four different 3G surfaces. These results compared favourably to an expert panel’s ranked order.
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