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Measuring the risk of sustaining injury in sport a novel approach to aid the re-design of personal protective equipment

机译:测量运动中受伤风险的一种新颖方法,可帮助重新设计个人防护设备

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Despite the possibilities offered by new approaches in design and advances in materials and manufacturing methods, few items of Personal Protective Equipment (PPE) used in sport have seen significant change for many decades. A major reason for this is the tradition and conservative attitudes associated with many sports, although the absence of appropriate tools and techniques to assist the design and development process has also played a large part. The aim of this study was to develop the first stage of a method of identifying specific regions of the human anatomy that are at the greatest risk of sustaining injury during participation in sports in which the player is subjected to multiple ballistic impacts. It is proposed that the findings could be used to confirm future designs of sports PPE. Previous studies have identified the amount and the location of the protection provided by current commercially available products but, until now, no evidence has been reported to determine what protection is required based on an understanding of the likely impact and the anatomy of the athlete. Using the leg and cricket as examples of an anatomical feature and a sporting application respectively, the severity and probability of injury due to ball impacts typically observed in play are quantified, with respect to their location on the leg, to estimate the level of risk in that region. Results show that the level of risk is greatest in the shin regions of the front leg, suggesting that this region should be offered the greatest degree of protection, as is generally the case in commercially available leg guard designs. Conversely, however, the inner region of the mid shin of the back leg is at the lowest risk, suggesting that protection in this region might be substantially reduced, a feature which is certainly not included in current product; such a reduction may significantly enhance the ergonomic performance of the leg guard design. The findings of this preliminary study indicate that the method offers the potential to quantify the relative risk of sustaining injury, in a sports specific application, as a function of location on the body and is thus a potentially useful design tool for design engineers of sports PPE. Given the embryonic nature of this approach, however, a number of assumptions and additional considerations is presented which reveal that, whilst the technique offers additional design insight, further research is required before it should be applied to equipment design.
机译:尽管新的设计方法以及材料和制造方法的进步提供了可能性,但几十年来,用于体育运动的个人防护设备(PPE)很少见。主要原因是与许多运动相关的传统和保守态度,尽管缺乏适当的工具和技术来协助设计和开发过程也起了很大的作用。这项研究的目的是开发一种方法的第一阶段,该方法用于识别人体解剖结构的特定区域,这些区域在参加运动员遭受多重弹道冲击的运动过程中遭受伤害的风险最大。建议将这些发现用于确定体育个人防护装备的未来设计。先前的研究已经确定了当前市售产品提供的保护的数量和位置,但是直到现在,尚未有证据表明基于对运动员可能的影响和身体结构的了解来确定需要哪种保护。分别使用腿和板球作为解剖特征和体育应用的示例,就其在腿上的位置,量化通常在比赛中观察到的因球撞击而造成伤害的严重性和可能性,以估计患肢的风险水平。该地区。结果表明,在前腿的下胫骨区域中,风险级别最高,这表明应该为该区域提供最大程度的保护,就像市售护腿板设计中的一般情况一样。相反,后腿中胫骨的内部区域处于最低风险,这表明该区域的保护可能会大大降低,这一功能肯定不包括在当前产品中。这样的减少可以显着提高护腿设计的人体工程学性能。这项初步研究的结果表明,该方法具有潜力,可以根据运动在身体上的特定位置量化运动特定应用中遭受伤害的相对风险,因此,这对于运动PPE的设计工程师而言可能是有用的设计工具。但是,鉴于这种方法的萌芽性质,提出了许多假设和其他考虑因素,这表明,尽管该技术提供了更多的设计见识,但在将其应用于设备设计之前还需要进行进一步的研究。

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