Fraser Abbey M, Bevill Grant R, Lundy Mary S, Aceros Juan
College of Computing, Engineering and Construction, Mechanical Engineering, University of North Florida, Jacksonville, Florida, USA.
Assist Technol. 2022 May 4;34(3):375-381. doi: 10.1080/10400435.2020.1829175. Epub 2020 Nov 12.
Modified battery-powered ride-on toy cars represent novel rehabilitation tools for children with disabilities. However, safety concerns exist with the use of these battery-power toys and pose a barrier for the growth of adaptive ride-on toy programs due to the lack of evidence demonstrating that modifications made to these cars are safe. Within this context, the purpose of this study was to investigate whether modifications to ride-on toys are sufficient to prevent common injuries and determine how these modifications influence injury metrics. Specifically, we evaluated the effects of common modifications such as various seatbelt configurations and determined how increased seat back height effects neck forces. Results indicated that occupant displacement can be reduced using a lap belt, and further reductions in displacement are achieved with a 5-point harness. Although some injury metrics increased with restraints, none of the collected injury metrics even came close to approaching known tolerance thresholds, and most were well within the range that is experienced by a child in daily life. As the greatest concerns for these ride-on toys are related to displacement, findings from this study support the use of a 5-point harness system to minimize displacement-related injuries with little-to-no added risk.
改良的电动乘骑玩具车是为残疾儿童设计的新型康复工具。然而,使用这些电动玩具存在安全隐患,由于缺乏证据表明对这些车辆所做的改装是安全的,这对适应性乘骑玩具项目的发展构成了障碍。在此背景下,本研究的目的是调查对乘骑玩具的改装是否足以预防常见伤害,并确定这些改装如何影响伤害指标。具体而言,我们评估了各种安全带配置等常见改装的效果,并确定座椅靠背高度增加如何影响颈部受力。结果表明,使用腰部安全带可减少乘员位移,而使用五点式安全带可进一步减少位移。虽然一些伤害指标随着约束措施的增加而上升,但所收集的伤害指标均未接近已知的耐受阈值,而且大多数指标都在儿童日常生活中所经历的范围内。由于这些乘骑玩具最令人担忧的问题与位移有关,本研究的结果支持使用五点式安全带系统,以将与位移相关的伤害降至最低,且几乎不会增加额外风险。