反应信号的复杂性影响与ACL负载风险相关的生物机械变量
Ling Li1, Reilly Gilbert2, Kaden Van Valkenburg2
1Division of Kinesiology and Health, University of Wyoming, Laramie, WY, USA; Department of Health and Human Performance, College of Idaho, Caldwell, ID, USA.
运动环境中反应信号复杂度增加,通过改变着陆生物力学,增加前十字带 (ACL) 损伤风险. 执行复杂任务的运动员由于反应延迟和运动模式变化而表现出更高的ACL负载风险.
科学领域:
- 生物力学 生物力学
- 运动医学 运动医学
- 伤害预防 预防伤害
背景情况:
- 前十字带 (ACL) 损伤在运动员中很常见,原因是运动反应不良.
- 了解环境复杂性如何影响着陆生物力学对于预防伤害至关重要.
研究的目的:
- 调查反应信号复杂度对与ACL负载风险相关的生物力学变量的影响.
- 分析在不同程度的环境不确定性下进行切割任务的预着陆和早期着陆机制.
主要方法:
- 31名休运动员完成了单腿侧面和横截面的任务.
- 测试了四种条件:预期的,简单的未预期的和两个复杂的未预期的场景.
- 测量了包括立场时间,起飞速度,膝盖曲和地面反应力在内的生物力学变量.
主要成果:
- 复杂的意想不到的条件导致了增加的立场时间和峰值垂直/后部地面力量.
- 这些条件还导致起飞速度减慢,膝盖屈曲率降低.
- 在高不确定性下,切割机制在横向和横向切割任务中变得相似,这表明运动策略发生了变化.
结论:
- 增加的反应信号复杂性促进了更具反应性的运动模式,可能增加ACL负载风险.
- 在不确定性下延迟反应会损害切割性能,增加受伤风险.
- 建议在复杂情况下对ACL损伤风险进行查,并培养预测技能.
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