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The Temporal Response of Anterior Knee Laxity Following Strenuous Exercise.

机译:剧烈运动后膝前松弛的时间反应。

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摘要

Injury to the anterior cruciate ligament (ACL) is one of the most common knee injuries, with approximately 80,000 to 250,000 ACL injuries occurring each year. Despite considerable attention and intervention efforts, ACL injuries continue to occur in alarming numbers. There is a need to better understand ACL injury mechanisms and develop more effective injury prevention interventions. We hypothesize that some non-contact anterior cruciate ligament (ACL) ruptures result from microtrauma accumulating over repeated bouts of strenuous exercise. We also hypothesize that non-failure ACL trauma can be detected by changes in knee laxity. However, before we can test these hypotheses, we must understand the normal temporal response of knee laxity during and following exercise so that we can discern normal viscoelastic ACL responses from responses indicative of trauma. Therefore, the objectives of this study were to (1) quantify the temporal response of anterior knee laxity to strenuous exercise, (2) test the hypothesis that anterior knee laxity will increase during strenuous exercise in young adults, (3) identify the time needed for knee laxity to return to pre-exercise values following strenuous exercise in young adults, and (4) explore the variability in knee laxity changes and recovery times among young adults completing a strenuous bout of exercise.;A total of 32 subjects, 16 exercise and 16 controls, were tested. A custom knee arthrometer was used to quantify the subjects' right knee laxity prior to, immediately after, and every hour for five hours following a 50 minute strenuous leg exercise protocol. Knee laxity was also measured 24 hours post exercise. Leg exercises consisted of jumping rope, lunges, squats, running, and various cutting moves. Knee laxity was defined as the anterior displacement of the tibia relative to the femur with the knee flexed 30 degrees and an applied anterior force of 133 N.;Knee laxity did not change in the control group, but did change over time in the exercise group. The exercise group demonstrated a significant mean increase in anterior knee laxity following exercise of 0.63 mm, or 32%. There were varied knee laxity temporal responses following exercise. Three subjects demonstrated a decrease in laxity post exercise, 2 subjects increased post-exercise but didn't recover within 24 hours, and 3 subjects demonstrated an increase in laxity post exercise, but then recovered to laxity values below their pre-exercise condition. These results highlight the varied temporal response of knee laxity following exercise and the need to understand their mechanisms before knee laxity can be used as a diagnostic tool for ACL injury prevention.
机译:前交叉韧带(ACL)受伤是最常见的膝盖受伤之一,每年约有80,000至250,000 ACL受伤。尽管付出了巨大的努力和干预,但ACL损伤仍继续以惊人的数字发生。有必要更好地了解ACL损伤机制并开发更有效的损伤预防干预措施。我们假设一些非接触性前十字韧带(ACL)破裂是由于剧烈运动反复反复而产生的微创伤而引起的。我们还假设可以通过膝关节松弛度的变化来检测非失败的ACL创伤。但是,在检验这些假设之前,我们必须了解运动期间和运动后膝关节松弛的正常时间反应,以便从指示创伤的反应中识别出正常的粘弹性ACL反应。因此,本研究的目的是(1)量化前膝关节松弛对剧烈运动的时间响应;(2)检验以下假设:年轻人在剧烈运动期间前膝关节松弛会增加;(3)确定所需的时间使年轻人剧烈运动后膝关节松弛度恢复到运动前的值,并且(4)探索完成剧烈运动的年轻人膝关节松弛度变化和恢复时间的变化。;总共32名受试者,进行16次运动和16个对照进行了测试。在进行50分钟的剧烈腿部锻炼方案之前,之后和之后的五个小时内,使用定制的膝关节流量计来量化受试者的右膝松弛度。运动后24小时也测量膝关节松弛度。腿部锻炼包括跳绳,弓步,下蹲,跑步和各种切割动作。膝关节松弛定义为胫骨相对于股骨的前移,膝盖屈曲30度,施加的前向力为133N。对照组,膝关节松弛度没有变化,但在运动组中随时间变化。运动组显示运动后膝关节前松弛度显着平均增加0.63 mm,即32%。运动后膝盖松弛的时间反应多种多样。 3名受试者运动后松弛度降低,2名受试者运动后松弛度增加,但在24小时内未恢复,3名受试者运动后松弛度增加,但随后恢复至低于运动前状态的松弛度。这些结果强调了运动后膝盖松弛的时间反应的多样性,以及在将膝盖松弛用作预防ACL损伤的诊断工具之前需要了解其机理。

著录项

  • 作者

    Starkel, Cambrie Diane.;

  • 作者单位

    University of California, Davis.;

  • 授予单位 University of California, Davis.;
  • 学科 Biophysics Biomechanics.;Health Sciences Recreation.;Engineering Biomedical.
  • 学位 M.S.
  • 年度 2013
  • 页码 121 p.
  • 总页数 121
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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