Tri-axial loading response to anti-gravity running highlights movement strategy compensations during knee injury rehabilitation of a professional soccer player.

IF 1.9 3区 医学 Q2 SPORT SCIENCES
Research in Sports Medicine Pub Date : 2024-07-01 Epub Date: 2023-05-24 DOI:10.1080/15438627.2023.2216824
Matt Greig, Liam Mason, Andy Mitchell
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引用次数: 0

Abstract

Anti-gravity treadmills have been used in rehabilitation to manipulate exposure to loading and to prescribe return to outside running. Analysis is typically restricted to the vertical plane, but tri-axial accelerometry facilitates multi-planar analysis with relevance to injury mechanism. In this case a professional male soccer player, 4 weeks post-operative surgery to repair a medial meniscectomy, 8 months after Anterior Cruciate Ligament reconstruction to the same knee, completed anti-gravity treadmill running at 70-95% bodyweight (BW) at 5% increments. Tri-axial accelerometers were placed proximal to the Achilles tendon of the injured and healthy leg, and at C7. The planar acceleration at touchdown highlighted an increase at 85% BW, identifying 70% and 85% BW as discrete loading progressions. C7 (3.21 ± 0.68 m·s-2) elicited lower (P < 0.001) vertical acceleration than the lower limb (9.31 ± 1.82 m·s-2), with no difference between limbs suggesting bilateral symmetry. However, in the medio-lateral plane the affected limb (-0.15 ± 1.82 m·s-2) was exposed to lower (P = 0.001) medio-lateral acceleration than the non-affected limb (2.92 ± 1.35 m·s-2) at touchdown, indicative of bilateral asymmetry. PlayerLoad during foot contact was sensitive to accelerometer location, with the affected limb exposed to greater loading in all planes (P ≤ 0.082), exacerbated at 90-95% BW. Tri-axial accelerometry provides a means of assessing multi-planar loading during rehabilitation, enhancing objective progression.

反重力跑的三轴加载响应突出了职业足球运动员膝伤康复过程中的运动策略补偿。
反重力跑步机已被用于康复治疗,以控制暴露于负荷的程度,并规定恢复室外跑步。分析通常仅限于垂直面,但三轴加速度计有助于进行与损伤机制相关的多平面分析。在本案例中,一名职业男子足球运动员在内侧半月板切除修复手术后 4 周,同一膝关节前交叉韧带重建术后 8 个月,以 70-95% 体重(BW)、5% 增量的速度完成了反重力跑步机跑步。三轴加速度计分别放置在受伤腿和健康腿的跟腱近端和 C7 处。触地时的平面加速度在 85% 体重时显著增加,确定 70% 和 85% 体重为离散加载级数。C7(3.21 ± 0.68 m-s-2)引起的加速度较低(P -2),肢体间无差异,表明双侧对称。然而,在内侧平面,受影响的肢体(-0.15 ± 1.82 m-s-2)在触地时比未受影响的肢体(2.92 ± 1.35 m-s-2)承受更低(P = 0.001)的内侧加速度,表明双侧不对称。脚接触时的球员负荷对加速度计的位置很敏感,受影响的肢体在所有平面上都承受着更大的负荷(P ≤ 0.082),在 90-95% BW 时更严重。三轴加速度计为评估康复过程中的多平面负荷提供了一种方法,从而提高了康复的客观性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Research in Sports Medicine
Research in Sports Medicine SPORT SCIENCES-
CiteScore
6.40
自引率
0.00%
发文量
66
审稿时长
>12 weeks
期刊介绍: Research in Sports Medicine is a broad journal that aims to bridge the gap between all professionals in the fields of sports medicine. The journal serves an international audience and is of interest to professionals worldwide. The journal covers major aspects of sports medicine and sports science - prevention, management, and rehabilitation of sports, exercise and physical activity related injuries. The journal publishes original research utilizing a wide range of techniques and approaches, reviews, commentaries and short communications.
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