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临床试验/NCT05294783
NCT05294783已完成不适用

The Single Leg Squat and Hold Test With Kinematic Analysis to Evaluate Dynamic Knee Stability in Patients With ACL Injury

Chinese University of Hong Kong1 个研究点 分布在 1 个国家目标入组 43 人开始时间: 2018年7月1日最近更新:
适应症

试验速览

阶段
不适用
状态
已完成
入组人数
43
试验地点
1
主要终点
Changes from baseline knee range of internal-external rotation at 3 months after ACLR

研究概览

简要总结

Patients with anterior cruciate ligament (ACL) injury often suffer knee instability, which can be visualized as a wobbling knee during weight bearing exercises, such as the single leg squat. We propose to use the single-leg-squat-and-hold (SLSH) task with kinematic analysis to objectively evaluate dynamic knee stability in ACL injured patients. The aim of this study is (1) to compare knee kinematic variations capturing knee wobbling during SLSH between ACL subjects and healthy controls; and (2) to detect the changes in knee kinematic variations during SLSH following ACL reconstruction.

详细描述

Injuries to the anterior cruciate ligament (ACL) are common in pivoting sports such as soccer, handball, basketball and rugby. The ultimate goal of ACL reconstruction for most athletes is return-to-play. Despite successful surgery and a demanding rehabilitation process, some athletes still failed to return to play, and for those who returned to play, some would suffer a second ACL injury. With surgical reconstruction of the ACL, static knee stability can be restored, but dynamic knee stability may not . Patients with ACL injury often experience symptoms such as knee instability, feelings of "giving way" during activities. Biomechanically, dynamic knee stability is considered as the ability to control the relative tibiofemoral displacements during loading.

Regular monitoring of the knee stability before and after ACL reconstruction is necessary for medical personnel to design the most suitable rehabilitation program. In contrast to jumping and hopping tasks, squatting tasks present a similar weight bearing profile during knee flexion, but without the potentially risky landing phase. As poor knee dynamic knee stability can be visualized as a wobbling knee (frequent knee movements). In order to quantitatively and objectively evaluate dynamic knee stability from observing the knee wobbling motion, we propose a single leg squat and hold task(SLSH) with kinematic analysis. Kinematic curve derived from the SLSH involves both the magnitudes and the frequency of the motion fluctuation. This study aims (1) to compare knee kinematic variations capturing knee wobbling during SLSH between ACL-deficient patients who are scheduled for ACLR and healthy controls; and(2)to detect the changes in knee kinematic variations during SLSH following ACLR. We hypothesize that the ACL-deficient patients demonstrate greater knee kinematic variation than the healthy subjects and the knee kinematic variation will reduce after ACLR.

研究设计

研究类型
Observational
观察模型
Cohort
时间视角
Prospective

入排标准

年龄范围
18 Years 至 35 Years(Adult)
性别
All
接受健康志愿者

入选标准

  • Aged 18-35;
  • Participate in level I or level II sports with a Tegner score of more than 6 before injury(level I: sports involving jumping, cutting and pivoting, e.g.football, basketball etc; Level II: sports involving lateral movements, less pivoting than Level I eg. racket sports)
  • Scheduled for ACLR because of unilateral ACL injury;
  • Failure to meet any single criteria for a potential coper;
  • Contralateral knee without history of injury.

排除标准

  • Concomitant fracture, meniscus injury or full-thickness chondral injuries;
  • preoperative radiographic signs of arthritis;
  • Revision ACL surgery;
  • With ankle pain, hip pain, low back pain or spine pathology;
  • Woman with pregnancy.

结局指标

主要结局

Changes from baseline knee range of internal-external rotation at 3 months after ACLR

时间窗: one month pre-operatively and three months post-operatively

knee range of internal-external rotation will be measured during 10s holding phase of the single leg squat and hold test

Changes from baseline knee range of varus-valgus at 3 months after ACLR

时间窗: three months post-operatively

knee range of virus-valgus will be measured during 10s holding phase of the single leg squat and hold test

Changes from baseline frequency of knee internal-external rotation

时间窗: three months post-operatively

he frequency of the relative internal-external movements will be quantified by the number of peak appearances during 10s holding phase of the single leg squat and hold test

Changes from baseline knee range of flexion-extension at 3 months after ACLR

时间窗: three months post-operatively

knee range of flexion-extension will be measured during 10s holding phase of the single leg squat and hold test

Changes from baseline frequency of knee flexion-extension at 3 months after ACLR

时间窗: three months post-operatively

the frequency of the relative flexion-extension movements will be quantified by the number of peak appearances during 10s holding phase of the single leg squat and hold test

Changes from baseline frequency of knee varus-valgus at 3 months after ACLR

时间窗: three months post-operatively

the frequency of the relative varus-valgus movements will be quantified by the number of peak appearances during 10s holding phase of the single leg squat and hold test

次要结局

  • Changes from baseline International Knee Documentation Committee(IKDC) score at 3 months after ACLR(three months post-operatively)

研究者

申办方类型
Other
责任方
Principal Investigator
主要研究者

Xin He

Principal investigator

Chinese University of Hong Kong

研究点 (1)

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