Impact of Chronic Ankle Instability on Jumping and Agility Performance in Athletes: A Comparative Cross-Sectional Study
试验速览
- 阶段
- 不适用
- 状态
- 已完成
- 发起方
- 入组人数
- 32
- 试验地点
- 1
- 主要终点
- 6-Meter Timed Hop - Completion Time
研究概览
简要总结
This study investigated how chronic ankle instability (CAI) affects functional performance in athletes compared with healthy controls. CAI is a condition that develops after repeated ankle sprains, leading to ongoing "giving way" episodes, pain, and reduced stability.
A total of 32 athletes participated: 16 with CAI and 16 healthy, age- and sport-matched controls. Participants performed a series of sport-specific functional performance tests, including single-leg hop tests, triple crossover hop, lateral hop, 6-meter timed hop, side jump, countermovement jump (CMJ), the 5-10-5 agility test, and the acceleration-deceleration-acceleration (ADA) test. The Deepsport AI program was used for precise measurement of jumping and agility parameters.
Results showed that athletes with CAI had significantly lower jump height and power, reduced hop distances, and slower times in agility and hopping tests compared to controls. These findings suggest that CAI negatively impacts performance in explosive and multidirectional movements, which are essential in sports such as basketball, volleyball, and soccer. No strong correlation was found between CAIT (Cumberland Ankle Instability Tool) scores and objective performance outcomes, suggesting that subjective reports alone may not fully capture functional deficits.
This study highlights the importance of using both subjective questionnaires and objective tests to evaluate ankle instability in athletes. It also supports the need for rehabilitation programs that include not only balance and proprioception training but also specific exercises to improve jumping, agility, and multidirectional performance.
详细描述
Chronic ankle instability (CAI) is a frequent consequence of lateral ankle sprains, affecting up to 74% of athletes with previous ankle injuries. It is characterized by recurrent sprains, repeated "giving way" episodes, reduced function, and impaired performance. While CAI has been extensively studied in relation to balance and proprioception, its direct effects on sport-specific performance metrics such as jumping and agility remain less clear.
In this cross-sectional case-control study, 32 athletes were enrolled: 16 athletes with CAI and 16 matched healthy athletes with no history of ankle instability. The CAI group was diagnosed using International Ankle Consortium (IAC) criteria (history of ≥1 lateral ankle sprain ≥12 months prior, ≥2 giving way episodes in the past 6 months, CAIT score ≤24, ≥5 years of sports participation). Controls had CAIT scores ≥25 and no ankle injury history.
The testing battery included:
Hop tests: single-leg hop, 6-meter timed hop, triple crossover hop, and lateral hop.
Agility tests: 5-10-5 pro-agility shuttle and acceleration-deceleration-acceleration (ADA) test.
研究设计
- 研究类型
- Observational
- 观察模型
- Case Control
- 时间视角
- Cross Sectional
入排标准
- 年龄范围
- 18 Years 至 30 Years(Adult)
- 性别
- Male
- 接受健康志愿者
- 是
入选标准
- •CAI Group:
- •History of at least one significant lateral ankle sprain ≥12 months prior to testing
- •At least 2 episodes of ankle "giving way" in the past 6 months
- •Cumberland Ankle Instability Tool (CAIT) score ≤24
- •Minimum of 5 years of sports participation and ≥3 hours of training per week
- •Inclusion Criteria - Control Group:
- •No history of ankle sprain or ankle instability
- •CAIT score ≥25
- •Matched to CAI group by age, sex, and sport participation
- •Minimum of 5 years of sports participation and ≥3 hours of training per week
排除标准
- •History of fracture, surgery, or major injury in the lower extremity within the past year
- •Musculoskeletal injury in the knee, hip, or back in the past 3 months
- •Neurological or vestibular disorders affecting balance or movement
- •Acute ankle pain, swelling, or inflammation at time of testing
- •Current use of orthotics or ankle braces during performance testing
- •Systemic or cardiovascular disease preventing safe participation
结局指标
主要结局
6-Meter Timed Hop - Completion Time
时间窗: Single session
Time (s) to hop forward 6 meters on one leg, measured with stopwatch. Best of 3 trials recorded.
Single-Leg Hop - Completion Time
时间窗: Single session
Time (s) to hop forward 6 meters on one leg. Best of 3 attempts recorded.
Triple Crossover Hop - Distance
时间窗: Single session
Distance (m) covered in 3 consecutive crossover hops over a 15 cm line. Best of 3 trials recorded.
Lateral Hop Test - Distance
时间窗: Single session
Distance (m) covered in 3 consecutive lateral hops on one leg. Best of 3 attempts recorded.
Countermovement Jump - Flight Time
时间窗: Single laboratory session
Flight time (s) measured during countermovement jump with Deepsport AI. Best of 3 trials recorded.
Countermovement Jump - Power Output
时间窗: Single laboratory session
Power output (W) calculated from CMJ using Deepsport AI (jump force-time algorithm). Best of 3 trials recorded.
5-10-5 Pro-Agility Shuttle - Completion Time
时间窗: Single session
Total completion time (s) for the 5-10-5 shuttle test, measured with electronic timing gates. Best of 2 trials recorded.
Acceleration-Deceleration-Acceleration (ADA) - Total Time
时间窗: Single session
Total sprint time (s) across 10 m acceleration, 5 m deceleration, and 10 m re-acceleration, measured with Deepsport AI.
Side Jump Test - Completion Time
时间窗: Single session
Time (s) to complete 10 consecutive lateral single-leg jumps across a line. Best attempt recorded.
Countermovement Jump - Jump Height
时间窗: Single laboratory session (~60 minutes)
Jump height (cm) measured during countermovement jump using Deepsport AI. Best of 3 trials recorded.
次要结局
未报告次要终点
