Faltus John, Criss Cody Ryan, Grooms Dustin Robert
Cirque du Soleil, Montreal, CANADA.
Curr Sports Med Rep. 2020 Feb;19(2):76-83. doi: 10.1249/JSR.0000000000000688.
Neuroplasticity after anterior cruciate ligament (ACL) injury has lingering effects throughout rehabilitation and can influence reinjury risk upon returning to sport if not addressed. Various neural compensatory strategies have been identified following ACL injury, which appear to not be rectified with typical therapy. Thus, further consideration is warranted, addressing the neurophysiologic and neurocognitive aspects of injury when developing a rehabilitation program. Integration of external focus of control strategies, neurocognition, motor planning, unanticipated sensory processing, and load management provide an efficient and effective method for improving motor learning and control throughout the rehabilitation process. Rehabilitation exercises that incorporate unique sports-specific challenges can target the visual processing and anticipatory reaction components of motor control to reduce motor errors that increase injury risk when returning to activity. The neurocognitive demands of returning to sport of efficient decision making and motor patterning amid a rapidly changing competitive environment require novel and clinically implemental strategies.
前交叉韧带(ACL)损伤后的神经可塑性在整个康复过程中都有持续影响,如果不加以解决,可能会影响恢复运动后的再损伤风险。ACL损伤后已确定了各种神经代偿策略,而这些策略似乎无法通过传统治疗得到纠正。因此,在制定康复计划时,有必要进一步考虑损伤的神经生理学和神经认知方面。整合外部控制策略、神经认知、运动规划、意外感觉处理和负荷管理,为在整个康复过程中改善运动学习和控制提供了一种高效且有效的方法。纳入独特的特定运动挑战的康复锻炼可以针对运动控制的视觉处理和预期反应成分,以减少恢复活动时增加损伤风险的运动错误。在快速变化的竞争环境中恢复运动时,高效决策和运动模式的神经认知需求需要新颖且可临床实施的策略。