Wang Liangsen, Ma Wenyue, Zhu Wenfei, Zhai Lin, Sun Yuliang
School of Physical Education, Shaanxi Normal University, Xi'an 710119, China.
Bioengineering (Basel). 2025 Feb 22;12(3):225. doi: 10.3390/bioengineering12030225.
Lower limb fatigue reduces muscle strength, alters joint biomechanics, affects gait, and increases injury risk. In addition, it is of great clinical significance to explore local muscle fatigue or weakness caused by fatigue to understand its compensatory effect on the ipsilateral or contralateral joints. We systematically searched multiple databases, including five databases, using key terms such as "Muscle Fatigue" and "Gait". Only studies that experimentally induced fatigue through sustained muscle activities in healthy adults were included. This review examined 11 studies exploring the effects of lower limb muscle fatigue on gait and lower limb biomechanics. The findings indicated that muscle fatigue significantly influenced spatiotemporal parameters, joint angles, and moments. Most studies that were reviewed reported an increase in step width and a decrease in knee joint moments following fatigue. Additionally, muscle activation levels tended to decline. In summary, compensatory mechanisms can lead to new walking strategies, such as increasing step width or enhancing the strength of muscles in adjacent joints. These adjustments impact dynamic balance differently: wider steps may enhance medial-lateral stability, while reduced muscle strength could lead to higher heel contact velocity and longer slip distances. Although these changes might influence dynamic balance, compensatory strategies may help mitigate the overall effect of fall risk. Future studies should use appropriate protocols, such as moderate or severe fatigue interventions with isokinetic dynamometry.
下肢疲劳会降低肌肉力量、改变关节生物力学、影响步态并增加受伤风险。此外,探究由疲劳引起的局部肌肉疲劳或无力,以了解其对同侧或对侧关节的代偿作用具有重要的临床意义。我们使用“肌肉疲劳”和“步态”等关键词,系统地检索了包括五个数据库在内的多个数据库。仅纳入了通过在健康成年人中进行持续肌肉活动来实验性诱导疲劳的研究。这篇综述审查了11项探究下肢肌肉疲劳对步态和下肢生物力学影响的研究。研究结果表明,肌肉疲劳显著影响时空参数、关节角度和力矩。大多数被审查的研究报告称,疲劳后步宽增加,膝关节力矩减小。此外,肌肉激活水平往往会下降。总之,代偿机制可导致新的行走策略,例如增加步宽或增强相邻关节肌肉的力量。这些调整对动态平衡的影响各不相同:更宽的步幅可能会增强内外侧稳定性,而肌肉力量的减弱可能会导致更高的足跟触地速度和更长的滑动距离。尽管这些变化可能会影响动态平衡,但代偿策略可能有助于减轻跌倒风险的总体影响。未来的研究应采用适当的方案,例如使用等速测力法进行中度或重度疲劳干预。