Biomechanics and Motor Behavior Laboratory, School of Health Promotions and Kinesiology, Texas Woman's University, Denton, TX, USA.
Biomechanics Laboratory, Western Michigan University, Kalamazoo, MI, USA.
Sports Biomech. 2022 Oct;21(9):1032-1045. doi: 10.1080/14763141.2020.1726442. Epub 2020 Mar 4.
Functional training aims to provide specific adaptations due to exercise training and utilises a variety of equipment, including kettlebells. Due to the training principle of overload, a greater resistance must be applied to yield increased strength results. This study examined the effects of kettlebell mass on lower body joint kinetics in young recreationally trained adults. Thirty recreationally active, college-aged adults were recruited for this study. Participants performed hip-hinge style swings with kettlebells equivalent to 10%, 15% and 20% of their respective body mass. 3-D marker coordinate data were captured via infrared camera system and ground reaction force data were measured with two force plates. The resultant joint moments of the lower body were calculated using the inverse dynamics procedure. As mass increased, there was an increase in joint moment at the L4/5, hip and ankle joint, primarily due to an increase in ground reaction force. Increasing kettlebell mass can potentially cause greater strength gains in the hip and trunk musculature due to increase in lower body moments, while avoiding excessive moments about the knee.
功能训练旨在通过运动训练提供特定的适应性,并使用各种设备,包括壶铃。由于超负荷的训练原理,必须施加更大的阻力才能产生更大的力量效果。本研究探讨了壶铃质量对年轻娱乐训练成年人下肢关节动力学的影响。本研究招募了 30 名热衷于娱乐运动的大学生。参与者用相当于其自身体重 10%、15%和 20%的壶铃进行髋关节铰链式摆动。通过红外摄像机系统捕获 3-D 标记坐标数据,并使用两个力板测量地面反作用力数据。使用动力学逆过程计算下肢的关节力矩。随着质量的增加,L4/5、髋关节和踝关节的关节力矩增加,主要是由于地面反作用力的增加。增加壶铃的质量可以通过增加下肢力矩来潜在地使臀部和躯干肌肉获得更大的力量增益,同时避免膝关节过度受力。