Chua YaoHui K, Quek Raymond K K, Kong Pui W
a Physical Education and Sports Science Academic Group , National Institute of Education, Nanyang Technological University , Singapore.
Sports Biomech. 2017 Mar;16(1):13-22. doi: 10.1080/14763141.2016.1174288. Epub 2016 May 31.
This study aimed (1) to profile the plantar loading characteristics when performing the basketball lay-up in a realistic setting and (2) to determine the number of trials necessary to establish a stable mean for plantar loading variables during the lay-up. Thirteen university male basketball players [age: 23.0 (1.4) years, height: 1.75 (0.05) m, mass: 68.4 (8.6) kg] performed ten successful basketball lay-ups from a stationary position. Plantar loading variables were recorded using the Novel Pedar-X in-shoe system. Loading variables including peak force, peak pressure, and pressure-time integral were extracted from eight foot regions. Performance stability of plantar loading variables during the take-off and landing steps were assessed using the sequential averaging technique and intra-class correlation coefficient (ICC). High plantar loadings were experienced at the heel during the take-off steps, and both the heel and forefoot regions upon landing. The sequential estimation technique revealed a five-eight trial range to achieve a stable mean across all plantar loading variables, whereas ICC analysis was insensitive to inter-trial differences of repeated lay-up performances. Future studies and performance evaluation protocols on plantar loading during basketball lay-ups should include at least eight trials to ensure that the measurements obtained are sufficiently stable.
(1)剖析在实际场景中进行篮球上篮动作时的足底负荷特征;(2)确定在上篮过程中建立足底负荷变量稳定均值所需的试验次数。13名大学男子篮球运动员[年龄:23.0(1.4)岁,身高:1.75(0.05)米,体重:68.4(8.6)千克]从静止位置进行了10次成功的篮球上篮动作。使用Novel Pedar-X鞋内系统记录足底负荷变量。从八个足部区域提取包括峰值力、峰值压力和压力-时间积分在内的负荷变量。采用序贯平均技术和组内相关系数(ICC)评估起跳和落地步骤中足底负荷变量的性能稳定性。起跳步骤中足跟处以及落地时足跟和前足区域均承受较高的足底负荷。序贯估计技术显示,要在所有足底负荷变量上实现稳定均值,试验次数范围为5至8次,而ICC分析对重复上篮动作的试验间差异不敏感。未来关于篮球上篮动作中足底负荷的研究和性能评估方案应至少包括8次试验,以确保所获得的测量结果足够稳定。