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从无约束和有约束负重下蹲跳评估的力学变量的可靠性和大小

Reliability and magnitude of mechanical variables assessed from unconstrained and constrained loaded countermovement jumps.

作者信息

García-Ramos Amador, Jaric Slobodan, Pérez-Castilla Alejandro, Padial Paulino, Feriche Belén

机构信息

a Faculty of Sport Sciences, Department of Physical Education and Sport , University of Granada , Granada , Spain.

b Department of Kinesiology and Applied Physiology & Biomechanics and Movement Science Graduate Program , University of Delaware , Newark , NJ , USA.

出版信息

Sports Biomech. 2017 Nov;16(4):514-526. doi: 10.1080/14763141.2016.1246598. Epub 2017 Feb 24.

Abstract

This study aimed to (1) assess the reliability of the force, velocity, and power output variables measured by a force plate and a linear velocity transducer (LVT) for both the unconstrained and constrained loaded countermovement jump (CMJ), and (2) examine the effect of both the CMJ type and the measurement method on the magnitudes of the same variables. Twenty-three men were tested on the free CMJ and the CMJ constrained by a Smith machine. Maximum values of force, velocity, and power were recorded by a force plate and by a LVT attached to a bar loaded by 17, 30, 45, 60, and 75 kg. The reliability of all mechanical variables proved to be high (ICC > 0.70; CV < 10%) and similar for two CMJ types. However, force plate-derived measures displayed greater reliability than the LVT. The LVT also markedly overestimated the magnitudes of the mechanical variables, particularly at lower external loads. Therefore, although both jump types and both methods could be acceptable for routine testing, we recommend the force platform due to a higher reliability and more accurate magnitudes of the obtained variables. The unconstrained loaded CMJ could also be recommended due to the simpler equipment needed.

摘要

本研究旨在

(1)评估测力板和线性速度传感器(LVT)测量的力、速度和功率输出变量在无约束和有约束负重下蹲跳(CMJ)中的可靠性;(2)研究CMJ类型和测量方法对相同变量大小的影响。对23名男性进行了自由CMJ和受史密斯机约束的CMJ测试。通过测力板和连接在加载17、30、45、60和75千克杠铃的横杆上的LVT记录力、速度和功率的最大值。所有力学变量的可靠性都很高(组内相关系数>0.70;变异系数<10%),且两种CMJ类型相似。然而,测力板测量的结果显示出比LVT更高的可靠性。LVT也明显高估了力学变量的大小,尤其是在较低的外部负荷下。因此,尽管两种跳跃类型和两种方法都可用于常规测试,但由于可靠性更高且所获变量大小更准确,我们推荐使用测力平台。由于所需设备更简单,也可推荐无约束负重CMJ。

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