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Comparative analysis of postural control and vertical jump performance between three different measurement devices

机译:三种不同测量装置姿势控制与垂直跳跃性能的比较分析

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摘要

ObjectivesThe aim of this study was to examine the concurrent validity of the HUMAC Balance System (HBS) and Balance Trainer BTG4 (BTG) in comparison to a laboratory-grade force platform (FP) for postural control (PC) and vertical jump performance (VJP) assessment. In addition, reliability of the three devices was measured for PC.MethodsOverall 22 participants (age = 37.8 ± 13.3 years; gender = 9 male, 13 female; height = 174.1 ± 10.5 cm; body mass = 75.3 ± 17.6 kg) were recruited to participate. Double and single leg standing balance tests with eyes open or closed and counter movement jumps (CMJ) were performed on two separate occasions. Reliability and concurrent validity for COP parameters and VJP were examined using intraclass correlation coefficients (ICC), Bland-Altman plots (BAP), standard error of measurement (SEM) and minimum detectable change (MDC).ResultsCOP path length test-retest reliability was predominantly good to excellent for all three devices (ICC = 0.80-0.95). SEM and MDC values were high for all plates (SEM% = 8.0-15.2; MDC% = 22.8-44.5), with the HBS MDC values higher than the KIS and BTG in three of the four trials. ICC scores for concurrent validity were good to excellent for the BTG (ICC = 0.76-0.93) and moderate to good for the HBS (0.49-0.83). Band-Altman plots revealed a systematic bias for the HBS towards higher COP path length values under all conditions and for the BTG in two out of four trials towards lower values. Validity of VJP was excellent for the BTG (ICC = 1.0) and poor for the HBS (0.34), with a systematic bias towards lower values.ConclusionThe comparative analysis of PC and VJP revealed reliable and valid results for the BTG in comparison to a laboratory-grade force plate. The HBS showed reliable results for PC assessment with restrictions regarding its validity. Results of VJP showed that the HBS revealed deficits in the assessment of activities that require rapid, high force movements such as jumping and running. Due to the variable results of all three devices, it is recommended not to use them interchangeably.
机译:本研究的客观目的是审查Humac平衡系统(HBS)和平衡培训师BTG4(BTG)的并发有效性与实验室级力平台(FP)进行姿势控制(PC)和垂直跳跃性能(VJP ) 评估。此外,针对PC.Methodsoverall 22参与者测量了三个设备的可靠性(年龄= 37.8±13.3岁;性别= 9只男性,13名女性;高度= 174.1±10.5厘米;体重= 75.3±17.6千克)被募集到参加。用眼睛打开或闭合和反向运动跳跃(CMJ)的双腿站立平衡测试是在两个单独的场合进行的。使用Intraclass相关系数(ICC),Bland-Altman Plots(BAP),测量标准误差(SEM)和最小可检测变化(MDC).ResultScop路径长度测试 - 重度可靠性测试 - 重新检测可靠性的可靠性和VJP对COP参数和VJP的可靠性和并发有效性主要适用于所有三个设备(ICC = 0.80-0.95)。所有板的SEM和MDC值高(SEM%= 8.0-15.2; MDC%= 22.8-44.5),HBS MDC值高于四项试验中的三种试验中的三种试验中的3个。对于BTG(ICC = 0.76-0.93)和适用于HBS(0.49-0.83),ICC的同时有效性的分数良好至关重要。 Band-Altman图揭示了HBS朝向所有条件下的高级COP路径长度值的系统偏见,并为BTG朝向较低值的四个试验中的两个试验中。 VJP的有效性对于BTG(ICC = 1.0)而言,HBS(0.34)的差具有差,具有较低值的系统偏差。结论PC和VJP的比较分析与实验室相比,BTG的可靠性和有效的结果 - 逼迫板。 HBS对PC评估具有可靠的结果,其有效性限制。 VJP的结果表明,HBS在评估需要快速,高力运动的活动中显示赤字,例如跳跃和运行。由于所有三种设备的可变结果,建议不要互换使用它们。

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