左侧单侧空间忽视模型下站立平衡控制测量的效度和信度

A. C. Meidian, Song Yige, S. Lesmana, K. Amimoto
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引用次数: 1

摘要

背景:本研究开发了一种头戴式显示器,将网络摄像头的视觉方向修改为右侧,作为关于姿势平衡控制的左侧单侧空间忽略(USN)模型。目的:评估使用USN模型的健康受试者静态站立平衡(SSB)和动态站立平衡(DSB)的压力中心(CoP)测量值的效度和信度,并探讨该模型的使用是否影响姿势平衡控制。方法:采用便携式CoP力板量化64例健康受试者的体位平衡控制。评估非USN和USN模型在中外侧(ML)和前后(AP)平面的CoP位移,SSB和DSB的CoP长度和双侧载荷比向右(R)和向左(L)。结果:回归分析表明,大多数CoP测量具有良好的并发效度。Bland-Altman图显示非美国海军模式和美国海军模式在CoP测量中的一致性很好。两次测量之间的重测信度估计在额状面和矢状面是不同的。结果表明,SSB组的CoP- ap和CoP长度变化显著(分别为-1.40%和7.67%)(P<0.05)。此外,当被试作为模型时,DSB-R和DSB-L的CoP-AP呈相反方向变化(分别为-1.50%和1.86%),差异均极显著(P<0.01)。结论:在非USN和USN模型中,CoP测量对于量化站立平衡控制是有效和可靠的,这些模型似乎调节了姿势适应和调整的变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Validity and reliability of standing balance control measurement on the left unilateral spatial neglect model
BACKGROUND: The present study developed a head-mounted display with the visual direction of a web camera modified to the right as a left unilateral spatial neglect (USN) model with respect to postural balance control. AIM: We aimed to estimate the validity and reliability of center of pressure (CoP) measurements in static standing balance (SSB) and dynamic standing balance (DSB) of healthy participants were using the USN model and to examine whether this model's use influenced postural balance control. METHOD: A portable CoP force plate was used to quantify postural balance control in 64 healthy participants as the model. The CoP displacement of the non-USN and USN models in the medial-lateral (ML) and anterior-posterior (AP) planes, CoP length, and bilateral load ratio in SSB and DSB to the right (R) and left (L) were evaluated. RESULTS: Regression analysis indicated that most CoP measurements have excellent concurrent validity. Bland–Altman plots showed good agreement between the non-USN and USN models in the CoP measurements. Test-retest reliability estimation between two times measurements varied in the frontal and sagittal planes. A Comparison of the results demonstrated that the CoP-AP and CoP length changed (-1.40% and 7.67%, respectively) significantly in SSB (P<0.05). Moreover, the CoP-AP changed very significantly in DSB-R and DSB-L (-1.50% and 1.86%, respectively) in opposite directions (P<0.01) when the subjects performed as the model. CONCLUSION: CoP measurements are valid and reliable to quantify standing balance control in both non-USN and USN models that appear to modulate changes in postural adaptation and adjustment.
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