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New insights into neck-pain-related postural control using measures of signal frequency and complexity in older adults

机译:老年人信号频率和复杂性测量对颈痛相关姿势控制的新见解

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There is evidence to implicate the role of the cervical spine in influencing postural control, however the underlying mechanisms are unknown. The aim of this study was to explore standing postural control mechanisms in older adults with neck pain (NP) using measures of signal frequency (wavelet analysis) and complexity (entropy).This cross-sectional study compared balance performance of twenty older adults with (age. = 70.3. ±. 4.0 years) and without (age. = 71.4. ±. 5.1 years) NP when standing on a force platform with eyes open and closed. Anterior-posterior centre-of-pressure data were processed using wavelet analysis and sample entropy. Performance-based balance was assessed using the Timed Up-and-Go (TUG) and Dynamic Gait Index (DGI).The NP group demonstrated poorer functional performance (TUG and DGI, p<. 0.01) than the healthy controls. Wavelet analysis revealed that standing postural sway in the NP group was positively skewed towards the lower frequency movement (very-low [0.10-0.39. Hz] frequency content, p<. 0.01) and negatively skewed towards moderate frequency movement (moderate [1.56-6.25. Hz] frequency content, p= 0.012). Sample entropy showed no significant differences between groups (p>. 0.05).Our results demonstrate that older adults with NP have poorer balance than controls. Furthermore, wavelet analysis may reveal unique insights into postural control mechanisms. Given that centre-of-pressure signal movements in the very-low and moderate frequencies are postulated to be associated with vestibular and muscular proprioceptive input respectively, we speculated that, because NP demonstrate a diminished ability to recruit the muscular proprioceptive system compared to controls, they rely more on the vestibular system for postural stability.
机译:有证据暗示颈椎在影响姿势控制中的作用,但是其潜在机制尚不清楚。这项研究的目的是通过信号频率(小波分析)和复杂性(熵)的测量方法来探讨颈痛(NP)老年人的站立姿势控制机制。本横断面研究比较了20名老年人与(年龄= 70.3。±。4.0岁)和没有(年龄= 71.4。±5.1岁)NP站立在受力平台上且睁眼和闭眼时。使用小波分析和样本熵处理前后压力中心数据。使用定时向上移动(TUG)和动态步态指数(DGI)评估基于表现的平衡。NP组的功能表现(TUG和DGI,p <.0.01)比健康对照组差。小波分析表明,NP组的站立姿势偏向低频运动(非常低[0.10-0.39.Hz]频率含量,p <.0.01),而偏向中等频率运动(中等[1.56- 6.25Hz]频率含量,p = 0.012)。样本熵显示各组之间无显着差异(p> 0.05)。我们的结果表明,NP的老年人比对照组的平衡差。此外,小波分析可能揭示姿势控制机制的独特见解。考虑到假设极低和中等频率的压力中心信号运动分别与前庭和肌肉本体感受输入有关,我们推测,由于NP与对照组相比,其招募肌肉本体感受系统的能力降低了,他们更多地依靠前庭系统来保持姿势稳定。

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