Suppr超能文献

运动计划错误:使用可穿戴设备测量老年人的认知脆弱性。

Motor Planning Error: Toward Measuring Cognitive Frailty in Older Adults Using Wearables.

机构信息

Interdisciplinary Consortium on Advanced Motion Performance (iCAMP), Michael E. DeBakey Department of Surgery, Baylor College of Medicine, Houston, TX 77030, USA.

Network Aging Research, Heidelberg University, 69115 Heidelberg, Germany.

出版信息

Sensors (Basel). 2018 Mar 20;18(3):926. doi: 10.3390/s18030926.

Abstract

Practical tools which can be quickly administered are needed for measuring subtle changes in cognitive-motor performance over time. Frailty together with cognitive impairment, or 'cognitive frailty', are shown to be strong and independent predictors of cognitive decline over time. We have developed an interactive instrumented trail-making task (iTMT) platform, which allows quantification of motor planning error (MPE) through a series of ankle reaching tasks. In this study, we examined the accuracy of MPE in identifying cognitive frailty in older adults. Thirty-two older adults (age = 77.3 ± 9.1 years, body-mass-index = 25.3 ± 4.7 kg/m², female = 38%) were recruited. Using either the Mini-Mental State Examination or Montreal Cognitive Assessment (MoCA), 16 subjects were classified as cognitive-intact and 16 were classified as cognitive-impaired. In addition, 12 young-healthy subjects (age = 26.0 ± 5.2 years, body-mass-index = 25.3 ± 3.9 kg/m², female = 33%) were recruited to establish a healthy benchmark. Subjects completed the iTMT, using an ankle-worn sensor, which transforms ankle motion into navigation of a computer cursor. The iTMT task included reaching five indexed target circles (including numbers 1-to-3 and letters A&B placed in random order) on the computer-screen by moving the ankle-joint while standing. The ankle-sensor quantifies MPE through analysis of the pattern of ankle velocity. MPE was defined as percentage of time deviation between subject's maximum ankle velocity and the optimal maximum ankle velocity, which is halfway through the reaching pathway. Data from gait tests, including single task and dual task walking, were also collected to determine cognitive-motor performance. The average MPE in young-healthy, elderly cognitive-intact, and elderly cognitive-impaired groups was 11.1 ± 5.7%, 20.3 ± 9.6%, and 34.1 ± 4.2% ( < 0.001), respectively. Large effect sizes (Cohen's = 1.17-4.56) were observed for discriminating between groups using MPE. Significant correlations were observed between the MPE and MoCA score ( = -0.670, < 0.001) as well as between the MPE and dual task stride velocity ( = -0.584, < 0.001). This study demonstrated feasibility and efficacy of estimating MPE from a practical wearable platform with promising results in identifying cognitive-motor impairment and potential application in assessing cognitive frailty. The proposed platform could be also used as an alternative to dual task walking test, where gait assessment may not be practical. Future studies need to confirm these observations in larger samples.

摘要

需要实用的工具来快速测量认知运动表现随时间的细微变化。虚弱以及认知障碍,或“认知衰弱”,被证明是随时间认知能力下降的强有力且独立的预测因素。我们开发了一种交互式的测试任务(iTMT)平台,它可以通过一系列的踝关节到达任务来量化运动规划错误(MPE)。在这项研究中,我们检查了 MPE 在识别老年人认知衰弱方面的准确性。招募了 32 名老年人(年龄=77.3±9.1 岁,体重指数=25.3±4.7kg/m²,女性=38%)。使用简易精神状态检查或蒙特利尔认知评估(MoCA),16 名受试者被归类为认知正常,16 名受试者被归类为认知障碍。此外,还招募了 12 名健康的年轻受试者(年龄=26.0±5.2 岁,体重指数=25.3±3.9kg/m²,女性=33%),以建立健康基准。受试者使用脚踝佩戴的传感器完成 iTMT,该传感器将脚踝运动转换为计算机光标导航。iTMT 任务包括通过站立时移动踝关节来在计算机屏幕上的五个索引目标圆(包括数字 1-3 和随机放置的字母 A 和 B)。脚踝传感器通过分析脚踝速度的模式来量化 MPE。MPE 定义为受试者最大脚踝速度与最佳最大脚踝速度之间的时间偏差百分比,最佳最大脚踝速度是到达路径的一半。还收集了步态测试的数据,包括单任务和双任务行走,以确定认知运动表现。在年轻健康组、老年认知正常组和老年认知障碍组中,MPE 的平均值分别为 11.1±5.7%、20.3±9.6%和 34.1±4.2%(<0.001)。使用 MPE 区分组之间的大效应量(Cohen's = 1.17-4.56)。观察到 MPE 与 MoCA 评分(= -0.670,<0.001)之间以及 MPE 与双任务步速(= -0.584,<0.001)之间存在显著相关性。这项研究证明了从实用的可穿戴平台估计 MPE 的可行性和有效性,该平台在识别认知运动障碍方面具有有希望的结果,并可能在评估认知衰弱方面具有应用前景。该平台还可以用作双任务行走测试的替代方法,在这种方法中,步态评估可能不切实际。未来的研究需要在更大的样本中证实这些观察结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f884/5876674/4a0ca3161e6a/sensors-18-00926-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验