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身体认知评估系统的开发与验证

Development and Validation of the Body Cognition Assessment System.

作者信息

Ikejiri Ikumi, Murakami Takashi, Yamauchi Ryosuke, Yamaguchi Hideaki, Kodama Takayuki

机构信息

Graduate School of Health Sciences, Kyoto Tachibana University, Kyoto 607-8175, Japan.

Kyoto Tachibana University, Kyoto 607-8175, Japan.

出版信息

Brain Sci. 2023 Aug 24;13(9):1237. doi: 10.3390/brainsci13091237.

Abstract

Body awareness, which comprises the sense of body possession and action ownership, is essential for the adaptive movement of humans in response to external environments. However, existing body cognition assessments include many overt elements of cognitive functional activity, but no assessment captures the latent body cognition necessary for exercise and daily life activities. Therefore, this study aimed to devise a body cognition assessment system (BCAS) to examine the functional basis of body cognition in healthy participants and investigate its usefulness. The BCAS was used to assess body cognition on three occasions, and BCAS values were calculated from the results of the assessment. The intraclass correlation coefficient (ICC) was used to determine reproducibility. Neural activity in the brain during somatocognition assessment while conducting the BCAS was measured by electroencephalogram. Moreover, the functional basis for somatocognition with the BCAS was also investigated. The results demonstrated that the BCAS values varied across the three administrations (ICC (1.3) = 0.372), and changes in the state of neural activity in the brain were observed. The results suggest that assessment using the BCAS may be a new indicator of ever-changing body cognition.

摘要

身体意识包括身体拥有感和动作所有权感,对于人类适应外部环境的运动至关重要。然而,现有的身体认知评估包括许多认知功能活动的显性元素,但没有评估能够捕捉到运动和日常生活活动所需的潜在身体认知。因此,本研究旨在设计一种身体认知评估系统(BCAS),以检查健康参与者身体认知的功能基础并研究其有用性。使用BCAS在三个时间点评估身体认知,并根据评估结果计算BCAS值。使用组内相关系数(ICC)来确定可重复性。在进行BCAS时,通过脑电图测量体感认知评估期间大脑中的神经活动。此外,还研究了BCAS体感认知的功能基础。结果表明,BCAS值在三次评估中有所不同(ICC(1.3)=0.372),并且观察到大脑神经活动状态的变化。结果表明,使用BCAS进行评估可能是不断变化的身体认知的一个新指标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ed4/10526995/c22e1b497d9e/brainsci-13-01237-g001.jpg

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