DocumentCode
722832
Title
Reliability and sensitivity analysis on the center of pressure measures in healthy young adults using Nintendo Wii balance board
Author
Xiaoting Qu ; Wenya Nan ; Chi Man Wong ; Feng Wan ; Yong Hu
Author_Institution
Dept. of Electr. & Comput. Eng., Univ. of Macau, Macau, China
fYear
2015
fDate
12-14 June 2015
Firstpage
1
Lastpage
4
Abstract
Balance ability is closely associated with human´s physical capability in various aspects from sports performance in athletes, reduced motor functional control in elder people, and the falls in the patients with neurologic disease such as stroke. A good balance evaluation method is therefore quite important and center of pressure (CoP) trajectories measured by a laboratory based force platform (FP) is considered as a gold standard for balance assessment despite its expensive and complicated setup process. This paper investigates the reliability and sensitivity on the CoP measures in healthy young adults using Nintendo Wii Balance Board (WBB) which is a cheaper solution to this problem. Two main parameters used in this study are the mean CoP path velocity (the summation of all the distance between adjacent CoP points, divided by the used time) and the mean absolute CoP sway distance (the mean distance between the CoP point and the mean value of (x, y) (virtual center)), from CoP trajectories (x, y) information. An experiment for acquiring CoP data through WBB was designed and 16 participants were recruited to perform the balance test during quiet standing in two and single leg, under eyes-open and eyes-closed conditions. Paired t-test was performed and the intraclass correlation coefficient (ICC) was calculated in the statistics analysis. The experiment results showed good reliability and sensitivity of WBB in this test.
Keywords
biomechanics; biomedical engineering; diseases; mechanoception; reliability; sensitivity analysis; statistical analysis; CoP data; CoP measurement reliability; CoP measurement sensitivity analysis; CoP trajectory information; Nintendo Wii balance board; balance ability; balance assessment; balance evaluation method; balance test; center of pressure measurement; eyes-closed condition; eyes-open condition; force platform; human physical capability; intraclass correlation coefficient; mean CoP path velocity; mean absolute CoP sway distance; motor functional control; neurologic disease; sport performance; standing position; statistics analysis; stroke; Force; Force measurement; Legged locomotion; Pressure measurement; Reliability; Sensitivity; Trajectory; ICC; balace evaluation; center of pressure; physical balance; reliability;
fLanguage
English
Publisher
ieee
Conference_Titel
Computational Intelligence and Virtual Environments for Measurement Systems and Applications (CIVEMSA), 2015 IEEE International Conference on
Conference_Location
Shenzhen
Type
conf
DOI
10.1109/CIVEMSA.2015.7158590
Filename
7158590
Link To Document