Relationship Between Body Composition and Balance Performance in Older Adults with Hyperkyphosis

Purpose Older adults with hyperkyphosis might have a high risk of falls since their whole body center of mass may shift to the boundary of the base of support. Body composition changes, such as low bone mineral content (BMC), decreased muscle mass, high body mass index (BMI), and increased fat mass...

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Published inJournal of medical and biological engineering Vol. 41; no. 1; pp. 53 - 58
Main Authors Kantha, Phunsuk, Tsai, Shiow-Chwen, Hou, Chien-Wen, Yang, Rong-Sen, Su, Pei-Yu, Hsu, Wei-Li
Format Journal Article
LanguageEnglish
Published Berlin/Heidelberg Springer Berlin Heidelberg 01.02.2021
Springer Nature B.V
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Abstract Purpose Older adults with hyperkyphosis might have a high risk of falls since their whole body center of mass may shift to the boundary of the base of support. Body composition changes, such as low bone mineral content (BMC), decreased muscle mass, high body mass index (BMI), and increased fat mass are common in older adults with hyperkyphosis. This study aimed to investigate the relationship between body composition and balance performance using a biomechanical analysis in older adults with hyperkyphosis. Methods Thirty older adults with hyperkyphosis were recruited. BMC, muscle mass, BMI, and fat mass were measured for body composition. Balance performances were determined with walking, quiet standing, and forward reach. Gait speed, step length, center of mass–center of pressure inclination angle of heel strike (Inc-HS) and toe off (Inc-TO) during walking, center of mass–center of pressure inclination angle during quiet standing (Inc-QS), and reaching distance were calculated. Results BMC had a moderately positive correlation with gait speed (r = 0.48, p  < 0.01) and a moderately positive correlation with step length (r = 0.43, p  = 0.01). Muscle mass had a moderately positive correlation with step length (r = 0.41, p  = 0.02), moderately positive correlation with Inc-HS (r = 0.36, p  = 0.04), and moderately positive correlation with reaching distance (r = 0.43, p  = 0.01). No significant correlations were found among BMI, fat mass and balance performance. Conclusion BMC and muscle mass should be considered as factors that might affect walking and forward reach in older adults with hyperkyphosis.
AbstractList PurposeOlder adults with hyperkyphosis might have a high risk of falls since their whole body center of mass may shift to the boundary of the base of support. Body composition changes, such as low bone mineral content (BMC), decreased muscle mass, high body mass index (BMI), and increased fat mass are common in older adults with hyperkyphosis. This study aimed to investigate the relationship between body composition and balance performance using a biomechanical analysis in older adults with hyperkyphosis.MethodsThirty older adults with hyperkyphosis were recruited. BMC, muscle mass, BMI, and fat mass were measured for body composition. Balance performances were determined with walking, quiet standing, and forward reach. Gait speed, step length, center of mass–center of pressure inclination angle of heel strike (Inc-HS) and toe off (Inc-TO) during walking, center of mass–center of pressure inclination angle during quiet standing (Inc-QS), and reaching distance were calculated.ResultsBMC had a moderately positive correlation with gait speed (r = 0.48, p < 0.01) and a moderately positive correlation with step length (r = 0.43, p = 0.01). Muscle mass had a moderately positive correlation with step length (r = 0.41, p = 0.02), moderately positive correlation with Inc-HS (r = 0.36, p = 0.04), and moderately positive correlation with reaching distance (r = 0.43, p = 0.01). No significant correlations were found among BMI, fat mass and balance performance.ConclusionBMC and muscle mass should be considered as factors that might affect walking and forward reach in older adults with hyperkyphosis.
Purpose Older adults with hyperkyphosis might have a high risk of falls since their whole body center of mass may shift to the boundary of the base of support. Body composition changes, such as low bone mineral content (BMC), decreased muscle mass, high body mass index (BMI), and increased fat mass are common in older adults with hyperkyphosis. This study aimed to investigate the relationship between body composition and balance performance using a biomechanical analysis in older adults with hyperkyphosis. Methods Thirty older adults with hyperkyphosis were recruited. BMC, muscle mass, BMI, and fat mass were measured for body composition. Balance performances were determined with walking, quiet standing, and forward reach. Gait speed, step length, center of mass–center of pressure inclination angle of heel strike (Inc-HS) and toe off (Inc-TO) during walking, center of mass–center of pressure inclination angle during quiet standing (Inc-QS), and reaching distance were calculated. Results BMC had a moderately positive correlation with gait speed (r = 0.48, p  < 0.01) and a moderately positive correlation with step length (r = 0.43, p  = 0.01). Muscle mass had a moderately positive correlation with step length (r = 0.41, p  = 0.02), moderately positive correlation with Inc-HS (r = 0.36, p  = 0.04), and moderately positive correlation with reaching distance (r = 0.43, p  = 0.01). No significant correlations were found among BMI, fat mass and balance performance. Conclusion BMC and muscle mass should be considered as factors that might affect walking and forward reach in older adults with hyperkyphosis.
Author Hou, Chien-Wen
Hsu, Wei-Li
Yang, Rong-Sen
Kantha, Phunsuk
Tsai, Shiow-Chwen
Su, Pei-Yu
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Keywords Biomechanics
Balance performance
Older adults
Hyperkyphosis
Body composition
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Snippet Purpose Older adults with hyperkyphosis might have a high risk of falls since their whole body center of mass may shift to the boundary of the base of support....
PurposeOlder adults with hyperkyphosis might have a high risk of falls since their whole body center of mass may shift to the boundary of the base of support....
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StartPage 53
SubjectTerms Adults
Balance
Biomechanical engineering
Biomechanics
Biomedical Engineering and Bioengineering
Body composition
Body fat
Body mass index
Body size
Bone composition
Bone mass
Bone mineral content
Cell Biology
Center of mass
Center of pressure
Correlation
Engineering
Gait
Heels
Imaging
Inclination angle
Muscles
Older people
Original Article
Radiology
Walking
Title Relationship Between Body Composition and Balance Performance in Older Adults with Hyperkyphosis
URI https://link.springer.com/article/10.1007/s40846-020-00578-9
https://www.proquest.com/docview/2497164969
Volume 41
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