Examining Gender and Body Mass Index Differences in Movement Assessment Battery for Children-3 Performance among 18-25 Year Olds

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Bibliographic Details
Title: Examining Gender and Body Mass Index Differences in Movement Assessment Battery for Children-3 Performance among 18-25 Year Olds
Language: English
Authors: Dimetrius Brandon (ORCID 0009-0006-9793-4804), Taliah J. Carlson (ORCID 0009-0006-3326-6237), Abigail Lovingood (ORCID 0009-0001-6774-2688), Alaina Hornyak, Devin Ellison, E. Kipling Webster (ORCID 0000-0002-4235-139X)
Source: Journal of Motor Learning and Development. 2026 14(1).
Availability: Human Kinetics, Inc. 1607 North Market Street, Champaign, IL 61820. Tel: 800-474-4457; Fax: 217-351-1549; e-mail: info@hkusa.com; Web site: https://journals.humankinetics.com/view/journals/jmld/jmld-overview.xml
Peer Reviewed: Y
Page Count: 7
Publication Date: 2026
Document Type: Journal Articles
Reports - Research
Education Level: Higher Education
Postsecondary Education
Descriptors: Gender Differences, Body Composition, Psychomotor Skills, Young Adults, Body Height, Body Weight, College Students, Individual Characteristics
Assessment and Survey Identifiers: Movement Assessment Battery for Children
DOI: 10.1123/jmld.2025-0071
ISSN: 2325-3193
2325-3215
Abstract: Motor skills are important for lifelong health and are often assessed in childhood, with well-documented gender and weight differences. However, how these differences persist into young adulthood remains less understood and underexplored. The purpose of this study was to examine gender and body mass index differences in motor skills among young adults (18-25 years) using the Movement Assessment Battery for Children-3. 131 young adults were recruited, and 123 (46% male, M[subscript age] = 21.86 ± 1.87 years) completed the Movement Assessment Battery for Children-3 and self-reported demographic information. Height and weight were objectively measured, and body mass index was calculated (in kilogram per square meter). A Kruskal--Wallis test was used on Movement Assessment Battery for Children-3 subscales and total scores due to violations of normality and visual inspections of plots. There was a significant effect for gender on aiming and catching (p < 0.001), with males outperforming females. Conversely, females outperformed males in manual dexterity (p < 0.001) and balance (p = 0.013). Participants classified as normal weight performed significantly better than those overweight (p = 0.015) on balance. No significant main effects were found on total motor scores for either gender or body mass index (all p > 0.05). Results emphasize the need to further explore how gender and weight influence motor skills in young adults and how these relationships are mediated by other health outcomes.
Abstractor: As Provided
Entry Date: 2026
Accession Number: EJ1508590
Database: ERIC
Description
Abstract:Motor skills are important for lifelong health and are often assessed in childhood, with well-documented gender and weight differences. However, how these differences persist into young adulthood remains less understood and underexplored. The purpose of this study was to examine gender and body mass index differences in motor skills among young adults (18-25 years) using the Movement Assessment Battery for Children-3. 131 young adults were recruited, and 123 (46% male, M[subscript age] = 21.86 ± 1.87 years) completed the Movement Assessment Battery for Children-3 and self-reported demographic information. Height and weight were objectively measured, and body mass index was calculated (in kilogram per square meter). A Kruskal--Wallis test was used on Movement Assessment Battery for Children-3 subscales and total scores due to violations of normality and visual inspections of plots. There was a significant effect for gender on aiming and catching (p < 0.001), with males outperforming females. Conversely, females outperformed males in manual dexterity (p < 0.001) and balance (p = 0.013). Participants classified as normal weight performed significantly better than those overweight (p = 0.015) on balance. No significant main effects were found on total motor scores for either gender or body mass index (all p > 0.05). Results emphasize the need to further explore how gender and weight influence motor skills in young adults and how these relationships are mediated by other health outcomes.
ISSN:2325-3193
2325-3215
DOI:10.1123/jmld.2025-0071