Relationships Between Anthropometric Measures and Body Composition With Individual ACFT Event Performance Among Army Reserve Officers’ Training Corps Cadets

Megan Thompson, Daniel Lawson, Rob Marc Orr, Robert G. Lockie, J. Jay Dawes

Research output: Contribution to journalArticleResearchpeer-review

Abstract

The U.S. military commonly uses body composition as an indicator of a soldier’s potential to meet the physical demands required of their occupation. The purpose of this study was to determine whether significant relationships existed between select body composition variables and Army Combat Fitness Test (ACFT) performance among a cohort of university Army Reserve Officers’ Training Corps (ROTC) cadets. Twenty-six male (20.461.6 years, 81.868.5 kg, 178.367.8 cm) and 12 female (19.961.4 years, 64.266.7 kg, 161.964.9 cm) cadets voluntarily participated in this study. Body composition was measured using bioelectrical impedance analysis, and ACFT event scores were recorded by the cadre using the U.S. Army standard protocol and provided to the investigators. Pearson’s correlations were used to identify relationships between body composition variables and ACFT event performance with an alpha level of p # 0.05. Moderate to strong relationships were observed between total body water, dry lean mass, lean body mass, skeletal muscle mass, body fat mass (FM), and body fat percentage and all event scores for the sample as a whole.
Body mass index showed weak to moderate significant positive relationships with hand-release push-up and maximum hexagonal bar deadlift in the sample as a whole. No relationships were observed in the men of this sample. All body composition variables showed moderate, nonsignificant relationships with at least 1 ACFT event within the women of this sample. Considering the findings of this study, a multitude of variables could be useful to assess ROTC cadets as predictors for ACFT performance. Reserve Officers’ Training Corps programs should emphasize attaining and maintaining functional lean mass, whereas reducing nonfunctional body mass (i.e., excess FM) among cadets to enhance health and performance across the occupational life span.
Original languageEnglish
Pages (from-to)1-6
Number of pages6
JournalJournal of Strength and Conditioning Research
DOIs
Publication statusPublished - 13 Dec 2023

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