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Keith G Hauret

Publications and source records attributed to Keith G Hauret.

8 recordsLinked to original sources

Temporal changes in the physical fitness of US Army recruits.

This article defines physical fitness and then reviews the literature on temporal trends in the physical fitness of new US Army recruits. Nineteen papers were found that met the review criteria and had published recruit fitness data from 1975 to 2003. The limited data on recruit muscle strength suggested an increase from 1978 to 1998 (20-year period). Data on push-ups and sit-ups suggested no change in muscular endurance between 1984 and 2003 (19-year period). Limited data suggested that maximal oxygen uptake (VO2max) [mL/kg/min] of male recruits did not change from 1975 to 1998 (23-year period), while there was some indication of a small increase in female recruit VO2max in the same period. On the other hand, slower times on 1-mile (1.6km) and 2-mile (3.2km) runs indicate declines in aerobic performance from 1987 to 2003 (16-year period). The apparent discrepancy between the VO2max and endurance running data may indicate that recruits are not as proficient at applying their aerobic capability to performance tasks, such as timed runs, possibly because of factors such as increased bodyweight, reduced experience with running, lower motivation and/or environmental factors. Recruit height, weight and body mass index have progressively increased between 1978 and 2003 (25-year period). Both the body fat and fat-free mass of male recruits increased from 1978 to 1998 (20-year period); however, body composition data on female recruits did not show a consistent trend. In this same time period, the literature contained little data on youth physical activity but there was some suggestion that caloric consumption increased. This article indicates that temporal trends in recruit fitness differ depending on the fitness component measured. The very limited comparable data on civilian populations showed trends similar to the recruit data.

Body Composition↗

Increasing the physical fitness of low-fit recruits before basic combat training: an evaluation of fitness, injuries, and training outcomes.

Recruits arriving for basic combat training (BCT) between October 1999 and May 2004 were administered an entry-level physical fitness test at the reception station. If they failed the test, then they entered the Fitness Assessment Program (FAP), where they physically trained until they passed the test and subsequently entered BCT. The effectiveness of the FAP was evaluated by examining fitness, injury, and training outcomes. Recruits who failed the test, trained in the FAP, and entered BCT after passing the test were designated the preconditioning (PC) group (64 men and 94 women). Recruits who failed the test but were allowed to enter BCT without going into the FAP were called the no preconditioning (NPC) group (32 men and 73 women). Recruits who passed the test and directly entered BCT were designated the no need of preconditioning (NNPC) group (1,078 men and 731 women). Army Physical Fitness Test (APFT) scores and training outcomes were obtained from a company-level database, and injured recruits were identified from cases documented in medical records. The proportions of NPC, PC, and NNPC recruits who completed the 9-week BCT cycle were 59%, 83%, and 87% for men (p < 0.01) and 52%, 69%, and 78% for women (p < 0.01), respectively. Because of attrition, only 63% of the NPC group took the week 7 APFT, compared with 84% and 86% of the PC and NNPC groups, respectively. The proportions of NPC, PC, and NNPC recruits who passed the final APFT after all retakes were 88%, 92%, and 98% for men (p < 0.01) and 89%, 92%, and 97% for women (p < 0.01), respectively. Compared with NNPC men, injury risk was 1.5 (95% confidence interval, 1.0-2.2) and 1.7 (95% confidence interval, 1.0-3.1) times higher for PC and NPC men, respectively. Compared with NNPC women, injury risk was 1.2 (95% confidence interval, 0.9-1.6) and 1.5 (95% confidence interval, 1.1-2.1) times higher for PC and NPC women, respectively. This program evaluation showed that low-fit recruits who preconditioned before BCT had reduced attrition and tended to have lower injury risk, compared with recruits of similar low fitness who did not precondition.

Adolescent↗

The basis for prescribed ability group run speeds and distances in U.S. Army basic combat training.

During the first few days of Army Basic Combat Training (BCT), recruits take a running test and after completing this test they are ranked from fast to slow. Four roughly equal-sized "ability groups" are established from these rankings and recruits run together in these groups for their physical training during BCT. In the past, there has been no formal guidance regarding how fast or how far these ability groups should run. To fill this void, this study provides guidance for running speeds and distances during BCT. The major considerations included are: (1) minimizing injuries, (2) the initial aerobic fitness level of recruits, (3) historical improvements in run times during BCT, (4) historical running speeds of the slower individuals in each ability group, (5) running speeds that must be achieved to "pass" the 2-mile run in BCT, (6) the gender composition of the ability groups, and (7) recommendations from the trainers and field testing. Three databases were analyzed that contained a total of 16,716 men and 11,600 women. Four steps were used in the analyses: (1) establishment of run-time cut points for representative ability groups, (2) determination of initial (starting) run speeds, (3) estimation of changes in run speeds with training, and (4) establishment of run speeds and distances for each week of BCT. Efforts were made to (1) keep the running speeds between 70% and 83% of the estimated maximal oxygen uptake (VO2max) for all ability groups, (2) consider the 2-mile running pace of the slower individuals in each ability group, and (3) keep the total running distance for the two slower ability groups below a total of 25 miles, the apparent threshold for increasing injury incidence. A chart provides speeds and distances for each ability group at each week of BCT. Using these recommended speeds and distances should allow trainees to improve their aerobic fitness, pass the Army Physical Fitness Test, and minimize injuries that result in lost training time and, ultimately, lower fitness levels.

Adolescent↗

Evaluation of a standardized physical training program for basic combat training.

A control group (CG, n = 1,138) that implemented a traditional Basic Combat Training (BCT) physical training (PT) program was compared to an evaluation group (EG, n = 829) that implemented a PT program newly designed for BCT. The Army Physical Fitness Test (APFT) was taken at various points in the PT program, and injuries were obtained from a medical surveillance system. After 9 weeks of training, the proportion failing the APFT was lower in the EG than in the CG (1.7 vs. 3.3%, p = 0.03). After adjustment for initial fitness levels, age, and body mass index, the relative risk of an injury in the CG was 1.6 (95% confidence interval [CI] =1.2-2.0) and 1.5 (95% CI = 1.2-1.8) times higher than in the EG for men and women, respectively. The newly designed PT program resulted in higher fitness test pass rates and lower injury rates compared to a traditional BCT physical training program.

Adaptation, Physiological↗

Physical activity and reduced risk of incident sporadic colorectal adenomas: observational support for mechanisms involving energy balance and inflammation modulation.

To investigate the role of physical activity, energy balance, and inflammation on the risk of incident sporadic colorectal adenoma, the authors conducted a community- and colonoscopy-based case-control study (n = 177 cases, n = 228 controls) in Winston-Salem and Charlotte, North Carolina, from 1995 to 1997. Participants reported energy intake by a semiquantitative food frequency questionnaire, daily physical activity levels by a standardized questionnaire, and anthropometrics by self-assessment. The odds ratios for adenomas comparing the highest and lowest quantiles of exposure were 0.63 (95% confidence interval (CI): 0.34, 1.17) for physical activity, 0.80 (95% CI: 0.37, 1.73) for total energy intake, 0.70 (95% CI: 0.37, 1.34) for body mass index, 1.46 (95% CI: 0.73, 2.92) for waist/hip ratio, and 2.40 (95% CI: 1.24, 4.63) for height. For the combined effects of these factors, risk was particularly low for those with higher physical activity and low waist/hip ratio (odds ratio = 0.37, 95% CI: 0.18, 0.75) or shorter stature (odds ratio = 0.32, 95% CI: 0.16, 0.62). The inverse effect of physical activity was apparent only among those not taking nonsteroidal antiinflammatory drugs (odds ratio = 0.49, 95% CI: 0.25, 0.94). These findings add further evidence that physical activity and overall patterns indicating positive energy balance increase the risk of adenoma. Furthermore, the results suggest indirectly that biologic mechanisms related to inflammation may play a role in the beneficial effect of physical activity on the risk of incident adenoma.

Adenoma↗

Outcomes of Fort Jackson's Physical Training and Rehabilitation Program in army basic combat training: return to training, graduation, and 2-year retention.

Basic trainees at Fort Jackson, South Carolina, who were unable to continue basic combat training (BCT) because of a serious injury were assigned to the Physical Training and Rehabilitation Program (PTRP). Between January 3, 1998 and July 24, 2001, 4258 trainees were assigned to the PTRP. Using a retrospective cohort study design, return to training and BCT graduation rates were evaluated. PTRP graduates were compared with matched non-PTRP graduates for 2-year retention in the Army. More PTRP women than men were discharged from the PTRP (60% and 48%, respectively, p < 0.01). Of PTRP trainees returning to BCT, 10% and 12% of men and women, respectively, were discharged from the Army compared with overall Fort Jackson discharge rates of 9% and 15% for men and women, respectively. Comparing PTRP graduates to matched non-PTRP graduates, there were no differences in 2-year retention for men (14.9% and 14.7%, respectively; p = 0.93) or women (26.6% and 30.1%, respectively; p = 0.19). Despite the high discharge rate in the PTRP, the BCT discharge rate for trainees who successfully rehabilitated was similar to the overall discharge rate at Fort Jackson. The 2-year retention in service for PTRP trainees who graduated from BCT was similar to that of non-PTRP trainees.

Adolescent↗

Retention in service of recruits assigned to the army physical fitness test enhancement program in basic combat training.

Recruits are assigned to the Army Physical Fitness Test Enhancement Program (APFTEP) if they are unable to pass the final Army physical fitness test at the end of basic combat training (BCT). The U.S. Army Medical Command tasked the U.S. Army Center for Health Promotion and Preventive Medicine to examine the retention in service of individuals completing this program. To accomplish this tasking, the following data were obtained: a list of APFTEP recruits at Fort Jackson, South Carolina between January 1999 and June 2001; a list of BCT graduates from the Army Training Requirements and Resources System; and a comparison group of non-APFTEP recruits matched 3 to 1 on the basis of age, gender, Army entry date (+/- 30 days), BCT location, and active Army status from the Army Medical Surveillance Activity. We found that the proportion of recruits who successfully completed the APFTEP and graduated from BCT (85% of men, 80% of women) was lower than documented graduation rates for all recruits (93% of men, 87% of women). Retention in service after 1 year was also lower for APFTEP recruits than for non-APFTEP recruits among both men (74% vs. 92%, p < 0.01) and women (63% vs. 84%, p < 0.01). Despite the lower BCT graduation success and retention in service for APFTEP recruits, the program does assist in retaining soldiers who would otherwise be discharged for failing the Army physical fitness test. Thus, the program may be a useful tool for limiting attrition.

Adult↗

Risk factors for injuries during military parachuting.

INTRODUCTION: Parachuting is an activity performed by a variety of occupational groups including the military, firefighters (smoke jumpers), and rescue groups. METHODS: This paper systematically reviewed the literature on injury risk factors for soldiers performing static line parachuting from military aircraft. Jump-related injuries were defined as those occurring from the time the soldier exited the aircraft until he or she released their parachute harness on the ground. RESULTS AND DISCUSSION: Despite methodological differences, where two or more studies examined a particular risk factor, results were generally similar. Higher injury risk was associated with higher wind speed, night jumps, jumps from airplanes (vs. balloons and helicopters), jumps wearing additional equipment jumps without ankle braces, uneven terrain on the drop zone, and female gender. Risk factors identified in only single studies included a greater number of soldiers exiting the aircraft, winds from the rear of the aircraft, simultaneous exits from doors on opposite sides of the aircraft, smaller parachute canopies, higher ambient air temperatures, and airborne refresher courses (vs. introductory courses). Further studies are needed which use a multivariate approach to evaluate the relative impact of the various risk factors and their interactions. CONCLUSIONS: This paper identified a number of risk factors relevant to all parachutists (e.g., wind speed, female gender) and some relevant primarily to the military and other tactical parachutists such as smoke jumpers (e.g., equipment weight). Knowledge of these risk factors can assist parachutists and those that train them in their risk analysis.

Accidents, Occupational↗