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Dive into the research topics where Vaughn W. Barry is active.

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Featured researches published by Vaughn W. Barry.


Medicine and Science in Sports and Exercise | 2010

Sedentary Behaviors Increase Risk of Cardiovascular Disease Mortality in Men

Tatiana Y. Warren; Vaughn W. Barry; Steven P. Hooker; Xuemei Sui; Timothy S. Church; Steven N. Blair

PURPOSE The purpose of this study was to examine the relationship between two sedentary behaviors (riding in a car and watching TV) and cardiovascular disease (CVD) mortality in men in the Aerobics Center Longitudinal Study. METHODS Participants were 7744 men (20-89 yr) initially free of CVD who returned a mail-back survey during 1982. Time spent watching TV and time spent riding in a car were reported. Mortality data were ascertained through the National Death Index until December 31, 2003. Cox regression analysis quantified the association between sedentary behaviors (hours per week watching TV, hours per week riding in a car, and total hours per week in these two behaviors) and CVD mortality rates. RESULTS Three hundred and seventy-seven CVD deaths occurred during 21 yr of follow-up. After age adjustment, time riding in a car and combined time spent in these two sedentary behaviors were positively (P(trend) < 0.001) associated with CVD death. Men who reported >10 h x wk(-1) riding in a car or >23 h x wk(-1) of combined sedentary behavior had 82% and 64% greater risk of dying from CVD than those who reported <4 or <11 h x wk(-1), respectively. The pattern of the association did not materially change after multivariate adjustment. Regardless of the amount of sedentary activity reported by these men, being older, having normal weight, being normotensive, and being physically active were associated with a reduced risk of CVD death. CONCLUSION In men, riding in a car and combined time spent in these two sedentary behaviors were significant CVD mortality predictors. In addition, high levels of physical activity were related to notably lower rates of CVD death even in the presence of high levels of sedentary behavior. Health promotion efforts targeting physically inactive men should emphasize both reducing sedentary activity and increasing regular physical activity for optimal cardiovascular health.


International Journal of Behavioral Nutrition and Physical Activity | 2011

Electronic feedback in a diet- and physical activity-based lifestyle intervention for weight loss: a randomized controlled trial

Vaughn W. Barry; Xuemei Sui; Amanda C. McClain; Gregory A. Hand; Sarah Wilcox; Rebecca A. Meriwether; James W. Hardin; Steven N. Blair

BackgroundThe SenseWear™ Armband (SWA) (BodyMedia, Inc. Pittsburgh, PA) is a physical activity and lifestyle monitor that objectively and accurately measures free-living energy balance and sleep and includes software for self-monitoring of daily energy expenditure and energy intake. The real-time feedback of the SWA can improve individual self-monitoring and, therefore, enhance weight loss outcomes.MethodsWe recruited 197 sedentary overweight or obese adults (age, 46.8 ± 10.8 y; body mass index (BMI), 33.3 ± 5.2 kg/m2; 81% women, 32% African-American) from the greater Columbia, South Carolina area. Participants were randomized into 1 of 4 groups, a self-directed weight loss program via an evidence-based weight loss manual (Standard Care, n = 50), a group-based behavioral weight loss program (GWL, n = 49), the armband alone (SWA-alone, n = 49), or the GWL plus the armband (GWL+SWA, n = 49), during the 9-month intervention. The primary outcome was change in body weight and waist circumference. A mixed-model repeated-measures analysis compared change in the intervention groups to the standard care group on weight and waist circumference status after adjusting for age, sex, race, education, energy expenditure, and recruitment wave.ResultsBody weight was available for 62% of participants at 9 months (52% standard care, 70% intervention). There was significant weight loss in all 3 intervention groups (GWL, 1.86 kg, P = 0.05; SWA-alone, 3.55 kg, P = 0.0002; GWL+SWA, 6.59 kg, P < 0.0001) but not in the Standard Care group (0.89 kg, P = 0.39) at month 9. Only the GWL+SWA group achieved significant weight loss at month 9 compared to the Standard Care group (P = 0.04). Significant waist circumference reductions were achieved in all 4 groups at month 9 (Standard Care, 3.49 cm, P = 0.0004; GWL, 2.42 cm, P = 0.008; SWA-alone, 3.59 cm, P < 0.0001; GWL+SWA, 6.77 cm, P < 0.0001), but no intervention group had significantly reduced waist circumference compared to the Standard Care group.ConclusionsContinuous self-monitoring from wearable technology with real-time feedback may be particularly useful to enhance lifestyle changes that promote weight loss in sedentary overweight or obese adults. This strategy, combined with a group-based behavioral intervention, may yield optimal weight loss.Trial RegistrationClinicalTrials.gov: NCT00957008


Diabetes, Metabolic Syndrome and Obesity: Targets and Therapy | 2011

Using a technology-based intervention to promote weight loss in sedentary overweight or obese adults: a randomized controlled trial study design.

Vaughn W. Barry; Amanda C. McClain; Xuemei Sui; James W. Hardin; Gregory A. Hand; Sarah Wilcox; Steven N. Blair

Purpose: The SenseWear™ Armband is an activity monitor developed to improve lifestyle self-monitoring. Currently, few studies assess electronic self-monitoring and weight loss with a lifestyle intervention program. To our knowledge, only one study has used the SenseWear Armband in combination with a lifestyle intervention to improve weight loss, and no studies have evaluated whether a self-monitoring intervention based solely on the armband can promote weight loss. Consequently, the aims of the study were to assess weight loss from electronic self-monitoring, to compare these values to the lifestyle intervention and standard care groups, and to compare weight loss with lifestyle intervention with and without the armband. Patients and methods: We recruited 197 sedentary overweight or obese adults (age, 46.8 ± 10.8 years; BMI, 33.3 ± 5.2 kg/m2) to participate in the 9-month study. Participants were randomized into one of four weight loss groups: 1) the standard care group received a self-directed weight loss program, complete with an evidence-based weight loss manual (standard care, n = 50); 2) a 14-week group-based behavioral weight loss program followed by weekly, biweekly, and monthly telephone counseling calls (GWL, n = 49); 3) the use of the armband to help improve lifestyle self-monitoring (SWA alone, n = 49); or (4) the group-based behavioral weight loss program and follow-up telephone counseling calls plus the armband (GWL + SWA, n = 49). All participants received the evidence-based weight loss manual at baseline. All measures were performed at baseline and months 4 and 9. The primary outcomes were weight loss and waist circumference reduction. Results: This study is a well-designed randomized controlled study powered to detect a 0.5-kg weight loss and 0.6-cm waist circumference reduction in overweight and obese sedentary adults. Conclusion: Innovative technologies are providing lifestyle self-monitoring and weight loss tools. Utilizing these technologies may be an important step in improving the current obesity epidemic.


Journal of Physical Activity and Health | 2015

Validation of the SenseWear Armband as a Measure of Sedentary Behavior and Light Activity.

Joel D. Reece; Vaughn W. Barry; Dana K. Fuller; Jennifer L. Caputo

BACKGROUND This study determined the validity and sensitivity of the SenseWear armband (SWA) during sedentary and light office duties compared with indirect calorimetry (IC). METHODS Participants (N = 22), 30 to 64 years of age, randomly performed 6 conditions for 5 minutes each (ie, supine, sitting no movement, standing no movement, sitting office work, standing office work, walking at 1.0 mph). Steady state for each activity (ie, average for minutes 4 and 5) was analyzed. RESULTS Energy expenditure (EE) for the SWA (1.58 kcal/min) and the IC (1.64 kcal/min) were significantly correlated, r(20) = 0.90, P < .001 and ICC = 0.90, 95% CI (0.699, 0.966). Correlation results for each condition varied in strength, r(20) = 0.53 to 0.83 and ICC = 0.49 to 0.81, but were all significant (P < .05). A significant interaction between measurement method and condition existed (P < .001). The SWA under predicted EE during standing with no movement, sitting office work, and standing office work. CONCLUSION The SWA and IC EE rates were strongly correlated during sedentary and light activity office behaviors. However, the SWA may under predict EE during office work (standing or sitting) and when standing motionless, making it slightly less sensitive than IC.


Diabetes, Metabolic Syndrome and Obesity: Targets and Therapy | 2011

Cardiometabolic results from an armband-based weight loss trial

John C. Sieverdes; Xuemei Sui; Gregory A. Hand; Vaughn W. Barry; Sarah Wilcox; Rebecca A. Meriwether; James W. Hardin; Amanda C. McClain; Steven N. Blair

Purpose: This report examines the blood chemistry and blood pressure (BP) results from the Lifestyle Education for Activity and Nutrition (LEAN) study, a randomized weight loss trial. A primary purpose of the study was to evaluate the effects of real-time self-monitoring of energy balance (using the SenseWear™ Armband, BodyMedia, Inc Pittsburgh, PA) on these health factors. Methods: 164 sedentary overweight or obese adults (46.8 ± 10.8 years; BMI 33.3 ± 5.2 kg/m2; 80% women) took part in the 9-month study. Participants were randomized into 4 conditions: a standard care condition with an evidence-based weight loss manual (n = 40), a group-based behavioral weight loss program (n = 44), an armband alone condition (n = 41), and a group plus armband (n = 39) condition. BP, fasting blood lipids and glucose were measured at baseline and 9 months. Results: 99 participants (60%) completed both baseline and follow-up measurements for BP and blood chemistry analysis. Missing data were handled by baseline carried forward. None of the intervention groups had significant changes in blood lipids or BP when compared to standard care after adjustment for covariates, though within-group lowering was found for systolic BP in group and group + armband conditions, a rise in total cholesterol and LDL were found in standard care and group conditions, and a lowering of triglycerides was found in the two armband conditions. Compared with the standard care condition, fasting glucose decreased significantly for participants in the group, armband, and group + armband conditions (all P < 0.05), respectively. Conclusion: Our results suggest that using an armband program is an effective strategy to decrease fasting blood glucose. This indicates that devices, such as the armband, can be a successful way to disseminate programs that can improve health risk factors. This can be accomplished without group-based behavioral programs, thereby potentially reducing costs.


Medicine and Science in Sports and Exercise | 2010

Wearing the Sensewear Armband and Weight Loss in Sedentary Overweight and Obese Adults: 2031

Vaughn W. Barry; Michael W. Beets; Xuemei Sui; Sara Wilcox; Gregory A. Hand; Amanda C. McClain; Steven N. Blair

PURPOSE: The SenseWearTM Armband (BodyMedia, Pittsburgh, PA) is a multisensor web-based physical activity monitor that can estimate energy balance when users upload their activity and enter dietary information into the armband software. Few studies have used the armband to encourage weight loss and


Journal of Strength and Conditioning Research | 2014

Live vs. digital video disk exercise in college--aged females.

Lauren G. Killen; Vaughn W. Barry; Cathy Cooper; John M. Coons

Abstract Killen, LG, Barry, VW, Cooper, C, and Coons, JM. Live vs. digital video disk exercise in college-aged females. J Strength Cond Res 28(12): 3393–3398, 2014—Although exercise digital video disk (DVD) sales have substantially increased over the past decade, little is known on the effectiveness of personal training vs. DVD exercises. The purpose of this study was to compare energy expenditures and heart rates of live and DVD vigorously intense exercise sessions. Twenty active and low-to-moderate fit, college-aged females completed 2 identical exercise sessions. Each exercise session consisted of 6 exercises; 1 session was completed with a personal trainer and the other with a DVD. A portable metabolic analyzer was used to measure oxygen consumption and record heart rate. Both energy expenditure (p < 0.001) and heart rate (p = 0.001) were significantly higher during the live exercise session as compared with the DVD exercise session. Rate of perceived exertion was significantly higher for the live exercise session compared with the DVD exercise session (p = 0.045). Finally, the majority (89%) of the participants reported that they preferred the live exercise session over the DVD exercise session. The results suggest that low-to-moderately fit college-aged females not only prefer exercise sessions with a personal trainer but will also demonstrate higher energy expenditures and heart rates.


Journal of Physical Activity and Health | 2016

School Day Energy Expenditure in Elementary School Children.

Holly R. Huddleston; Vaughn W. Barry; Jennifer L. Caputo


Medicine and Science in Sports and Exercise | 2017

Validation Of A Physical Activity Monitor As A Measure Of Energy Expenditure During A Circuit-style Workout With Females Who Are Overweight Or Obese: 2306 Board #319 June 1 2

Lauren G. Killen; John M. Coons; Vaughn W. Barry; Dana K. Fuller; Jenn L. Caputo


Medicine and Science in Sports and Exercise | 2017

An Evaluation of Time-Trial Based Predictions of V[Combining Dot Above]O2max and Recommended Training Paces For Collegiate and Recreational Runners: 520 Board #341 May 31 11

Eric M. Scudamore; Vaughn W. Barry; John M. Coons

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Steven N. Blair

University of South Carolina

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Xuemei Sui

University of South Carolina

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John M. Coons

Middle Tennessee State University

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Dana K. Fuller

Middle Tennessee State University

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James W. Hardin

University of South Carolina

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Jennifer L. Caputo

University of North Carolina at Chapel Hill

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Sarah Wilcox

University of South Carolina

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