Active and Sedentary Video Game Time

Author(s):  
Erica Scharrer ◽  
Adam Zeller

This study used survey methodology to measure opinions of 13- to 15-year-olds (N = 176) about sedentary and active video games and the relative amount of time spent with those games, and evaluated correlations between time spent with those two types of games and the body mass index (BMI) of the respondent. Results showed no evidence of any correlation between BMI and relative time devoted to video game usage by type of game (active versus sedentary), nor any support for a correspondence between overall levels of time spent with video games and BMI. Yet, the data did point to a nonlinear association in which those who devoted more than 50% of the total time they spend with video games on sedentary games had a higher BMI than those who spent less than 50% of their video gaming time with sedentary games. Important gender differences also emerged in the adolescents’ opinions of active versus sedentary games.

2018 ◽  
Vol 15 (4) ◽  
pp. 2376
Author(s):  
Abdurrahman Demir ◽  
Manolya Akın

The purpose of this study was to examine the effects of active video games Nintendo Wii and Wobel Board balance exercises on static balance development in children aged 6 years.          54 children, participated in the research voluntarily on informed consents from according to Helsinki criteria by taking permission from Mersin University Ethics Committe. The study was carried out with 3 groups with similar physical characteristics (mean age = 6,21, mean weight= 21,3, mean height = 116,8). The balance training were applied to a group with a 'wobble board' and another group with a 'nintendo wii game console' from active video games. The pre and post test static balance measurements of all groups were measured using the 'Balance Error Scoring System' and the differences between the groups were examined. For parametric results, 3x2 repetitive measurements were performed with anova analysis, and for non-parametric results kruskall wallis test was applied.         There was no significant difference between the groups participating in active video game and wobble board balance training in the measurements made after the study (p>,05). The difference between the experimental group and the foot and tandem position were found statistically significant. (p <,01). There was no significant difference between the two groups in paired feet values (p>, 05).         Both the wobbel board and the active video game training have been found to improve the static balance in children. It has been seen that there is no meaningful development in the control group. This result shows us that active video games are as effective as balance training in 6 years old children. In this context, active video games can be proposed as an alternative method to improve balance.Extended English summary is in the end of Full Text PDF (TURKISH) file. Özet Bu çalışmanın amacı, 6 yaş çocuklarda aktif video oyunları nintendo wii ve wobble board denge antrenmanlarının statik denge gelişimleri üzerine etkisini incelemektir.        Araştırmaya, 54 çocuk, Mersin Üniversitesi etik kurulundan izin alınarak Helsinki kriterlerine uygun olarak katılmıştır. Çalışma benzer fiziksel özellikte (yaş ort.=6,21, kilo ort.=21,3, boy ort.=116,8) 3 grupla  yürütülmüştür. Denge antrenmanları haftada üç gün 8 hafta ‘wobble board’ denge tahtası ve aktif video oyunları ‘nintendo wii oyun konsolu’ ile uygulanmıştır. Kontrol grubuna ise herhangi bir uygulama yaptırılmamıştır. Tüm grupların statik denge ölçümleri ‘Denge Hata Skoru Sistemi’ kullanılarak ölçülmüştür.Parametrik sonuçlar için, çalışmada 3x2 tekrarlı ölçümler anova analizi yapılmış, non-parametrik sonuçlar için ise kruskall wallis testi uygulanmıştır.       Araştırma sonrasında aktif video oyunu ve wobble board denge antrenmanına katılan gruplar arasında istatistiksel olarak manidar fark bulunmamıştır (p>,05). Deney gruplarının, zeminde ve köpükte tek ayak ve tandem duruşlarda bulunan fark kontrol grubuna göre istatistiksel olarak anlamlı (p<,01) iken, çift ayak değerlerinde, üç grup arasında da anlamlı bir fark bulunmamıştır (p>,05).       Hem wobble board hem de aktif video oyunları nintendo wii denge antrenmanlarının çocuklarda statik dengeyi geliştirdiği bulunmuştur. Kontrol gurubunda ise anlamlı bir gelişimin olmadığı görülmüştür. Bu sonuç bize aktif video oyunlarının 6 yaş grubu çocuklarda denge antrenmanları kadar etkili olduğunu göstermektedir. Bu bağlamda aktif video oyunları dengeyi geliştirmek için alternatif bir yöntem olarak önerilebilir.


2021 ◽  
Author(s):  
Cristina Comeras-Chueca ◽  
Jorge Marin-Puyalto ◽  
Angel Matute-Llorente ◽  
German Vicente-Rodriguez ◽  
Jose Antonio Casajus ◽  
...  

BACKGROUND Childhood obesity is one of the most important public health problems of the 21st century and active-video games have been proposed as a good alternative to exercise and are being investigated to find out their effectiveness against childhood obesity. OBJECTIVE to summarize the current research and extract conclusions about the effects of active video games on health-related physical fitness and motor competence in children and adolescents with overweight and obesity. METHODS The search strategy was applied to PubMed, Medline, Web of Science and SPORTDiscus, including randomized and non-randomized controlled trials investigating the effects of programs using active video games on health-related physical fitness and motor competence of children and adolescents with overweight and obesity. Two different quality assessment tools were used to measure the risk of bias for randomized and non-randomized controlled trials. Fifteen articles met the inclusion criteria and the variables of interest were body mass index, body fat percentage, cardiorespiratory fitness, waist circumference, fat-free mass, muscular fitness and motor competence. A meta-analysis was performed. RESULTS Positive effects were found for body mass index and body fat percentage, favouring the active video games group compared with a control group with no intervention (MD, -0.209; 95% IC, -0.388, -0.031; an d MD, -0.879; 95% IC, -1.138, -0.602, respectively). Positive effects seem to be found for cardiorespiratory fitness. The effects of interventions with active video games on muscular fitness, fat-free mass and waist circumference and motor competence are unclear. CONCLUSIONS Programs using active video games showed positive effects on body mass index, body fat percentage and cardiorespiratory fitness. Active video games could be a good strategy to fight against childhood obesity. CLINICALTRIAL A protocol was registered in the International Prospective Register of Systematic Reviews, PROSPERO (CRD42020189138).


2015 ◽  
Vol 11 (3) ◽  
pp. 1-16 ◽  
Author(s):  
Jih-Hsuan Lin ◽  
Wei Peng

How perceived realism in a video game contributes to game enjoyment and engagement is a theoretically important and practically significant question. The conceptualization and operationalization of perceived realism in previous video game studies vary greatly, particularly regarding the dimensions of perceived graphic realism and perceived external realism. The authors argue that it is important to examine perceived enactive realism, particularly for interactive and participatory media such as video games. This study examines the contribution of two types of perceived realism—perceived graphic realism and perceived enactive realism—to enjoyment and engagement as manifested by the level of physical movement intensity in an active video game playing context. It was found that perceived enactive realism was a significant predictor of enjoyment and engagement in playing active video games. However, perceived graphic realism was not found to be a significant predictor of enjoyment or engagement. Theoretical and practical implications are discussed.


2015 ◽  
Vol 115 (3) ◽  
pp. 547-553 ◽  
Author(s):  
J. P. Chaput ◽  
A. Tremblay ◽  
B. Pereira ◽  
Y. Boirie ◽  
M. Duclos ◽  
...  

AbstractAlthough a few data are available regarding the impact of video games on energy intake (EI) in lean adolescents, there is no evidence on the effect of passive and active video gaming on food intake in both lean and obese youth. It is also unknown whether isoenergetic active video games and exercise differently affect food consumption in youth. In all, twelve lean and twelve obese adolescent boys (12–15 years old) had to complete four 1-h sessions in a cross-over design study: control (CON; sitting), passive video game (PVG; boxing game on Xbox 360), active video game (AVG; boxing game on Xbox Kinect 360) and exercise (EX; cycling). The exercise and active video game activities were designed to generate the same energy expenditure (EE). EE was measured using a K4b2 portable indirect calorimeter. Ad libitum food intake and appetite sensations were assessed following the sessions. AVG and EX-EE were significantly higher in obese participants and significantly higher compared with PVG and CON in both groups. Obese participants significantly ate more than lean ones in all four conditions (P<0·001). EI did not differ between conditions in obese participants (CON: 4935 (sd 1490) kJ; PVG: 4902 (sd 1307) kJ; AVG: 4728 (sd 1358) kJ; EX: 4643 (sd 1335) kJ), and was significantly lower in lean participants after EX (2847 (sd 577) kJ) compared with PVG (3580 (sd 863) kJ) and AVG (3485 (sd 643) kJ) (P<0·05). Macronutrient intake was not significantly different between the groups or conditions. Hunger was significantly higher and satiety was lower in obese participants but no condition effect was observed. Overall, moderate-intensity exercise provides better effect on energy balance than an isoenergetic hour of active video gaming in lean adolescent boys by dually affecting EE and EI.


2020 ◽  
Vol 7 (1) ◽  
pp. 3-21
Author(s):  
Sam Kirk ◽  
Andrew Manley

Evidence shows inactivity and obesity are a substantial global burden, economically and physiologically. Sedentary screen time strongly contributes to this burden. Sedentary screen time is often achieved through video game play. Active video games (AVGs) tried to solve the screen time problem. AVGs work, having small to moderate positive effects on activity levels and body composition changes. However, they perform consistently poorly on the commercial market. This represents a paradox: AVGs work pragmatically, yet underperform commercially, limiting their impact practically. The purpose of this study was to explore this paradox with the aim of understanding how AVGs compare to non-active video games (NAVGs), based on gameplay experience. Findings revealed that AVGs have a significant negative comparison to NAVGs. Qualitative exploration highlighted several important considerations; gamer motivation, the lack of quality and variety in AVGs, the stereotype in AVGs, and the practical limitations of the hardware that supports AVGs. Perception of an augmented reality platform, a potential solution to the issues, was found to be positive.


2010 ◽  
Vol 22 (4) ◽  
pp. 535-546 ◽  
Author(s):  
Lee E.F. Graves ◽  
Nicola D. Ridgers ◽  
Greg Atkinson ◽  
Gareth Stratton

Active video game interventions typically provide children a single game that may become unappealing. A peripheral device (jOG) encourages step-powered gaming on multiple games. This trial evaluated the effect of jOG on children’s objectively measured PA, body fat and self-reported behaviors. 42 of 58 eligible children (8–10 y) randomly assigned to an intervention (jOG) or control (CON) completed the trial. Intervention children received two jOG devices for home use. Analyses of covariance compared the intervention effect at 6 and 12 weeks from baseline. No differences were found between groups for counts per minute (CPM; primary outcome) at 6 and 12 weeks (p > .05). Active video gaming increased (adjusted change 0.95 (95% CI 0.25, 1.65) h·d−1, p<.01) and sedentary video gaming decreased (-0.34 (-1.24, 0.56) h·d−1, p > .05) at 6 weeks relative to CON. No body fat changes were observed between groups. Targeted changes in video game use did not positively affect PA. Larger trials are needed to verify the impact of active video games on children’s PA and health.


2016 ◽  
Vol 12 (5) ◽  
pp. 406-413 ◽  
Author(s):  
J. Falbe ◽  
W. C. Willett ◽  
B. Rosner ◽  
A. E. Field

2020 ◽  
Author(s):  
Joshua L. Smith ◽  
Kaylie Amanda Carbine ◽  
Michael J. Larson ◽  
Larry A. Tucker ◽  
William F. Christensen ◽  
...  

Sedentary behaviors, such as computer use and sedentary video games, are barriers to physical activity, contribute to overweight and obesity among adolescents, and can adversely affect eating behaviors. Active video games may increase daily physical activity levels among adolescents and improve food-related inhibitory control. We compared the effects of acute bouts of active and sedentary video gaming on event-related potential (ERP) indices of food-related inhibitory control, energy expenditure, and ad libitum eating. In a within-subjects design, 59 adolescent participants (49% female, Mage = 13.29 ± 1.15) completed two separate counterbalanced, 60-minute long video gaming sessions separated by seven days. Immediately after, participants completed two go/no-go tasks with high- and low-calorie images and N2 and P3 ERP amplitudes were measured. Participants also completed a Stroop task and were given high- and low-calorie snacks to consume ad libitum. Results indicated that active relative to sedentary video games significantly increased energy expenditure on multiple measures (e.g., METs, heart rate, kcals burned) and participants consumed more calories after the active compared to the sedentary video game session. N2 amplitudes were larger when participants inhibited to high- compared to low-calorie foods, suggesting high-calorie foods necessitate increased recruitment of inhibitory control resources; however, there were non-significant differences for the N2 or P3 amplitudes, accuracy or response times, and Stroop performance between active versus sedentary video game sessions. Overall, sixty minutes of active video gaming increased energy expenditure and food consumption but did not significantly alter neural or behavioral measures of inhibitory control to food stimuli.


2014 ◽  
Vol 2 (3) ◽  
pp. 55-62 ◽  
Author(s):  
Ashleigh Thornton ◽  
Brendan Lay ◽  
Michael Rosenberg ◽  
Joanna Granich ◽  
Rebecca Braham

This study sought to explore the type of fundamental movement skills (FMS) performed during Active Video Game (AVG) play, as well as the frequency with which these FMS are performed. In addition, this study aimed to determine the relationship between FMS performance and energy expenditure during 15 min of AVG play across two Microsoft Xbox Kinect AVGs. Fundamental movement skills were observed via video by two raters and energy expenditure derived using Actiheart monitors in children aged 10–15 years. Six different FMS were observed during AVG play with differences in the number of FMS performed between the two AVGs. The overall energy expended (Joules/kg/minute), however, was similar between the AVGs, suggesting the frequency of FMS did not influence overall energy expended during play. The movements observed during AVG play that possibly accounted for the energy expenditure, were not of a quality that could be classified as FMS. This research demonstrates that children playing these two games have the opportunity to repeatedly perform mostly two FMS, namely jumping and dodging. The goal of the AVGs, however, could be achieved with generalized movements that did not always meet the criteria to be classified as a FMS.


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