Background: Over the last few decades, the time children spend using electronic devices has increased significantly. The aim of the study was to evaluate the impact of screen time on dietary behaviors and physical activity in children and adolescents. Methods: An online survey was conducted among parents of preschool and school-aged children during the COVID-19 lockdown in Poland. There were 3127 surveys used in the analysis. Results: Survey responses referred to 1662 (53%) boys and 1465 (47%) girls, with a mean age of 12.1 ± 3.4 years. During a routine weekday, most children (71%) spent >4 h on educational activities using electronic devices, and 43% of children spent 1−2 h using devices for recreational purposes. The majority of children (89%) were exposed to screens during meals, and ate snacks between main meals (77%). There was an association between screen time and the exposure to screens during meals, and between screen time and time spent performing physical activity. Conclusions: This study revealed that the majority of children were exposed to screens during meals, which is a risk factor of obesity. The promotion of the judicious use of digital devices and healthy dietary habits associated with the use of screens may be an important component of obesity prevention strategies.
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http://dx.doi.org/10.3390/nu14142985 | DOI Listing |
BMJ Open
January 2025
Department of Special Surgery, The Hashemite University Faculty of Medicine, Zarqa, Jordan.
Objective: Increased screen time has resulted in widespread computer vision syndrome (CVS) in the digital era. Medical students, who rely heavily on digital screens, are particularly at risk. Our study aims to evaluate the prevalence of CVS among Jordanian medical students, which is a gap in existing knowledge.
View Article and Find Full Text PDFChild Care Health Dev
January 2025
Department of Health and Kinesiology, College of Applied Health Sciences, University of Illinois Urbana Champaign, Champaign, Illinois, USA.
Background: Screen use has become nearly universal, especially in children. Therefore, it is important not only to comprehend its effects on health but also to understand its patterns of use. We aim to describe screen use patterns among children assessed at 2, 4, and 6-7 years, based on device, period of the day, and child/family characteristics.
View Article and Find Full Text PDFJ Phys Act Health
January 2025
Institute of Education, University of Minho, Minho, Portugal.
Objective: This systematic review summarizes the literature on the associations between movement behaviors (eg, sleep, sedentary behavior, and physical activity [PA]) and cognition, and academic achievement (AA) in children and adolescents.
Methods: Four electronic databases (PubMed, Embase, PsycINFO, and SPORTDiscus) were searched from inception until October 2023.
Results: This systematic review included 24 reports, representing 48,558 youth aged 6-17.
Gynecol Oncol
January 2025
Department of Radiation-Oncology, Catharina Hospital, Eindhoven, the Netherlands.
Objective: To determine the incidence of clinical and subclinical venous thromboembolic events (VTE) in patients with locally advanced cervical cancer (LACC) treated with high-dose thromboprophylaxis during definitive chemoradiation and brachytherapy.
Methods: A prospective observational study was undertaken from August 2021 to December 2023 in patients with primary LACC treated with definitive chemoradiation in two Dutch tertiary hospitals. Patients received high-dose thromboprophylaxis during chemoradiation and brachytherapy.
Adv Sci (Weinh)
January 2025
State Key Lab of Transducer Technology, Shanghai Institute of Microsystem and Information Technology, Chinese Academy of Sciences, Changning Road 865, Shanghai, 200050, China.
Chemo-sensor designing involves a time-consuming trial-and-error screening process, which commonly cannot lead to optimal SR features (Sensitivity, Selectivity, Speed, Stability, and Reversibility). Due to strong path dependence on reported groups/mechanisms, conventional chemo-sensors often fail to meet critical application demands, especially in achieving high reversibility without compromising other features. Here, a three-step screen and design strategy is developed for gaining customized chemo-sensors, through Structure modeling; MEMS (Micro Electro Mechanical Systems) analysis, and Performance verification.
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