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Research ArticleOriginal Research

Food Intake Compared to Exercise Association with Obesity in Children Ages 3–6

David Bedell, Tim Sevcik, Jeanette M. Daly and Barcey T. Levy
The Journal of the American Board of Family Medicine November 2022, jabfm.2022.220159R1; DOI: https://doi.org/10.3122/jabfm.2022.220159R1
David Bedell
From Department of Family Medicine, University of Iowa (DB, TS, JMD, BTL).
MD
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Tim Sevcik
From Department of Family Medicine, University of Iowa (DB, TS, JMD, BTL).
MD
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Jeanette M. Daly
From Department of Family Medicine, University of Iowa (DB, TS, JMD, BTL).
RN, PhD
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Barcey T. Levy
From Department of Family Medicine, University of Iowa (DB, TS, JMD, BTL).
PhD, MD
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  • Article
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References

  1. 1.↵
    1. Hales CM,
    2. Carroll MD,
    3. Fryar CD,
    4. Ogden CL
    . Prevalence of obesity and severe obesity among adults: United States. NCHS Data Brief 2020;360:1–8.
    OpenUrlPubMed
  2. 2.↵
    1. Fryar CD,
    2. Carroll MD,
    3. Afful J
    . Prevalence of overweight, obesity, and severe obesity among children and adolescents aged 2–19 years: United States, 1963–1965 through 2017–2018. CDC; 2020. Updated January 29, 2021. Accessed 8 March 2022. Available at: https://www.cdc.gov/nchs/data/hestat/obesity-child-17-18/obesity-child.htm.
  3. 3.↵
    1. Ogden CL,
    2. Fryar CD,
    3. Hales CM,
    4. Carroll MD,
    5. Aoki Y,
    6. Freedman DS
    . Differences in obesity prevalence by demographics and urbanization in US children and adolescents, 2013–2016. JAMA 2018;319:2410–18.
    OpenUrlCrossRefPubMed
  4. 4.↵
    1. Innella N,
    2. Breitenstein S,
    3. Hamilton R
    et al. Determinants of obesity in the Hispanic preschool population: An integrative review. Public Health Nurs 2016;33:189–99.
    OpenUrl
  5. 5.↵
    1. Sahoo K,
    2. Sahoo B,
    3. Choudhury AK
    et al. Childhood obesity: causes and consequences. J Fam Med Prim Care 2015;4:187–92.
    OpenUrl
  6. 6.↵
    1. Ji M,
    2. Tang A,
    3. Zhang Y,
    4. et al
    . The relationship between obesity, sleep and physical activity in Chinese preschool children. IJERPH 2018;15:527.
    OpenUrl
  7. 7.↵
    1. Williams AS,
    2. Ge B,
    3. Petroski G
    et al. Socioeconomic status and other factors associated with childhood obesity. J Am Board Fam Med 2018;31:514–21.
    OpenUrlAbstract/FREE Full Text
  8. 8.↵
    1. Guerrero AD,
    2. Slusser WM,
    3. Barreto PM
    et al. Latina mothers' perceptions of healthcare professional weight assessments of preschool-aged children. Matern Child Health J 2011;15:1308–15.
    OpenUrlCrossRefPubMed
  9. 9.↵
    1. Rietmeijer-Mentink M,
    2. Paulis WD,
    3. van Middelkoop M
    et al. Difference between parental perception and actual weight status of children: a systematic review. Matern Child Nutr 2013;9:3–22.
    OpenUrlCrossRefPubMed
  10. 10.↵
    1. Park SH,
    2. Park CG,
    3. Bahorski JS,
    4. Cormier E
    . Factors influencing obesity among preschoolers: multilevel approach. Int Nurs Rev 2019;66:346–55.
    OpenUrlPubMed
  11. 11.↵
    1. White C,
    2. Murphy T,
    3. Hodges EA,
    4. Berry DC
    . Barriers for Hispanic caregivers with obese preschool children. Hisp Health Care Int 2016;14:141–55.
    OpenUrlCrossRefPubMed
  12. 12.↵
    1. Pagels P,
    2. Boldemann C,
    3. Raustorp A
    . Comparison of pedometer and accelerometer measures of physical activity during preschool time on 3- to 5-year-old children. Acta Paediatr 2011;100:116–20.
    OpenUrlCrossRefPubMed
  13. 13.↵
    1. De Craemer M,
    2. De Decker E,
    3. Santos-Lozano A,
    4. et al
    . Validity of the Omron pedometer and the actigraph step count function in preschoolers. J Sci Med Sport May 2015;18:289–93.
    OpenUrlPubMed
  14. 14.↵
    1. O'Connor TM,
    2. Cerin E,
    3. Robles J,
    4. et al
    . Feasibility study to objectively assess activity and location of Hispanic preschoolers: a short communication. Geospat Health 2013;7:375–80.
    OpenUrl
  15. 15.↵
    1. Kang AW,
    2. Gans KM,
    3. von Ash T,
    4. et al
    . Physical activity levels among preschool-aged children in family child care homes: A comparison between Hispanic and non-Hispanic children using accelerometry. Children (Basel) 2021;8:349.
    OpenUrl
  16. 16.↵
    1. Ip EH,
    2. Saldana S,
    3. Trejo G,
    4. et al
    . Physical activity states of preschool-aged Latino children in farmworker families: Predictive factors and relationship with BMI percentile. J Phys Act Health 2016;13:726–32.
    OpenUrl
  17. 17.↵
    1. Vaughn AE,
    2. Hales D,
    3. Ward DS
    . Measuring the physical activity practices used by parents of preschool children. Med Sci Sports Exerc 2013;45:2369–77.
    OpenUrl
  18. 18.↵
    1. Brasholt M,
    2. Chawes B,
    3. Kreiner-Møller E
    et al. Objective assessment of levels and patterns of physical activity in preschool children. Pediatr Res 2013;74:333–38.
    OpenUrlPubMed
  19. 19.↵
    1. Byun W,
    2. Lee JM,
    3. Kim Y,
    4. Brusseau TA
    . Classification accuracy of a wearable activity tracker for assessing sedentary behavior and physical activity in 3–5-year-old children. IJERPH 2018;15:594.
    OpenUrl
  20. 20.↵
    1. Craig CL,
    2. Cameron C,
    3. Tudor-Locke C
    . CANPLAY pedometer normative reference data for 21,271 children and 12,956 adolescents. Med Sci Sports Exerc 2013;45:123–9.
    OpenUrlCrossRefWeb of Science
  21. 21.↵
    1. Subar AF,
    2. Kirkpatrick SI,
    3. Mittl B,
    4. et al
    . The automated self-administered 24-hour dietary recall (ASA24): a resource for researchers, clinicians, and educators from the National Cancer Institute. J Acad Nutr Diet 2012;112:1134–7.
    OpenUrlCrossRefPubMed
  22. 22.↵
    1. Zimmerman TP,
    2. Hull SG,
    3. McNutt S,
    4. et al
    . Challenges in converting an interviewer-administered food probe database to self-administration in the National Cancer Institute automated self-administered 24-hour recall (ASA24). J Food Compost Anal 2009;22:S48–S51.
    OpenUrlCrossRefPubMed
  23. 23.↵
    1. Yuan C,
    2. Spiegelman D,
    3. Rimm EB,
    4. et al
    . Validity of a dietary questionnaire assessed by comparison with multiple weighed dietary records or 24-hour recalls. Am J Epidemiol 2017;185:570–84.
    OpenUrlCrossRefPubMed
  24. 24.↵
    1. Pannucci TE,
    2. Thompson FE,
    3. Bailey RL,
    4. et al
    . Comparing reported dietary supplement intakes between two 24-hour recall methods: The automated self-administered 24-hour dietary assessment tool and the interview-administered automated multiple pass method. J Acad Nutr Diet 2018;118:1080–6.
    OpenUrl
  25. 25.↵
    1. Skinner AC,
    2. Steiner MJ,
    3. Perrin EM
    . Self-reported energy intake by age in overweight and healthy-weight children in NHANES, 2001-2008. Pediatrics 2012;130:e936–e942.
    OpenUrlAbstract/FREE Full Text
  26. 26.↵
    1. Santos R,
    2. Zhang Z,
    3. Pereira JR,
    4. et al
    . Compliance with the Australian 24-hour movement guidelines for the early years: associations with weight status. BMC Public Health 2017;17:867.
    OpenUrlPubMed
  27. 27.↵
    1. Miguel-Berges ML,
    2. Reilly JJ,
    3. Moreno Aznar LA,
    4. Jiménez-Pavón D
    . Associations between pedometer-determined physical activity and adiposity in children and adolescents: systematic review. Clin J Sport Med 2018;28:64–75.
    OpenUrlPubMed
  28. 28.↵
    1. Schwarzfischer P,
    2. Gruszfeld D,
    3. Stolarczyk A,
    4. et al
    . Physical activity and sedentary behavior from 6 to 11 years. Pediatrics 2019;143:e20180994.
  29. 29.↵
    1. Reznik M,
    2. Wylie-Rosett J,
    3. Kim M,
    4. Ozuah PO
    . Physical activity during school in urban minority kindergarten and first-grade students. Pediatrics 2013;131:e81–e87.
    OpenUrlAbstract/FREE Full Text
  30. 30.↵
    1. Al-Hazzaa HM,
    2. Al-Rasheedi AA
    . Adiposity and physical activity levels among preschool children in Jeddah, Saudi Arabia. Saudi Med J 2007;28:766–73.
    OpenUrlAbstract/FREE Full Text
  31. 31.↵
    1. Fröberg A
    . “Couch-potatoeism” and childhood obesity: The inverse causality hypothesis. Prev Med 2015;73:53–4.
    OpenUrlPubMed
  32. 32.↵
    1. Noronha J,
    2. Hysen E,
    3. Zhang H,
    4. Gajos K
    . PlateMate: Crowdsourcing nutrition analysis from food photographs. Digital Access to Scholarship at Harvard 2011;1–12.
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The Journal of the American Board of Family     Medicine: 38 (1)
The Journal of the American Board of Family Medicine
Vol. 38, Issue 1
January-February 2025
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Food Intake Compared to Exercise Association with Obesity in Children Ages 3–6
David Bedell, Tim Sevcik, Jeanette M. Daly, Barcey T. Levy
The Journal of the American Board of Family Medicine Nov 2022, jabfm.2022.220159R1; DOI: 10.3122/jabfm.2022.220159R1

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Food Intake Compared to Exercise Association with Obesity in Children Ages 3–6
David Bedell, Tim Sevcik, Jeanette M. Daly, Barcey T. Levy
The Journal of the American Board of Family Medicine Nov 2022, jabfm.2022.220159R1; DOI: 10.3122/jabfm.2022.220159R1
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