Parent-child relationship of directly measured physical activity

Bernard F Fuemmeler, Cheryl B Anderson, Louise C Mâsse, Bernard F Fuemmeler, Cheryl B Anderson, Louise C Mâsse

Abstract

Background: Studies on parent-child correlations of physical activity have been mixed. Few studies have examined concurrent temporal patterns of physical activity and sedentary behaviors in parents and children using direct measures. The purpose of this study was to examine parent-child activity correlations by gender, day of week, and time of day, using accelerometers - a method for direct assessment of physical activity.

Methods: Accelerometers were used to assess physical activity and sedentary time in 45 fathers, 45 mothers and their children (23 boys, 22 girls, mean age 9.9 years) over the course of 4 days (Thursday - Sunday). Participants were instructed to wear accelerometers for 24 hours per day. Data from accelerometers were aggregated into waking hours on weekdays and weekends (6:00 am to midnight) and weekday after-school hours (3:00 - 7:00 pm).

Results: Across the 4 days, the mean minutes per day of moderate-to-vigorous physical activity (MVPA) for fathers was 30.0 (s.d. = 17.3), for mothers was 30.1 (s.d. = 20.1) and for children was 145.47 (s.d. = 51.64). Mothers' and fathers' minutes of MVPA and minutes of sedentary time were positively correlated with child physical activity and sedentary time (all ps < .05, with the exception of mothers' and children's sedentary time on weekdays from 6 am to 12 am). Multivariate linear regression analyses resulted in significant effects between parents and children for MVPA across all time segments. For sedentary activity, significant associations were observed only between father and child on the weekend. Sedentary activity of parents and children were not related for other time segments. Models examining the associations of one or two parents with high levels of MVPA or sedentary time indicated a dose response increase in child activity relative to parent.

Conclusions: Greater parental MVPA was associated with increased child MVPA. In addition, having two parents with higher levels of MVPA was associated with greater levels of activity in children. Sedentary time in children was not as strongly correlated with that of their parents. Findings lend support to the notion that to increase childhood activity levels it may be fruitful to improve physical activity among parents.

Figures

Figure 1
Figure 1
Mean minutes of MVPA and sedentary time by parental activity status.

References

    1. World Health Organization; Obesity and overweight, fact sheet.
    1. Wang G, Dietz WH. Economic burden of obesity in youths aged 6 to 17 years: 1979-1999. Pediatrics. 2002;109(5):E81–81. doi: 10.1542/peds.109.5.e81.
    1. Hills AP, King NA, Armstrong TP. The contribution of physical activity and sedentary behaviours to the growth and development of children and adolescents: implications for overweight and obesity. Sports Med. 2007;37(6):533–545. doi: 10.2165/00007256-200737060-00006.
    1. Lavizzo-Mourey R. Childhood obesity: what it means for physicians. JAMA. 2007;298(8):920–922. doi: 10.1001/jama.298.8.920.
    1. Pate RR, Freedson PS, Sallis JF, Taylor WC, Sirard J, Trost SG, Dowda M. Compliance with physical activity guidelines: prevalence in a population of children and youth. Ann Epidemiol. 2002;12(5):303–308. doi: 10.1016/S1047-2797(01)00263-0.
    1. Bouchard C, Malina RM. Genetics of physiological fitness and motor performance. Exerc Sport Sci Rev. 1983;11:306–339. doi: 10.1249/00003677-198301000-00011.
    1. Heitzler CD, Martin SL, Duke J, Huhman M. Correlates of physical activity in a national sample of children aged 9-13 years. Prev Med. 2006;42(4):254–260. doi: 10.1016/j.ypmed.2006.01.010.
    1. Sallis JF, Alcaraz JE, McKenzie TL, Hovell MF, Kolody B, Nader PR. Parental behavior in relation to physical activity and fitness in 9-year-old children. Am J Dis Child. 1992;146(11):1383–1388.
    1. Gustafson SL, Rhodes RE. Parental correlates of physical activity in children and early adolescents. Sports Med. 2006;36:79–97. doi: 10.2165/00007256-200636010-00006.
    1. Baranowski T. In: Handbook of health behavior research I: personal and social determinants. Gochman DS, editor. New York: Plenum Press; 1997. Families and health actions; pp. 179–206.
    1. Fogelholm M, Nuutinen O, Pasanen M, Myohanen E, Saatela T. Parent-child relationship of physical activity patterns and obesity. Int J Obes Relat Metab Disord. 1999;23(12):1262–1268. doi: 10.1038/sj.ijo.0801061.
    1. Freedson PS, Evenson S. Familial aggregation in physical activity. Res Q Exerc Sport. 1991;62(4):384–389.
    1. Simonen RL, Perusse L, Rankinen T, Rice T, Rao DC, Bouchard C. Familial aggregation of physical activity levels in the Quebec Family Study. Med Sci Sports Exerc. 2002;34(7):1137–1142. doi: 10.1097/00005768-200207000-00014.
    1. Anderssen N, Wold B, Torsheim T. Are parental health habits transmitted to their children? An eight year longitudinal study of physical activity in adolescents and their parents. J Adolesc. 2006;29(4):513–524. doi: 10.1016/j.adolescence.2005.05.011.
    1. Jago R, Fox KR, Page AS, Brockman R, Thompson JL. Parent and child physical activity and sedentary time: do active parents foster active children? BMC Public Health. 2010;10:194. doi: 10.1186/1471-2458-10-194.
    1. Oliver M, Schofield GM, Schluter PJ. Parent influences on preschoolers' objectively assessed physical activity. J Sci Med Sport. 2010;13(4):403–409. doi: 10.1016/j.jsams.2009.05.008.
    1. Moore LL, Lombardi DA, White MJ, Campbell JL, Oliveria SA, Ellison C. Influence of parents' physical activity levels on activity levels of young children. J Pediatr. 1991;118:215–219. doi: 10.1016/S0022-3476(05)80485-8.
    1. Sallis JF, Prochaska JJ, Taylor WC. A review of correlates of physical activity of children and adolescents. Med Sci Sport Exer. 2000;32:963–975. doi: 10.1097/00005768-200005000-00014.
    1. Pfeiffer KA, Dowda M, McIver KL, Pate RR. Factors Related to Objectively Measured Physical Activity in Preschool Children. Pediatr Exerc Sci. 2009;21:196–208.
    1. Center for Disease Control and Prevention. Youth Risk Behavior Surveillance: United States, 2003. MMWR Morb Mortal Wkly Rep. 2004;53:1–96.
    1. Sallis JF, Nader PR, Broyles SL, Berry CC, Elder JP, McKenzie TL, Nelson JA. Correlates of physical activity at home in Mexican-American and Anglo-American preschool children. Health Psychology. 1993;12:390–398. doi: 10.1037/0278-6133.12.5.390.
    1. Bungum TJ, Vincent ML. Determinants of physical activity among female adolescents. Am J Prev Med. 1997;13:115–122.
    1. Pate RR, Trost SG, Felton GM, Ward DS, Dowda M, Saunders R. Correlates of physical activity behavior in rural youth. Research Quarterly for Exercise and Sport. 1997;68:241–248.
    1. Troiano RP, Berrigan D, Dodd KW, Mâsse LC, Tilert T, McDowell M. Physical activity in the United States measured by accelerometer. Med Sci Sports Exerc. 2008;40:181–188.
    1. Ferreira I, van der Horst K, Wendel-Vos W, Kremers S, van Lenthe FJ, Brug J. Environmental correlates of physical activity in youth - a review and update. Obes Rev. 2007;8:129–154. doi: 10.1111/j.1467-789X.2006.00264.x.
    1. Drenowatz C, Eisenmann JC, Pfeiffer KA, Welk G, Heelan K, Gentile D, Walsh D. Influence of socio-economic status on habitual physical activity and sedentary behavior in 8- to 11-year old children. BMC Public Health. 2010;10:214. doi: 10.1186/1471-2458-10-214.
    1. Trost SG, Kerr LM, Ward DS, Pate RR. Physical activity and determinants of physical activity in obese and non-obese children. Int J Obesity. 2001;25:822–829. doi: 10.1038/sj.ijo.0801621.
    1. Ward DS, Dowda M, Trost SG, Felton GM, Dishman RK, Pate RR. Physical Activity Correlates in Adolescent Girls Who Differ by Weight Status[ast] Obesity. 2006;14:97–105. doi: 10.1038/oby.2006.12.
    1. Steele RM, van Sluijs EM, Cassidy A, Griffin SJ, Ekelund U. Targeting sedentary time or moderate- and vigorous-intensity activity: independent relations with adiposity in a population-based sample of 10-y-old British children. American Journal of Clinical Nutrition. 2009;90:1185–1192. doi: 10.3945/ajcn.2009.28153.
    1. Morgan PJ, Okely AD, Cliff DP, Jones RA, Baur LA. Correlates of objectively measured physical activity in obese children. Obesity (Silver Spring) 2008;16:2634–2641. doi: 10.1038/oby.2008.463.
    1. Jago R, Anderson CB, Baranowski T, Watson K. Adolescent patterns of physical activity differences by gender, day, and time of day. Am J Prev Med. 2005;28(5):447–452. doi: 10.1016/j.amepre.2005.02.007.
    1. Steele R, van Sluijs E, Sharp S, Landsbaugh J, Ekelund U, Griffin S. An investigation of patterns of children's sedentary and vigorous physical activity throughout the week. International Journal of Behavioral Nutrition and Physical Activity. 2010;7:88. doi: 10.1186/1479-5868-7-88.
    1. Matthews CE, Ainsworth BE, Thompson RW, Bassett DR Jr. Sources of variance in daily physical activity levels as measured by an accelerometer. Med Sci Sports Exerc. 2002;34(8):1376–1381. doi: 10.1097/00005768-200208000-00021.
    1. Tudor-Locke C, Lee SM, Morgan CF, Beighle A, Pangrazi RP. Children's pedometer-determined physical activity during the segmented school day. Med Sci Sports Exerc. 2006;38(10):1732–1738. doi: 10.1249/01.mss.0000230212.55119.98.
    1. Sisson SB, Church TS, Martin CK, Tudor-Locke C, Smith SR, Bouchard C, Earnest CP, Rankinen T, Newton RL, Katzmarzyk PT. Profiles of sedentary behavior in children and adolescents: the US National Health and Nutrition Examination Survey, 2001-2006. Int J Pediatr Obes. 2009;4(4):353–359. doi: 10.3109/17477160902934777.
    1. Anderson CB, Hagstromer M, Yngve A. Validation of the PDPAR as an adolescent diary: effect of accelerometer cut points. Med Sci Sports Exerc. 2005;37(7):1224–1230. doi: 10.1249/01.mss.0000170073.57440.df.
    1. Brage S, Wedderkopp N, Franks PW, Andersen LB, Froberg K. Reexamination of validity and reliability of the CSA monitor in walking and running. Med Sci Sports Exerc. 2003;35(8):1447–1454. doi: 10.1249/.
    1. Freedson PS, Melanson E, Sirard J. Calibration of the Computer Science and Applications, Inc. accelerometer. Med Sci Sports Exerc. 1998;30(5):777–781. doi: 10.1097/00005768-199805000-00021.
    1. Janz KF. Validation of the CSA accelerometer for assessing children's physical activity. Med Sci Sports Exerc. 1994;26(3):369–375.
    1. Puyau MR, Adolph AL, Vohra FA, Butte NF. Validation and calibration of physical activity monitors in children. Obes Res. 2002;10(3):150–157. doi: 10.1038/oby.2002.24.
    1. Trost SG, Ward DS, Moorehead SM, Watson PD, Riner W, Burke JR. Validity of the computer science and applications (CSA) activity monitor in children. Med Sci Sports Exerc. 1998;30(4):629–633.
    1. Masse LC, Fuemmeler BF, Anderson CB, Matthews CE, Trost SG, Catellier DJ, Treuth M. Accelerometer data reduction: a comparison of four reduction algorithms on select outcome variables. Med Sci Sports Exerc. 2005;37(11 Suppl):S544–554. doi: 10.1249/01.mss.0000185674.09066.8a.
    1. Trost SG, Saunders R, Ward DS. Determinants of physical activity in middle school children. Am J Health Behav. 2002;26(2):95–102.
    1. Cohen J. A power primer. Psychol Bull. 1992;112(1):155–159. doi: 10.1037/0033-2909.112.1.155.
    1. Pugliese J, Tinsley B. Parental socialization of child and adolescent physical activity: A meta-analysis. Journal of Family Psychology. 2007;21:331–343. doi: 10.1037/0893-3200.21.3.331.
    1. Ara I, Vincente-Rodriguez G, Perez-Gomez J, Jimenez-Ramirez J, Serrano-Sanchez JA, Dorado C. Influence of extracurricular sport activities on body composition and physical fitness in boys: A 3-year longitudinal study. Int J Obes. 2006;30:1062–1071. doi: 10.1038/sj.ijo.0803303.
    1. Elkins WL, Cohen DA, Koralewicz LM. After-school activities, overweight, and obesity among inner city youth. J Adolesc Health. 2004;27:181–189.
    1. Weintraub DL, Tirumalai EC, Haydel F, Fujimoto M, Fulton JE, Robinson TN. Team sports for overweight children: The Stanford Sports to Prevent Obesity Randomized Trial (SPORT) Arch Pediatr Adolesc Med. 2008;162:232–237. doi: 10.1001/archpediatrics.2007.43.
    1. Marshall SJ, Biddle S, Gorely T, Cameron N, Murdey I. Relationships between media use, body fatness and physical activity in children and youth: A meta-analysis. Int J Obes. 2004;28:1238–1246. doi: 10.1038/sj.ijo.0802706.
    1. Biddle S. Sedentary Behavior. Am J Prev Med. 2007;33:502–503. doi: 10.1016/j.amepre.2007.08.002.
    1. Caspersen CJ, Kriska AM, Dearwater SR. Physical activity epidemiology as applied to elderly populations. Baillieres Clin Rheumatol. 1994;8(1):7–27. doi: 10.1016/S0950-3579(05)80222-5.
    1. Caspersen CJ, Pereira MA, Curran KM. Changes in physical activity patterns in the United States, by sex and cross-sectional age. Med Sci Sports Exerc. 2000;32(9):1601–1609. doi: 10.1097/00005768-200009000-00013.
    1. Telama R, Yang X. Decline of physical activity from youth to young adulthood in Finland. Med Sci Sports Exerc. 2000;32(9):1617–1622. doi: 10.1097/00005768-200009000-00015.
    1. van Mechelen W, Twisk JW, Post GB, Snel J, Kemper HC. Physical activity of young people: the Amsterdam Longitudinal Growth and Health Study. Med Sci Sports Exerc. 2000;32(9):1610–1616. doi: 10.1097/00005768-200009000-00014.
    1. De Vries SI, Hopman-Rock M, Bakker I, Van Mechelen W. Meeting the 60-min physical activity guideline: effect of operationalization. Med Sci Sports Exerc. 2009;41(1):81–86. doi: 10.1249/MSS.0b013e318184c931.
    1. Strath SJ, Bassett DR, Swartz AM. Comparison of MTI accelerometer cutpoints for predicting time spent in physical activity. Int J Sports Med. 2003;24:298–303. doi: 10.1055/s-2003-39504.

Source: PubMed

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