Accuracy of Parent-Reported Child Height and Weight and Calculated Body Mass Index Compared With Objectively Measured Anthropometrics: Secondary Analysis of a Randomized Controlled Trial

被引:51
作者
Chai, Li Kheng [1 ,2 ,3 ]
Collins, Clare E. [1 ,2 ,3 ]
May, Chris [1 ,4 ]
Holder, Carl [3 ]
Burrows, Tracy L. [1 ,2 ,3 ]
机构
[1] Univ Newcastle, Fac Hlth & Med, Sch Hlth Sci, Univ Dr, Callaghan, NSW, Australia
[2] Univ Newcastle, Prior Res Ctr Phys Act & Nutr, Callaghan, NSW, Australia
[3] Hunter Med Res Inst, New Lambton, Australia
[4] Univ Newcastle, Family Act Ctr, Callaghan, NSW, Australia
基金
澳大利亚国家健康与医学研究理事会;
关键词
telemedicine; parents; child; body height; body weight; body mass index; self report; dimensional measurement accuracy; VALIDITY; OBESITY; OVERWEIGHT;
D O I
10.2196/12532
中图分类号
R19 [保健组织与事业(卫生事业管理)];
学科分类号
摘要
Background: Electronic health (eHealth) interventions for children often rely on parent-reported child anthropometric measures. However, limited studies have assessed parental accuracy in reporting child height and weight via Web-based approaches. Objective: The objective of this study was to determine the accuracy of parent-reported child height and weight, as well as body mass index and weight category that we calculated from these data. We also aimed to explore whether parent report was influenced by age, sex, weight status, or exposure to participation in a 12-week brief Web-based family lifestyle intervention. Methods: This study was a secondary analysis of data from a 12-week childhood obesity pilot randomized controlled trial in families with children aged 4 to 11 years in Australia. We asked parents to report demographic information, including child height and weight, using an online survey before their child's height and weight were objectively measured by a trained research assistant at baseline and week 12. We analyzed data using the Lin concordance correlation coefficient (rho c, ranging from 0 [poor] to +/- 1 [perfect] concordance), Cohen kappa coefficient, and multivariable linear regression models. Results: There were 42 families at baseline and 35 families (83%) at week 12. Overall, the accuracy of parent-reported child height was moderate (rho c=.94), accuracy of weight was substantial (rho c=.96), and accuracy of calculated body mass index was poor (rho c=.63). Parents underreported child height and weight, respectively, by 0.9 cm and 0.5 kg at baseline and by 0.2 cm and 1.6 kg after participating in a 12-week brief Web-based family lifestyle intervention. The overall interrater agreement of child body mass index category was moderate at baseline (kappa=.59) and week 12 (kappa=.54). The weight category calculated from 74% (n=31) and 70% (n=23) of parent-reported child height and weight was accurate at baseline and week 12, respectively. Parental age was significantly (95% CI -0.52 to -0.06; P=.01) associated with accuracy of reporting child height. Child age was significantly (95% CI -2.34 to -0.06; P=.04) associated with reporting of child weight. Conclusions: Most Australian parents were reasonably accurate in reporting child height and weight among a group of children aged 4 to 11 years. The weight category of most of the children when calculated from parent-reported data was in agreement with the objectively measured data despite the body mass index calculated from parent-reported data having poor concordance at both time points. Online parent-reported child height and weight may be a valid method of collecting child anthropometric data ahead of participation in a Web-based program. Future studies with larger sample sizes and repeated measures over time in the context of eHealth research are warranted. Future studies should consider modeling the impact of calibration equations applied to parent-reported anthropometric data on study outcomes.
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页数:12
相关论文
共 27 条
[1]  
[Anonymous], 2018, 8146 0 HOUS US INF T
[2]   Feasibility and efficacy of a web-based family telehealth nutrition intervention to improve child weight status and dietary intake: A pilot randomised controlled trial [J].
Chai, Li Kheng ;
Collins, Clare E. ;
May, Chris ;
Ashman, Amy ;
Holder, Carl ;
Brown, Leanne J. ;
Burrows, Tracy L. .
JOURNAL OF TELEMEDICINE AND TELECARE, 2021, 27 (03) :146-158
[3]   Extended international (IOTF) body mass index cut-offs for thinness, overweight and obesity [J].
Cole, T. J. ;
Lobstein, T. .
PEDIATRIC OBESITY, 2012, 7 (04) :284-294
[4]   Accuracy of materinal reports of pre-schoolers' weights and heights as estimates of BMI values [J].
Dubois, Lise ;
Girad, Manori .
INTERNATIONAL JOURNAL OF EPIDEMIOLOGY, 2007, 36 (01) :132-138
[5]   Can Tweets Predict Citations? Metrics of Social Impact Based on Twitter and Correlation with Traditional Metrics of Scientific Impact [J].
Eysenbach, Gunther .
JOURNAL OF MEDICAL INTERNET RESEARCH, 2011, 13 (04) :e123
[6]   Validity of parent-reported height and weight for defining obesity among asthmatic and nonasthmatic schoolchildren [J].
Garcia-Marcos, L ;
Valverde-Molina, J ;
Snachez-Solis, M ;
Soriano-Pérez, MJ ;
Baeza-Alcaraz, A ;
Martinez-Torres, A ;
Perez-Fernandez, V ;
Guillen-Perez, JJ .
INTERNATIONAL ARCHIVES OF ALLERGY AND IMMUNOLOGY, 2006, 139 (02) :139-145
[7]  
Ghosh-Dastidar Madhumita Bonnie, 2016, BMC Obes, V3, P37, DOI 10.1186/s40608-016-0117-1
[8]   Accuracy of parent-reported information for estimating prevalence of overweight and obesity in a race-ethnically diverse pediatric clinic population aged 3 to 12 [J].
Gordon, Nancy P. ;
Mellor, R. Grant .
BMC PEDIATRICS, 2015, 15
[9]   Parent-Focused Childhood and Adolescent Overweight and Obesity eHealth Interventions: A Systematic Review and Meta-Analysis [J].
Hammersley, Megan L. ;
Jones, Rachel A. ;
Okely, Anthony D. .
JOURNAL OF MEDICAL INTERNET RESEARCH, 2016, 18 (07)
[10]   The Accuracy of Weight Reported in a Web-Based Obesity Treatment Program [J].
Harvey-Berino, Jean ;
Krukowski, Rebecca A. ;
Buzzell, Paul ;
Ogden, Doris ;
Skelly, Joan ;
West, Delia S. .
TELEMEDICINE AND E-HEALTH, 2011, 17 (09) :696-699