Literature DB >> 15981181

Catch-up growth or regression to the mean? Recovery from stunting revisited.

Noël Cameron1, Michael A Preece, Tim J Cole.   

Abstract

An important question for policy is the extent to which catch-up growth can ease the impact of early stunting. Martorell et al. (1992) showed that stunted Guatemalan infants remain stunted into adulthood, whereas Adair (1999) found appreciable catch-up growth in Filipino children from 2-12 years. Both groups defined catch-up as an inverse correlation between early height and subsequent growth, but Martorell based the correlation on height, whereas Adair used height z scores. The statistical phenomenon of regression to the mean is much like catch-up growth, an inverse correlation between initial height and later height gain. The objective of this study was to reexamine the relationship between stunting and later catch-up growth in the context of regression to the mean. The design was a theoretical analysis showing that catch-up growth is more evident based on height z scores than on height, validated using data on 495 stunted South African children seen at 2 and 5 years of age. The correlation between height at 2 and height change from 2 to 5 was small based on height (-0.11) but large and highly significant based on height z score (-0.58), providing strong evidence of catch-up growth. We argue that catch-up growth should be estimated using height z score not height and that catch-up is present only when the change in z score exceeds that predicted by regression to the mean. This leads to a compact definition of catch-up growth: if z1 and z2 are the initial and final (mean) height z scores, and r is the correlation between them, then catch-up growth for groups or individuals is given by (z2 - rz1). Copyright 2005 Wiley-Liss, Inc

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Year:  2005        PMID: 15981181     DOI: 10.1002/ajhb.20408

Source DB:  PubMed          Journal:  Am J Hum Biol        ISSN: 1042-0533            Impact factor:   1.937


  34 in total

1.  Gestational Weight Gain and Offspring Longitudinal Growth in Early Life.

Authors:  Jill C Diesel; Cara L Eckhardt; Nancy L Day; Maria M Brooks; Silva A Arslanian; Lisa M Bodnar
Journal:  Ann Nutr Metab       Date:  2015       Impact factor: 3.374

2.  Decelerated early growth in infants of overweight and obese mothers.

Authors:  Katie Larson Ode; Heather L Gray; Sara E Ramel; Michael K Georgieff; Ellen W Demerath
Journal:  J Pediatr       Date:  2012-07-20       Impact factor: 4.406

3.  Growth and associations between auxology, caregiving environment, and cognition in socially deprived Romanian children randomized to foster vs ongoing institutional care.

Authors:  Dana E Johnson; Donald Guthrie; Anna T Smyke; Sebastian F Koga; Nathan A Fox; Charles H Zeanah; Charles A Nelson
Journal:  Arch Pediatr Adolesc Med       Date:  2010-04-05

4.  Stunting and the Prediction of Lung Volumes Among Tibetan Children and Adolescents at High Altitude.

Authors:  Charles A Weitz; Ralph M Garruto
Journal:  High Alt Med Biol       Date:  2015-09-23       Impact factor: 1.981

5.  Preterm birth and fetal growth restriction in HIV-infected Brazilian pregnant women.

Authors:  Helena Lucia Barroso Dos Reis; Karina da Silva Araujo; Lilian Paula Ribeiro; Daniel Ribeiro Da Rocha; Drielli Petri Rosato; Mauro Romero Leal Passos; Paulo Roberto Merçon De Vargas
Journal:  Rev Inst Med Trop Sao Paulo       Date:  2015 Mar-Apr       Impact factor: 1.846

6.  The use of biocultural data in interpreting sex differences in body proportions among rural Amazonians.

Authors:  Giuseppe Vercellotti; Barbara A Piperata
Journal:  Am J Phys Anthropol       Date:  2011-11-25       Impact factor: 2.868

7.  Effect of early childhood protein-energy malnutrition on permanent dentition dental caries.

Authors:  Elisandra Reyes-Perez; Luisa N Borrell; Ralph V Katz; Bette J Gebrian; Samuel Prophete; Walter J Psoter
Journal:  J Public Health Dent       Date:  2013-11-21       Impact factor: 1.821

8.  Multi-country analysis of the effects of diarrhoea on childhood stunting.

Authors:  William Checkley; Gillian Buckley; Robert H Gilman; Ana Mo Assis; Richard L Guerrant; Saul S Morris; Kåre Mølbak; Palle Valentiner-Branth; Claudio F Lanata; Robert E Black
Journal:  Int J Epidemiol       Date:  2008-06-20       Impact factor: 7.196

9.  Downward percentile crossing as an indicator of an adverse prenatal environment.

Authors:  Michelle Lampl; Francesca Gotsch; Juan Pedro Kusanovic; Jimmy Espinoza; Luis Gonçalves; Ricardo Gomez; Jyh Kae Nien; Edward A Frongillo; Roberto Romero
Journal:  Ann Hum Biol       Date:  2008 Sep-Oct       Impact factor: 1.533

Review 10.  Effect of the early-life nutritional environment on fecundity and fertility of mammals.

Authors:  D S Gardner; S E Ozanne; K D Sinclair
Journal:  Philos Trans R Soc Lond B Biol Sci       Date:  2009-11-27       Impact factor: 6.237

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