Infant weight-for-length is positively associated with subsequent linear growth across four different populations

Kathryn G Dewey1, Mette G Hawck, Kenneth H Brown

  • 1Department of Nutrition, University of California, One Shields Ave., Davis, 95616-8669, USA. kgdewey@ucdavis.edu

Insights

Infant linear growth is influenced by body mass. Studies show length gain correlates with initial weight-for-length (W/L) z-scores and prior weight changes, supporting body fatness regulation theories.

Area of Science:

  • Pediatric Growth and Development
  • Human Physiology
  • Nutritional Science

Background:

  • Infant linear growth often lags behind weight gain.
  • This suggests initial body mass or fatness may regulate linear growth.

Purpose of the Study:

  • To investigate the hypothesis that infant linear growth is regulated by initial body mass or fatness.
  • To analyze data from four longitudinal infant growth studies.

Main Methods:

  • Analyzed length gain in 3-month intervals for infants up to 12 months.
  • Examined initial weight-for-length z-score (W/L), prior weight change, and skinfold thickness.
  • Controlled for maternal height, infant sex, and initial length-for-age z-score.

Main Results:

  • Length gain positively correlated with initial W/L and prior weight change across all intervals.
  • Length gain also correlated with initial skinfold thickness at 3 and 4 months.
  • Associations were consistent across diverse infant populations and feeding types.

Conclusions:

  • Findings support the hypothesis that infant linear growth is partly regulated by initial body mass or fatness.
  • The relationship is consistent across different populations and feeding methods.
  • Body composition plays a role in regulating infant linear growth patterns.

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