Development of postural control during the first 18 months of life

Mijna Hadders-Algra1

  • 1Department of Neurology, Developmental Neurology, University Medical Center Groningen, University of Groningen, Groningen, The Netherlands. m.hadders-algra@med.rug.nl

Neural Plasticity
|August 16, 2005
PubMed

Insights

Infant postural development involves innate direction-specific adjustments and later adaptive control. Key transitions occur at 3, 6, 9-10, and 13-14 months, with significant adaptation emerging at 6 months.

Area of Science:

  • Developmental neuroscience
  • Motor control
  • Infant biomechanics

Background:

  • Postural control in infants is crucial for motor development.
  • Two functional levels of postural control are identified: basic (direction-specific) and adaptive.
  • Early postural adjustments suggest an innate basis for motor control.

Purpose of the Study:

  • To review the developmental trajectory of postural adjustments in infants.
  • To delineate the distinct phases and transitional periods in infant postural development.
  • To understand the emergence of adaptive postural control.

Main Methods:

  • Review of existing literature on infant postural development.
  • Analysis of functional levels of postural control (basic and adaptive).
  • Identification of age-related transitional periods in postural control.

Main Results:

  • Infant postural development progresses through distinct phases: primary variability (innate, less adaptive) and secondary variability (adaptive).
  • Key transitional periods are observed at 3, 6, 9-10, and 13-14 months of age.
  • A major shift occurs at 6 months, marking the onset of adaptive postural control and subtle muscle adaptation by 9-10 months.
  • Anticipatory postural adjustments emerge around 13-14 months.

Conclusions:

  • Infant postural development is a multi-stage process characterized by specific age-related transitions.
  • The transition from non-adaptive to adaptive postural control around 6 months is a critical developmental milestone.
  • Understanding these developmental stages provides insights into typical motor development and potential deviations.

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