How do children aged 6 to 11 stabilize themselves on an unstable sitting device? The progressive development of axial segment control

Hum Mov Sci. 2020 Jun:71:102624. doi: 10.1016/j.humov.2020.102624. Epub 2020 Apr 25.

Abstract

Postural control continues to develop during middle childhood as shown by the decrease in body sway in stance between the ages of 5 and 11. Although head and trunk control is crucial for balance control during both static and dynamic activities, evaluating its specific development and its contribution to overall postural control is methodologically challenging. Here, we used an unstable sitting device adapted to ensure that only the axial segments could control the balance of the device and thus the balance of the upper body. This study aimed to assess the development of the postural stabilization of axial body segments during middle childhood. Thirty-six children (in three age groups: 6-7yo, 8-9yo, and 10-11yo) and 11 adults sat on the unstable sitting device and had to stabilize their axial segments under several conditions: a moderate vs. high level of balance challenge, and eyes open vs. eyes closed. Upper-body postural sway (area, mean velocity and root mean square (RMS) of the center of pressure (CoP) displacement) decreased progressively with age (6-7yo > 8-9yo > 10-11yo > adults), and this effect was accentuated when the balance challenge was high (for CoP area) or in the "eyes closed" condition (for CoP area and RMS). The stabilization strategies were assessed by anchoring indexes computed from three-dimensional kinematics. A progressive shift was showed, from an "en bloc" pattern at 6-7 years of age toward a more articulated (i.e. adult-like) pattern at 10-11. A head-on-space stabilization strategy first emerged at the age of 8-9. Middle childhood is an important period for the development of axial segment stabilization, which continues to mature until adulthood. This development might be related to the introduction and progressive mastery of feedforward sensorimotor processes and might contribute strongly to the development of overall postural control.

Keywords: Axial segments; Middle childhood; Motor development; Postural control; Segmental strategy; Stabilization; Unstable sitting.

MeSH terms

  • Adult
  • Age Factors
  • Biomechanical Phenomena
  • Child
  • Cross-Sectional Studies
  • Female
  • Head / physiology*
  • Humans
  • Male
  • Postural Balance*
  • Posture*
  • Sitting Position*