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Updated: Mar 17, 2026

Quantifying Learning in Young Infants: Tracking Leg Actions During a Discovery-learning Task
Published on: June 1, 2015
Movement patterns of limb coordination in infant rolling
Yoshio Kobayashi1, Hama Watanabe2, Gentaro Taga3
1Graduate School of Education, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo, 113-0033, Japan. ykoba@p.u-tokyo.ac.jp.
Insights
Older infants aged 8-10 months demonstrate improved limb coordination for rolling, using fewer stationary limbs than younger infants. This suggests enhanced motor control development in early infant development.
Area of Science:
- Developmental motor control
- Infant motor skill acquisition
Background:
- Rolling is a fundamental motor skill in infants, requiring dynamic whole-body movement.
- Limb coordination and postural control during infant rolling are not well understood.
Purpose of the Study:
- To investigate movement patterns and limb coordination during the initial stages of infant rolling.
- To compare rolling mechanics between younger (5-7 months) and older (8-10 months) infants.
Main Methods:
- Analysis focused on the first half of the rolling sequence.
- Limbs were classified as stationary (for stability) or moving (for control).
- Movement patterns were categorized by the number of stationary limbs and their sequence.
Main Results:
- Older infants utilized more movement patterns with fewer stationary limbs compared to younger infants.
- A limited set of basic limb movement patterns was dominant in both age groups.
- Older infants showed greater efficiency in selecting rotational movements.
Conclusions:
- The core limb coordination structure for rolling is established by 8-10 months of age.
- Infant rolling skill progresses with age, marked by increased efficiency and reduced reliance on stationary limbs.
- Development leads to better selection of effective movement strategies for rolling.
Abstract:
Infants must perform dynamic whole-body movements to initiate rolling, a key motor skill. However, little is known regarding limb coordination and postural control in infant rolling. To address this lack of knowledge, we examined movement patterns and limb coordination during rolling in younger infants (aged 5-7 months) that had just begun to roll and in older infants (aged 8-10 months) with greater rolling experience. Due to anticipated difficulty in obtaining measurements over the second half of the rolling sequence, we limited our analysis to the first half. Ipsilateral and contralateral limbs were identified on the basis of rolling direction and were classified as either a stationary limb used for postural stability or a moving limb used for controlled movement. We classified the observed movement patterns by identifying the number of stationary limbs and the serial order of combinational limb movement patterns. Notably, older infants performed more movement patterns that involved a lower number of stationary limbs than younger infants. Despite the wide range of possible movement patterns, a small group of basic patterns dominated in both age groups. Our results suggest that the fundamental structure of limb coordination during rolling in the early acquisition stages remains unchanged until at least 8-10 months of age. However, compared to younger infants, older infants exhibited a greater ability to select an effective rotational movement by positioning themselves with fewer stationary limbs and performing faster limb movements.
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