Dataset of 3D gait analysis in typically developing children walking at three different speeds on an instrumented

Rachel Senden1, Rik Marcellis1, Kenneth Meijer2

  • 1Department of Physical Therapy, Maastricht University Medical Center, Postbus 5800 AZ, Maastricht 6020, the Netherlands.

Data in Brief
|April 28, 2023
PubMed

Insights

This study shares publicly available gait data from typically developing children walking at various speeds. The dataset includes raw and processed information to aid research in pediatric biomechanics and gait analysis.

Area of Science:

  • Biomechanics
  • Pediatric Gait Analysis
  • Human Movement Science

Background:

  • Understanding typical gait development in children is crucial for identifying developmental abnormalities.
  • Publicly accessible, comprehensive gait datasets are essential for advancing research and clinical applications.
  • Standardized gait analysis protocols are needed for reliable data collection and comparison.

Purpose of the Study:

  • To publicly share a detailed dataset of gait data from typically developing children.
  • To provide raw and processed kinematic and kinetic data for various walking speeds.
  • To facilitate research in pediatric biomechanics and the development of clinical diagnostic tools.

Main Methods:

  • Gait data collected from typically developing children using the Computer Assisted Rehabilitation Environment (CAREN) system.
  • Children walked at comfortable, 30% slower, and 30% faster speeds on a treadmill in a virtual environment.
  • Data processed using custom Matlab algorithms, including spatiotemporal parameters, joint angles, ground reaction forces, and joint moments.

Main Results:

  • A comprehensive dataset including raw and processed gait parameters for individual children and age groups is now publicly available.
  • Data encompasses kinematic and kinetic variables for each step of both legs across different walking speeds.
  • Demographic and physical examination data are provided to enable matched group selection for comparative studies.

Conclusions:

  • This dataset provides a valuable resource for researchers studying pediatric gait and biomechanics.
  • The availability of detailed gait data supports the development of normative gait profiles for clinical use.
  • The study facilitates further investigation into factors influencing gait patterns in children.

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