Improved kinect-based spatiotemporal and kinematic treadmill gait assessment

Gait Posture. 2017 Jan:51:77-83. doi: 10.1016/j.gaitpost.2016.10.001. Epub 2016 Oct 4.

Abstract

A cost-effective, clinician friendly gait assessment tool that can automatically track patients' anatomical landmarks can provide practitioners with important information that is useful in prescribing rehabilitative and preventive therapies. This study investigated the validity and reliability of the Microsoft Kinect v2 as a potential inexpensive gait analysis tool. Ten healthy subjects walked on a treadmill at 1.3 and 1.6m·s-1, as spatiotemporal parameters and kinematics were extracted concurrently using the Kinect and three-dimensional motion analysis. Spatiotemporal measures included step length and width, step and stride times, vertical and mediolateral pelvis motion, and foot swing velocity. Kinematic outcomes included hip, knee, and ankle joint angles in the sagittal plane. The absolute agreement and relative consistency between the two systems were assessed using interclass correlations coefficients (ICC2,1), while reproducibility between systems was established using Lin's Concordance Correlation Coefficient (rc). Comparison of ensemble curves and associated 90% confidence intervals (CI90) of the hip, knee, and ankle joint angles were performed to investigate if the Kinect sensor could consistently and accurately assess lower extremity joint motion throughout the gait cycle. Results showed that the Kinect v2 sensor has the potential to be an effective clinical assessment tool for sagittal plane knee and hip joint kinematics, as well as some spatiotemporal temporal variables including pelvis displacement and step characteristics during the gait cycle.

Keywords: Biomechanics; Gait analysis; Kinect; Optoelectronic motion capture; Treadmill gait.

Publication types

  • Evaluation Study

MeSH terms

  • Adult
  • Biomechanical Phenomena
  • Exercise Test*
  • Female
  • Gait*
  • Hip Joint / physiology*
  • Humans
  • Knee Joint / physiology*
  • Lower Extremity / physiology
  • Male
  • Reproducibility of Results
  • Spatio-Temporal Analysis
  • Walking*