4.6 Article

Overground gait kinematics and muscle activation patterns in the Yucatan mini pig

Journal

JOURNAL OF NEURAL ENGINEERING
Volume 19, Issue 2, Pages -

Publisher

IOP Publishing Ltd
DOI: 10.1088/1741-2552/ac55ac

Keywords

kinematics; large animal model; porcine model; spinal cord injury; overground walking

Funding

  1. Canadian Institutes of Health Research (CIHR)
  2. Canada Foundation for Innovation
  3. US Department of Defense CDMRP-SCIRP
  4. Natural Sciences and Engineering Research Council Graduate Scholarship
  5. Alberta Graduate Excellence Scholarship
  6. Faculty of Medicine & Dentistry Graduate Recruitment Scholarship
  7. Queen Elizabeth II Graduate Scholarship
  8. CIHR Vanier Canada Graduate Scholarship
  9. Alberta Innovates Health Solutions Studentship

Ask authors/readers for more resources

This study assessed the gait biomechanics and the effect of overground walking speed on gait parameters, kinematics, and electromyographic activity in Yucatan minipigs. Increases in speed led to decreases in stride duration, stance and swing times, and an increase in stride length. The range of motion of the knee and ankle joints increased at higher speeds, and the onset of muscle activity occurred earlier in the gait cycle with increasing speed. These findings provide valuable insights for future interventions in Yucatan minipigs.
Objective. The objectives of this study were to assess gait biomechanics and the effect of overground walking speed on gait parameters, kinematics, and electromyographic (EMG) activity in the hindlimb muscles of Yucatan minipigs (YMPs). Approach. Nine neurologically-intact, adult YMPs were trained to walk overground in a straight line. Whole-body kinematics and EMG activity of hindlimb muscles were recorded and analyzed at six different speed ranges (0.4-0.59, 0.6-0.79, 0.8-0.99, 1.0-1.19, 1.2-1.39, and 1.4-1.6 m s(-1)). A MATLAB program was developed to detect strides and gait events automatically from motion-captured data. The kinematics and EMG activity were analyzed for each stride based on the detected events. Main results. Significant decreases in stride duration, stance and swing times and an increase in stride length were observed with increasing speed. A transition in gait pattern occurred at the 1.0 m s(-1) walking speed. Significant increases in the range of motion of the knee and ankle joints were observed at higher speeds. Also, the points of minimum and maximum joint angles occurred earlier in the gait cycle as the walking speed increased. The onset of EMG activity in the biceps femoris muscle occurred significantly earlier in the gait cycle with increasing speed. Significance. YMPs are becoming frequently used as large animal models for preclinical testing and translation of novel interventions to humans. A comprehensive characterization of overground walking in neurologically-intact YMPs is provided in this study. These normative measures set the basis against which the effects of future interventions on locomotor capacity in YMPs can be compared.

Authors

I am an author on this paper
Click your name to claim this paper and add it to your profile.

Reviews

Primary Rating

4.6
Not enough ratings

Secondary Ratings

Novelty
-
Significance
-
Scientific rigor
-
Rate this paper

Recommended

No Data Available
No Data Available