Literature DB >> 32605423

Treadmill-Based Gait Kinematics in the Yucatan Mini Pig.

Maxwell Boakye1, Johnny Morehouse1, Jay Ethridge1, Darlene A Burke1, Nicolas K Khattar1, Chitra Kumar1, Neda Manouchehri2, Femke Streijger2, Robert Reed1, David S K Magnuson1, Leslie Sherwood3, Brian K Kwon2,4, Dena R Howland1,5.   

Abstract

Yucatan miniature pigs (YMPs) are similar to humans in spinal cord size as well as physiological and neuroanatomical features, making them a useful model for human spinal cord injury. However, little is known regarding pig gait kinematics, especially on a treadmill. In this study, 12 healthy YMPs were assessed during bipedal and/or quadrupedal stepping on a treadmill at six speeds (1.0, 1.5, 2.0, 2.5, 3.0, and 3.5 km/h). Kinematic parameters, including limb coordination and proximal and distal limb angles, were measured. Findings indicate that YMPs use a lateral sequence footfall pattern across all speeds. Stride and stance durations decreased with increasing speed whereas swing duration showed no significant change. Across all speeds assessed, no significant differences were noted between hindlimb stepping parameters for bipedal or quadrupedal gait with the exception of distal limb angular kinematics. Specifically, significant differences were observed between locomotor tasks during maximum flexion (quadrupedal > bipedal), total excursion (bipedal > quadrupedal), and the phase relationship between the timing of maximum extension between the right and left hindlimbs (bipedal > quadrupedal). Speed also impacted maximum flexion and right-left phase relationships given that significant differences were found between the fastest speed (3.5 km/h) relative to each of the other speeds. This study establishes a methodology for bipedal and quadrupedal treadmill-based kinematic testing in healthy YMPs. The treadmill approach used was effective in recruiting primarily the spinal circuitry responsible for the basic stepping patterns as has been shown in cats. We recommend 2.5 km/h (0.7 m/sec) as a target walking gait for pre-clinical studies using YMPs, which is similar to that used in cats.

Entities:  

Keywords:  kinematics; large animal model; porcine model; spinal cord injury; treadmill

Year:  2020        PMID: 32605423     DOI: 10.1089/neu.2020.7050

Source DB:  PubMed          Journal:  J Neurotrauma        ISSN: 0897-7151            Impact factor:   5.269


  3 in total

1.  Rabbit hindlimb kinematics and ground contact kinetics during the stance phase of gait.

Authors:  Patrick Hall; Caleb Stubbs; David E Anderson; Cheryl Greenacre; Dustin L Crouch
Journal:  PeerJ       Date:  2022-06-17       Impact factor: 3.061

2.  Silencing long ascending propriospinal neurons after spinal cord injury improves hindlimb stepping in the adult rat.

Authors:  Courtney T Shepard; Amanda M Pocratsky; Brandon L Brown; Morgan A Van Rijswijck; Rachel M Zalla; Darlene A Burke; Johnny R Morehouse; Amberley S Riegler; Scott R Whittemore; David Sk Magnuson
Journal:  Elife       Date:  2021-12-02       Impact factor: 8.140

3.  How to generate graded spinal cord injuries in swine - tools and procedures.

Authors:  Mark Züchner; Manuel J Escalona; Lena Hammerlund Teige; Evangelos Balafas; Lili Zhang; Nikolaos Kostomitsopoulos; Jean-Luc Boulland
Journal:  Dis Model Mech       Date:  2021-08-31       Impact factor: 5.758

  3 in total

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