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Kinetic gait analysis of healthy dogs on two different surfaces.

Authors :
Kapatkin AS
Arbittier G
Kass PH
Gilley RS
Smith GK
Source :
Veterinary surgery : VS [Vet Surg] 2007 Aug; Vol. 36 (6), pp. 605-8.
Publication Year :
2007

Abstract

Objective: To determine the effects of 2 different, commonly used surfaces with different coefficients of friction on ground reaction forces in normal dogs.<br />Study Design: Prospective, observational, single cross-over study.<br />Animals: Dogs (n=10) with no gait abnormalities.<br />Methods: Dogs were acclimated to the force plate and 5 valid trials for each dog and each limb were recorded. Velocity and acceleration were tightly controlled. Each dog was tested on both surfaces sequentially in different sequences. Data analysis was done on peak vertical force, peak impulse, breaking and propulsion peak forces and impulses. Three-way repeated measures analysis of variance was used to separately evaluate the effect of floor type on force plate measures in fore and hind limbs, while controlling for side (left versus right) and experimental replicate. P-values<.05 were considered significant. Mean force and 95% confidence interval for the 6 variables analyzed for all limbs on each surface were calculated.<br />Results: There were no significant differences in ground reaction forces between the linoleum and the carpet surface for thoracic or pelvic limbs for all gait variables measured. There were no significant differences between each individual gait trial per dog between the right and left thoracic limbs trials nor differences between the right and left pelvic limb trials.<br />Conclusions: Normal dogs had no change in their ground reaction forces on linoleum and carpet surfaces.<br />Clinical Relevance: Kinetic results from multi-center or comparative trials will not be affected by use of either linoleum or carpet surfaces.

Details

Language :
English
ISSN :
1532-950X
Volume :
36
Issue :
6
Database :
MEDLINE
Journal :
Veterinary surgery : VS
Publication Type :
Academic Journal
Accession number :
17686136
Full Text :
https://doi.org/10.1111/j.1532-950X.2007.00311.x