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Stride percentage (P < 0.0001) and the interaction stride percentage and rein were significant (P < 0.0001).
The 2-way interaction between rein and stride percentage was tested.
In the walk model the remaining variables were stride percentage (P < 0.0001), the interaction stride percentage and rein (P < 0.0001), whether the nose was moving in or out (P < 0.0001) and nose angle ROM (P = 0.01).
Stride split data (0 100 %) were analysed using mixed models technique to elucidate the left/right rein and stride percentage interaction, in relation to the exercises performed.
Fixed effects modeled over the stride (i.e. those effects were not constant over a normalised stride) were stride percentage (0 100 %), and whether the nose angle increased or decreased.
Rein tension decreased among horse categories in the following order: advanced horses/young horses/medium and basic horses, with several significant pairwise comparisons.> -wrap-foot> The model also contained the fixed effects of stride percentage (P < 0.0001) and its interaction with rein (P < 0.0001).
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Stride percentages zero and 100 represent mid-stance of the right forelimb.
Gait characteristics at NWS (step, stride, stance and percentage of the initial and terminal double stance) were not different between the groups (Table 1).
The peak vertical force (PVF), vertical impulse (VI), gait cycle time, stance time, swing time, stride length, and percentage body weight distribution among the four limbs were determined.
Since step width, stride length, and percentage stance time can show weak to strong correlations to an animal's selected velocity, a generalized linear modeling (GLM) approach was used to account for a linear dependence on trial velocity, followed by a post-hoc Newman-Keuls test.
There was no change in percentage of stride and stance in braking phase, percentage of stride and stance in propulsion phase, stance duration and stance factor, or the ratio of left to right stance durations between 4 and 10 weeks after injury or between injured and sham operated controls at either time for these parameters.
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