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Core Decompression of the Equine Navicular Bone: An In Vitro Biomechanical Study
Author(s) -
Jenner Florien,
KirkerHead Carl
Publication year - 2011
Publication title -
veterinary surgery
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.652
H-Index - 79
eISSN - 1532-950X
pISSN - 0161-3499
DOI - 10.1111/j.1532-950x.2010.00766.x
Subject(s) - medicine , navicular bone , decompression , bone mineral , reduction (mathematics) , drill , core (optical fiber) , radiography , orthodontics , anatomy , surgery , osteoporosis , pathology , materials science , geometry , mathematics , metallurgy , composite material
Objective: To determine the effect of core decompression surgery and bone mineral density (BMD) on the mechanical properties of equine navicular bones. Study Design: Experimental, in vitro study. Sample Population: Fore limb navicular bones (n=36 pairs) from sound 2–5‐year‐old horses with no radiographic abnormalities of the distal aspect of the forelimbs. Methods: Navicular BMD was measured using dual energy X‐ray absorptiometry. One randomly assigned navicular bone from each pair served as control. The contralateral test specimen was allocated to 1 of 6 treatment groups defined by drill bit size (3.2 versus 2.5 mm diameter) and by the number of drill channels (1, 2, or 3) created in the proximal border of the bone. Bones were then tested until failure in 3‐point bending. Data were statistically analyzed using ANOVA and regression analysis. Results: There were significant ( P <.001) positive correlations between BMD and biomechanical data. A significant ( P <.001) reduction in breaking strength was noted between intact and drilled bone pairs; however, the diameter and number of decompression channels did not significantly ( P >.05) influence the extent of the reduction in mechanical strength. Conclusion: In vitro core decompression significantly decreases the breaking strength of the equine navicular bone.