| Literature DB >> 31399093 |
Jonathan A Blakely1, James R Butler2, Lauren B Priddy3, Emily M McCabe3, Javier N Avendaño1, Steve H Elder3, Robert Wills1.
Abstract
BACKGROUND: Acetabular fractures comprise 12-30% of canine pelvic fractures and require accurate anatomic reduction and rigid stability to ensure proper healing and minimize future osteoarthritis. Many techniques have been used to repair these fractures, with common techniques including veterinary acetabular plates or use of screw/wire/polymethylmethacrylate constructs. String-of-Pearl™ plating systems have also been used clinically but there is a lack of research supporting their use for these fractures. The purpose of this study was to compare fracture reduction accuracy, biomechanical characteristics, and mode of failure between String-of-Pearls™, veterinary acetabular plates, screw/wire/polymethylmethacrylate constructs in a simulated, ex-vivo acetabular fracture model. We hypothesized that the String-of-Pearls™ constructs would have equivalent or greater mechanical properties and reduction compared to the other constructs.Entities:
Keywords: Acetabulum; Biomechanics; Canine; Fracture; String-of-pearls
Mesh:
Substances:
Year: 2019 PMID: 31399093 PMCID: PMC6688321 DOI: 10.1186/s12917-019-2024-4
Source DB: PubMed Journal: BMC Vet Res ISSN: 1746-6148 Impact factor: 2.741
Comparison of cyclic displacement, stiffness, and comparison between SWP, SOP, and VAP fixations
| Fixation | Displacement (mm) | Stiffness at 100 Cycles (N/mm) | Stiffness at 500 Cycles (N/mm) | Stiffness at 1000 Cycles (N/mm) | Stiffness at 7500 Cycles (N/mm) | Stiffness at 14750 Cycles (N/mm) |
|---|---|---|---|---|---|---|
| SWP | 0.77 | 415.3 | 595.27 | 626.53 | 695.77 | 665.16 |
| SOP | 0.682 | 527.15 | 463.13 | 483.98 | 526.91 | 496.94 |
| VAP | 0.799 | 508.69 | 548.01 | 557.14 | 555.18 | 546.42 |
|
| 0.8 | 0.414 | 0.6014 | 0.5336 | 0.2732 | 0.3298 |
SWP screw/wire/polymethylmethacrylate, SOP string-of-pearls™ plate, VAP veterinary acetabular plate, Values reported as mean
Fig. 1Cyclic displacement for SOP, SWP, and VAP constructs
Fig. 2Cyclic stiffness for SOP, SWP, and VAP constructs
Comparison of ultimate load, stiffness, displacement at failure, and failure load at 25th, 50th, and 75th percentile of animal weight
| Fixation | Ultimate Load (N) | Stiffness (N/mm) | Failure Load 25th Percentile (N) | Failure Load 50th Percentile (N) | Failure Load 75th Percentile (N) | |
|---|---|---|---|---|---|---|
| SWP | 1603.64 ± 170.15 | 344.58 ± 44.66 | 1720.74 ± 295.80 | 1513.74 ± 204.84 | 1248.05 ± 220.85 | |
| SOP | 2182.02 ± 176.15 | 369.39 ± 44.66 | 1689.80 ± 232.64 | 1982.79 ± 188.53 | 2358.87 ± 238.50 | |
| VAP | 1552.91 ± 169.94 | 229.56 ± 43.12 | 1312.38 ± 225.96 | 1347.27 ± 183.42 | 1392.06 ± 220.37 | |
|
|
|
|
|
| ||
|
| SWP vs VAP | 0.9761 | 0.1001 |
|
|
|
| SOP vs VAP |
|
|
|
|
| |
SWP screw/wire/polymethylmethacrylate, SOP string-of-pearls™ plate, VAP veterinary acetabular plate. Values reported as mean ± SEM. Significant comparisons indicated by an asterisks (*)
Fig. 3String-of-Pearls™ construct failure via caudal screw cut-out
Fig. 4a String-of-Pearls™ plate contouring, application, and mounting. b Screw/Wire/Methylmethacrylate fixation demonstrating application and mounting. c Veterinary Acetabular Plate application and mounting. d Demonstration of the testing apparatus to replicate 110° hip flexion. e Demonstration of the testing apparatus to replicate 105° hip abduction