The objective of this study was to evaluate the accuracy of ultrasonographic diagnosis of lesions in the canine stifle associated with cranial cruciate ligament rupture. Thirteen dogs that had a diagnosis of cranial cruciate ligament rupture were included in this prospective clinical study. Two ultrasonographers who were unaware of specific historical and clinical data performed the sonography with a high frequency (8-16 MHz) linear transducer. Surgical treatment of the affected stifle was performed within two days of ultrasonography by a surgeon who was unaware of the ultrasonographic findings. The lesions observed during ultrasonography and arthrotomy were compared at the completion of the study. Visualisation of the superficial tendons (quadriceps and long digital extensor) and ligaments (patellar ligament, collateral ligaments) of the stifle using ultrasonography was excellent. However, the detection of deep stifle ligaments (cranial cruciate ligament and caudal cruciate ligament) was extremely difficult to perform using ultrasonography. For cranial cruciate ligament rupture, the sensitivity for ultrasonographic diagnosis was 15.4%. For meniscal lesions, the sensitivity, specificity, positive and negative predictive values for ultrasonographic diagnosis were 82%, 93%, 90% and 88% respectively. High frequency ultrasonography is a non-invasive method for accurately and efficiently detecting superficial ligaments, tendons and meniscal lesions associated with cranial cruciate ligament rupture in the stifle of non-sedated dogs.
BackgroundThe purposes of the study were to determine the relevance and validity of in vivo non-invasive radiographic assessment of the CCLT (Cranial Cruciate Ligament Transection) rabbit model of osteoarthritis (OA) and to estimate the pertinence, reliability and reproducibility of a radiographic OA (ROA) grading scale and associated radiographic atlas.MethodsIn vivo non-invasive extended non weight-bearing radiography of the rabbit femorotibial joint was standardized. Two hundred and fifty radiographs from control and CCLT rabbits up to five months after surgery were reviewed by three readers. They subsequently constructed an original semi-quantitative grading scale as well as an illustrative atlas of individual ROA feature for the medial compartment. To measure agreements, five readers independently scored the same radiographic sample using this atlas and three of them performed a second reading. To evaluate the pertinence of the ROA grading scale, ROA results were compared with gross examination in forty operated and ten control rabbits.ResultsRadiographic osteophytes of medial femoral condyles and medial tibial condyles were scored on a four point scale and dichotomously for osteophytes of medial fabella. Medial joint space width was scored as normal, reduced or absent. Each ROA features was well correlated with gross examination (p < 0.001). ICCs of each ROA features demonstrated excellent agreement between readers and within reading. Global ROA score gave the highest ICCs value for between (ICC 0.93; CI 0.90-0.96) and within (ICC ranged from 0.94 to 0.96) observer agreements. Among all individual ROA features, medial joint space width scoring gave the highest overall reliability and reproducibility and was correlated with both meniscal and cartilage macroscopic lesions (rs = 0.68 and rs = 0.58, p < 0.001 respectively). Radiographic osteophytes of the medial femoral condyle gave the lowest agreements while being well correlated with the macroscopic osteophytes (rs = 0.64, p < 0.001).ConclusionNon-invasive in vivo radiography of the rabbit femorotibial joint is feasible, relevant and allows a reproducible grading of experimentally induced OA lesion. The radiographic grading scale and atlas presented could be used as a template for in vivo non invasive grading of ROA in preclinical studies and could allow future comparisons between studies.
A significant relationship was found between ultrasonographic and macroscopic grading of meniscal injuries. US was both specific and sensitive in detecting meniscal lesions. We propose US as a non-invasive, non-expensive, in vivo imaging technique for preclinical studies in the ACLT rabbit OA model.
To the authors' knowledge, 160 μg is the lowest reported dose of rhBMP-2 that leads to bony union in a cat. However as an individual case study, this report can not be used as evidence that rhBMP-2 at this lower dose is appropriate for use in all cats. Further studies are needed to establish the minimum efficient dose of rhBMP-2 in cats.
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