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2.
Res Vet Sci ; 128: 76-85, 2020 Feb.
Article in English | MEDLINE | ID: mdl-31759272

ABSTRACT

The atlantoaxial joint can be affected by instability, in most cases a congenital pathology in young small breed dogs. Causes of atlantoaxial instability (AAI) are variable but are usually attributed to a lack of ligamentous support. The purpose of the present study was to specify the role of the ligamentous structures in the stabilisation of the atlantoaxial joint and to find possible adaptations of the ligaments' internal structure to their specific function. Five Beagle cadavers were included in this study. Each dog was subjected to a computed tomography (CT) and a magnetic resonance imaging (MRI) examination of the upper cervical region. This region was then dissected and the ligamentous structures stabilising the atlantoaxial joint were measured and removed for histological analysis. A ligament to dens ratio (LDR) was established in order to provide a basis for comparison with the measurements taken in other dog breeds. MRI and gross anatomical measurements were very similar, confirming the validity of the results. MRI thus seems reliable for evaluating the ligamentous structures of the canine occipitoatlantoaxial region. The movement exerting the greatest stress on the atlantoaxial ligaments and inducing the greatest distension of the alar ligaments was a head flexion combined with a rotation. A clear adaptation of the ligamentous shape and internal structure to their specific function was observed. Histologically, alar ligaments consisted of wavy collagen fibres and a high proportion of elastic fibres, providing them with a remarkable elasticity compared to the transverse ligament structure which was much more rigid.


Subject(s)
Atlanto-Axial Joint/anatomy & histology , Dogs/anatomy & histology , Ligaments, Articular/physiology , Animals , Atlanto-Axial Joint/diagnostic imaging , Atlanto-Axial Joint/physiology , Cadaver , Dogs/physiology , Female , Magnetic Resonance Imaging/veterinary , Male , Tomography, X-Ray Computed/veterinary
3.
Vet Comp Orthop Traumatol ; 32(3): 200-206, 2019 May.
Article in English | MEDLINE | ID: mdl-31100766

ABSTRACT

BACKGROUND: In human medicine, fractures of the second cervical vertebra have been studied elaborately and categorized in detail. This is not the case in veterinary medicine where clinical decisions are often based on old studies focusing on the cervical spine in general. OBJECTIVES: The aim of this study was to describe the clinical features, fracture types, therapeutic options and outcome of dogs and cats with a fractured axis. STUDY DESIGN: The present study was a multi-institutional retrospective case series. RESULTS: Crossbreeds and Labrador Retrievers were the most represented dog breeds. Median age was 2 years. Motor vehicle accident was the most common inciting cause, followed by frontal collision. The most common neurological deficits ranged from cervical pain with or without mild ataxia (22/68) to tetraparesis (28/68) and tetraplegia (11/68). Concerning treatment, 37 of 69 patients underwent surgical fracture stabilization, 27/69 received conservative therapy and 5/69 were immediately euthanatized. Of all treated cases, 52/58 showed ambulatory recovery (23/25 of the conservatively treated and 29/33 of the surgically treated cases), whereby in 40/52 cases full recovery without persisting signs was achieved. CONCLUSIONS: Fractures of the axis commonly occur in young dogs. In many cases, neurological deficits are relatively mild. Generally, animals with a fractured axis have a very good prognosis for functional recovery. The risk of perioperative mortality is considerably lower than previously reported.


Subject(s)
Cats/injuries , Cervical Vertebrae/surgery , Dogs/injuries , Spinal Fractures/veterinary , Accidents, Traffic , Animals , Cats/surgery , Dogs/surgery , Female , Male , Retrospective Studies , Spinal Fractures/etiology , Spinal Fractures/surgery , Treatment Outcome
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