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1.
Vet Rec ; 184(4): 122, 2019 01 26.
Article in English | MEDLINE | ID: mdl-30635451

ABSTRACT

Modern interpretation of head conformation in the Cavalier King Charles spaniel (CKCS) has favoured a smaller, more exaggerated, brachycephalic type than originally described in the 1929 breed standard. Recent research studies identified brachycephaly and reduced hind cranium as two conformational (dysmorphic) features that increase risk for symptomatic Chiari-like malformation and secondary syringomyelia (SM). A prospective pilot study investigated the hypothesis that dysmorphic head features could be assessed visually and correlated with risk of SM. Thirteen CKCS, selected from anonymised photographic evidence, were physically appraised by authorised Kennel Club judges using a head shape checklist. These subjective evaluations were then matched with objective measurements of the cranium (cephalic index and rostrocaudal doming) and their subsequent MRI. A positive correlation (P=0.039) between the judges' checklist score and rostrocaudal doming (hindskull ratio) and a positive correlation between the cephalic index and hindskull ratio (P=0.042) were identified. Five CKCS had no SM and their status tallied with 62 per cent of the judges' evaluation. Although the ability of adjudicators to identify differences in head conformation varied, there was sufficient association between the dysmorphic parameters and the risk of SM to cause concern and propose a larger study in CKCS breed.


Subject(s)
Breeding/standards , Dog Diseases/diagnosis , Head/abnormalities , Syringomyelia/veterinary , Animals , Dog Diseases/epidemiology , Dogs , Pilot Projects , Prospective Studies , Risk , Syringomyelia/diagnosis , Syringomyelia/epidemiology
2.
J Comp Neurol ; 526(15): 2341-2359, 2018 10 15.
Article in English | MEDLINE | ID: mdl-30025159

ABSTRACT

All domesticated mammals exhibit marked reductions in overall brain size, however, it is unknown whether the corpus callosum (CC), an integral white matter fiber pathway for interhemispheric cortical communication, is affected by domestication differentially or strictly in coordination with changes in brain size. To answer this question, we used quantitative magnetic resonance imaging to compare the midsagittal cross-sectional areas of the CC in 35 carnivore species, including eight wild canids and 13 domestic dogs. We segmented rostro-caudal regions of interest for the CC and evaluated correlations with brain mass. The results of this study indicate that under the influence of domestication in canids, the CC scales to brain size in an allometric relationship that is similar to that of wild canids and other carnivores, with relatively high correlation coefficients observed for all regions, except the rostrum. These results indicate that architectural and energetic considerations are likely to tightly constrain variation in caudal components of the CC relative to overall brain size, however fibers passing through the rostrum, putatively connecting prefrontal cortex, are less constrained and therefore may contribute more toward species-specific differences in connectivity. Given the species diversity of the Canidae and the resurgence of interest in the brain of the domestic dog, further studies aimed at characterizing the neural architecture in domesticated species is likely to provide new insights into the effects of domestication, or artificial selection, on the brain.


Subject(s)
Animals, Domestic/physiology , Animals, Wild/physiology , Canidae/physiology , Corpus Callosum/anatomy & histology , Domestication , Animals , Brain/anatomy & histology , Brain/diagnostic imaging , Corpus Callosum/diagnostic imaging , Dogs , Female , Image Processing, Computer-Assisted , Magnetic Resonance Imaging , Male , Nerve Fibers , Observer Variation , Prefrontal Cortex/cytology , Prefrontal Cortex/physiology , Species Specificity
3.
BMC Vet Res ; 14(1): 82, 2018 Mar 09.
Article in English | MEDLINE | ID: mdl-29523203

ABSTRACT

BACKGROUND: Syringomyelia is a pathological condition in which fluid-filled cavities (syringes) form and expand in the spinal cord. Syringomyelia is often linked with obstruction of the craniocervical junction and a Chiari malformation, which is similar in both humans and animals. Some brachycephalic toy breed dogs such as Cavalier King Charles Spaniels (CKCS) are particularly predisposed. The exact mechanism of the formation of syringomyelia is undetermined and consequently with the lack of clinical explanation, engineers and mathematicians have resorted to computer models to identify possible physical mechanisms that can lead to syringes. We developed a computer model of the spinal cavity of a CKCS suffering from a large syrinx. The model was excited at the cranial end to simulate the movement of the cerebrospinal fluid (CSF) and the spinal cord due to the shift of blood volume in the cranium related to the cardiac cycle. To simulate the normal condition, the movement was prescribed to the CSF. To simulate the pathological condition, the movement of CSF was blocked. RESULTS: For normal conditions the pressure in the SAS was approximately 400 Pa and the same applied to all stress components in the spinal cord. The stress was uniformly distributed along the length of the spinal cord. When the blockage between the cranial and spinal CSF spaces forced the cord to move with the cardiac cycle, shear and axial normal stresses in the cord increased significantly. The sites where the elevated stress was most pronounced coincided with the axial locations where the syringes typically form, but they were at the perimeter rather than in the central portion of the cord. This elevated stress originated from the bending of the cord at the locations where its curvature was high. CONCLUSIONS: The results suggest that it is possible that repetitive stressing of the spinal cord caused by its exaggerated movement could be a cause for the formation of initial syringes. Further consideration of factors such as cord tethering and the difference in mechanical properties of white and grey matter is needed to fully explore this possibility.


Subject(s)
Computer Simulation , Dog Diseases/pathology , Syringomyelia/veterinary , Animals , Dog Diseases/cerebrospinal fluid , Dog Diseases/etiology , Dogs , Spinal Cord/pathology , Syringomyelia/cerebrospinal fluid , Syringomyelia/etiology , Syringomyelia/pathology
4.
Vet Comp Orthop Traumatol ; 31(2): 83-94, 2018 Feb.
Article in English | MEDLINE | ID: mdl-29534275

ABSTRACT

OBJECTIVE: Abnormalities within the spinal arachnoid space are often treated surgically, but they can be challenging to detect with conventional magnetic resonance imaging (MRI) sequences. 3D-CISS sequences are considered superior in evaluating structures surrounded by cerebrospinal fluid (CSF) due to the high signal-to-noise ratio, high contrast-to-noise ratio and intrinsic insensitivity to motion with minimal signal loss due to CSF pulsations. Our objective was to describe findings and advantages in adding 3D-CISS sequences to routine MRI in patients affected by spinal arachnoid diverticula (SAD) or arachnoid adhesions. MATERIAL AND METHODS: This article is a retrospective review of medical records of 19 dogs admitted at Fitzpatrick Referrals between 2013 and 2017 that were diagnosed with SAD and confirmed surgically. Inclusion criterions were the presence of clinical signs compatible with compressive myelopathy and an MRI diagnosis, which included the 3D-CISS sequence. Our database was searched for additional 19 dogs diagnosed with other spinal lesions other than SAD that had the same MR sequences. All MR images were anonymized and evaluated by two assessors. CONCLUSION AND CLINICAL RELEVANCE: 3D-CISS sequence appears to improve confidence in diagnosing and surgical planning (Mann-Whitney U-test: p < 0.0005), delineating SAD from other changes associated with abnormal CSF hydrodynamics and providing more anatomical details than conventional MRI sequences. The clinical data in combination with imaging findings would limit over interpretation, when concurrent pathology within the arachnoid space is present.


Subject(s)
Arachnoid Cysts/veterinary , Dog Diseases/diagnostic imaging , Magnetic Resonance Imaging/veterinary , Animals , Arachnoid Cysts/diagnostic imaging , Arachnoid Cysts/surgery , Dog Diseases/cerebrospinal fluid , Dog Diseases/surgery , Dogs , Female , Magnetic Resonance Imaging/methods , Male , Retrospective Studies
5.
Vet Comp Orthop Traumatol ; 31(2): 144-152, 2018 Feb.
Article in English | MEDLINE | ID: mdl-29534283

ABSTRACT

OBJECTIVE: This article aimed to describe the use and evolution of a synthetic osteochondral resurfacing (SOR) implant in the treatment of osteochondrosis dissecans (OCD) of the femoral condyle and to report the clinical, radiographic, computed tomography and magnetic resonance imaging outcomes of this technique. METHODS: Medical records of dogs that were treated with first-generation (G1) and second-generation (G2) SOR at a single institute were reviewed. Surgical reports and clinical examinations as well as the preoperative, postoperative, and follow-up radiographs, computed tomographic images and magnetic resonance imaging images were reviewed. RESULTS: Fourteen stifles (nine dogs) were included in the study. G1-SOR implants were employed in six stifles of four dogs and G2-SOR implants in eight stifles of five dogs. Osteochondrosis dissecans of the medial femoral condyle was confirmed as the sole pathology in all dogs treated with G1-SOR. Only one of eight OCD lesions was located on the medial condyle in the G2-SOR group with the remaining seven lesions affecting the lateral femoral condyle. At 12 weeks, 13 of 14 stifles displayed implant stability, with no subchondral bone changes or evidence of lucency around any implant. Eight of nine dogs achieved a good-excellent clinical outcome. Complications included one minor surgical site infection and one infective arthritis which required implant removal. CLINICAL SIGNIFICANCE: In this cohort of dogs, both G1-SOR and G2-SOR were successful and repeatable surgical procedures for dogs with OCD of the femoral condyle.


Subject(s)
Bone Substitutes , Dog Diseases/surgery , Osteochondritis Dissecans/veterinary , Stifle/surgery , Animals , Arthroscopy/veterinary , Dogs , Female , Male , Osteochondritis Dissecans/diagnostic imaging , Osteochondritis Dissecans/surgery , Postoperative Care/veterinary , Prostheses and Implants/adverse effects , Prostheses and Implants/veterinary , Tomography, X-Ray Computed/veterinary , Treatment Outcome
6.
BMC Vet Res ; 13(1): 340, 2017 Nov 16.
Article in English | MEDLINE | ID: mdl-29145838

ABSTRACT

BACKGROUND: A classic sign of canine syringomyelia (SM) is scratching towards one shoulder. Using magnetic resonance imaging (MRI) we investigate the spinal cord lesion relating to this phenomenon which has characteristics similar to fictive scratch secondary to spinal cord transection. Medical records were searched for Cavalier King Charles spaniels with a clinical and MRI diagnosis of symptomatic SM associated with Chiari-like malformation (CM). The cohort was divided into SM with phantom scratching (19 dogs) and SM but no phantom scratching (18 dogs). MRI files were anonymised, randomised and viewed in EFILM ™. For each transverse image, the maximum perpendicular dimensions of the syrinx in the dorsal spinal cord quadrants were determined. Visual assessment was made as to whether the syrinx extended to the superficial dorsal horn (SDH). RESULTS: We showed that phantom scratching appears associated with a large dorsolateral syrinx that extends to the SDH in the C3-C6 spinal cord segments (corresponding to C2-C5 vertebrae). Estimated dorsal quadrant syrinx sizes based on the perpendicular diameters were between 2.5 and 9.5 times larger in dogs with phantom scratching, with the largest mean difference p-value being 0.009. CONCLUSION: SM associated phantom scratching appears associated with MRI findings of a large syrinx extending into the mid cervical SDH. We hypothesise that damage in this region might influence the lumbosacral scratching central pattern generator (CPG). If a scratching SM affected dog does not have a large dorsolateral cervical syrinx with SDH involvement then alternative explanations for scratching should be investigated.


Subject(s)
Dog Diseases/diagnostic imaging , Syringomyelia/veterinary , Animals , Behavior, Animal , Dog Diseases/pathology , Dogs , Female , Magnetic Resonance Imaging/veterinary , Male , Spinal Cord/diagnostic imaging , Spinal Cord/pathology , Spinal Cord Dorsal Horn/diagnostic imaging , Spinal Cord Dorsal Horn/pathology , Syringomyelia/diagnostic imaging , Syringomyelia/pathology
7.
PLoS One ; 12(1): e0170315, 2017.
Article in English | MEDLINE | ID: mdl-28122014

ABSTRACT

OBJECTIVES: To characterise the symptomatic phenotype of Chiari-like malformation (CM), secondary syringomyelia (SM) and brachycephaly in the Cavalier King Charles Spaniel using morphometric measurements on mid-sagittal Magnetic Resonance images (MRI) of the brain and craniocervical junction. METHODS: This retrospective study, based on a previous quantitative analysis in the Griffon Bruxellois (GB), used 24 measurements taken on 130 T1-weighted MRI of hindbrain and cervical region. Associated brachycephaly was estimated using 26 measurements, including rostral forebrain flattening and olfactory lobe rotation, on 72 T2-weighted MRI of the whole brain. Both study cohorts were divided into three groups; Control, CM pain and SM and their morphometries compared with each other. RESULTS: Fourteen significant traits were identified in the hindbrain study and nine traits in the whole brain study, six of which were similar to the GB and suggest a common aetiology. The Control cohort had the most elliptical brain (p = 0.010), least olfactory bulb rotation (p = 0.003) and a protective angle (p = 0.004) compared to the other groups. The CM pain cohort had the greatest rostral forebrain flattening (p = 0.007), shortest basioccipital (p = 0.019), but a greater distance between the atlas and basioccipital (p = 0.002) which was protective for SM. The SM cohort had two conformation anomalies depending on the severity of craniocervical junction incongruities; i) the proximity of the dens (p <0.001) ii) increased airorhynchy with a smaller, more ventrally rotated olfactory bulb (p <0.001). Both generated 'concertina' flexures of the brain and craniocervical junction. CONCLUSION: Morphometric mapping provides a diagnostic tool for quantifying symptomatic CM, secondary SM and their relationship with brachycephaly. It is hypothesized that CM pain is associated with increased brachycephaly and SM can result from different combinations of abnormalities of the forebrain, caudal fossa and craniocervical junction which compromise the neural parenchyma and impede cerebrospinal fluid flow.


Subject(s)
Arnold-Chiari Malformation/veterinary , Brain/diagnostic imaging , Cephalometry , Cervical Vertebrae/diagnostic imaging , Craniosynostoses/veterinary , Dog Diseases/diagnostic imaging , Magnetic Resonance Imaging , Rhombencephalon/diagnostic imaging , Skull/diagnostic imaging , Syringomyelia/veterinary , Animals , Arnold-Chiari Malformation/complications , Arnold-Chiari Malformation/diagnostic imaging , Arnold-Chiari Malformation/genetics , Brain/pathology , Breeding , Cervical Vertebrae/pathology , Craniosynostoses/diagnostic imaging , Craniosynostoses/genetics , Discriminant Analysis , Dog Diseases/genetics , Dog Diseases/pathology , Dogs , Female , Foramen Magnum/diagnostic imaging , Foramen Magnum/pathology , Genetic Predisposition to Disease , Male , Observer Variation , Olfactory Bulb/diagnostic imaging , Olfactory Bulb/pathology , Phenotype , Reproducibility of Results , Retrospective Studies , Rhombencephalon/pathology , Skull/pathology , Skull Base/diagnostic imaging , Skull Base/pathology , Syringomyelia/diagnostic imaging , Syringomyelia/etiology , Syringomyelia/genetics
8.
Vet Radiol Ultrasound ; 58(2): 206-215, 2017 Mar.
Article in English | MEDLINE | ID: mdl-27862599

ABSTRACT

Degenerative lumbosacral stenosis has been suspected to have a dynamic component, especially regarding encroachment of the L7 nerve roots exiting the lumbosacral foramina. Angled cross-sectional imaging of the neuroforamina has been found improve the accuracy of the diagnosis of stenosis in humans. In this anatomic study, foraminal apertures were evaluated by MRI at the entry, middle, and exit zones of the nerve roots in 30 dogs that were clinically affected by lumbosacral disease. Standard vs. oblique planar orientation and neutral vs. hyperextended positioning of the lumbosacral area were compared by measuring the median values for entry, middle, and exit zones. The neuroforaminal area acquired using oblique plane acquisition was significantly smaller than standard parasagittal measurements. Furthermore, standard parasagittal neuroforaminal dimensions in the hyperextended position were significantly smaller than standard parasagittal measurements in the neutral position. This statistical difference was even more pronounced for neuroforaminal dimension evaluated in the oblique plane and hyperextended position. Positioning of the dog during imaging has a significant effect on neuroforaminal dimension, corroborating the notion that spinal position may influence neural claudication in clinically affected patients. Reductions in neuroforaminal dimension are more evident on oblique planar image acquisition, suggesting that this approach may be more useful than parasagittal imaging as a tool for identifying subtle changes in L7 neuroforaminal dimensions in cases of canine lumbosacral stenosis.


Subject(s)
Dog Diseases/diagnostic imaging , Lumbosacral Region/diagnostic imaging , Magnetic Resonance Imaging/veterinary , Spinal Stenosis/veterinary , Animals , Dogs , Female , Lumbar Vertebrae/diagnostic imaging , Magnetic Resonance Imaging/methods , Male , Patient Positioning/veterinary , Sacrum/diagnostic imaging , Spinal Stenosis/diagnostic imaging
9.
BMC Vet Res ; 11: 194, 2015 Aug 28.
Article in English | MEDLINE | ID: mdl-26319136

ABSTRACT

Epilepsy is one of the most common chronic neurological diseases in veterinary practice. Magnetic resonance imaging (MRI) is regarded as an important diagnostic test to reach the diagnosis of idiopathic epilepsy. However, given that the diagnosis requires the exclusion of other differentials for seizures, the parameters for MRI examination should allow the detection of subtle lesions which may not be obvious with existing techniques. In addition, there are several differentials for idiopathic epilepsy in humans, for example some focal cortical dysplasias, which may only apparent with special sequences, imaging planes and/or particular techniques used in performing the MRI scan. As a result, there is a need to standardize MRI examination in veterinary patients with techniques that reliably diagnose subtle lesions, identify post-seizure changes, and which will allow for future identification of underlying causes of seizures not yet apparent in the veterinary literature.There is a need for a standardized veterinary epilepsy-specific MRI protocol which will facilitate more detailed examination of areas susceptible to generating and perpetuating seizures, is cost efficient, simple to perform and can be adapted for both low and high field scanners. Standardisation of imaging will improve clinical communication and uniformity of case definition between research studies. A 6-7 sequence epilepsy-specific MRI protocol for veterinary patients is proposed and further advanced MR and functional imaging is reviewed.


Subject(s)
Dog Diseases/diagnosis , Epilepsy/veterinary , Magnetic Resonance Imaging/veterinary , Veterinary Medicine/organization & administration , Animals , Brain/diagnostic imaging , Brain/pathology , Dog Diseases/pathology , Dogs , Epilepsy/diagnosis , Epilepsy/pathology , Internationality , Magnetic Resonance Imaging/methods , Radiography
10.
Vet Surg ; 42(7): 832-9, 2013 Oct.
Article in English | MEDLINE | ID: mdl-23914739

ABSTRACT

OBJECTIVE: To test the efficacy of a piezoelectric instrument (PI) for bone removal during ventral slot surgery. STUDY DESIGN: Ex vivo feasibility study. SAMPLE POPULATION: Cadaveric canine cervical spinal specimens (n = 3; C1-7; C1-T1; C2-T1). METHODS: The spinal cord of each explanted spinal unit was replaced with a saline-filled latex condom. In 8 disc spaces, ventral slot surgery was performed using a previously reported technique. Bone removal was achieved using a motorized burr (MB). In 8 disc spaces, bone was removed via en bloc ostectomy with a PI that selectively cuts mineralized tissue. Surgical duration and operating field visibility were recorded. Rupture of the fluid filled condom was used as a measure of iatrogenic collateral trauma. Computed tomography was used to measure ventral slot morphometry. RESULTS: Mean surgical duration for PI (23.4 minutes) was significantly shorter than for MB (34.1 minutes; P = .049). Using a 4 point Likert scale (4 = excellent, 3 = good, 2 = fair, 1 = poor), median visibility score was significantly higher for PI (2) than for MB (1; P = .03). The condom burst twice (1MB, 1PI) during elevation of the dorsal longitudinal ligament; there was no significant difference between techniques for incidence of collateral trauma (P = .99). Regardless of surgical technique, there was a bias in slot deviation towards the right (i.e., the surgeon's left; P = .021). CONCLUSIONS: The PI allowed completion of ventral slots in a significantly shorter time, without an increased incidence of iatrogenic trauma. The right-handed surgeon showed a left-sided aiming bias, regardless of surgical technique.


Subject(s)
Decompression, Surgical/veterinary , Dogs , Piezosurgery/veterinary , Animals , Biomechanical Phenomena , Cadaver , Decompression, Surgical/instrumentation , Decompression, Surgical/methods , Piezosurgery/instrumentation , Piezosurgery/methods
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