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1.
J Avian Med Surg ; 36(2): 178-186, 2022 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-35972870

RESUMEN

Fluoroscopic angiography evaluates the heart and vascular tree in real time and can be recorded for further diagnostic analysis and measurements. Although reports have been published of the use of fluoroscopic angiography in birds, this technique has not been evaluated in any avian species. The purpose of this study was to evaluate a fluoroscopic angiography protocol in 12 adult Hispaniolan Amazon parrots (Amazona ventralis). Under general anesthesia, the birds were positioned in right lateral (LAT) recumbency on a fluoroscopy table. A bolus of nonionic iodinated contrast agent was injected through a catheter inserted into the basilic or medial metatarsal vein during video acquisition. The same bolus was repeated to obtain the ventrodorsal (VD) view with the bird placed in dorsal recumbency. Eleven studies were performed. A total of 19 (10 VD, 9 LAT) continuous, real-time, fluoroscopic angiograms were successfully captured. The brachiocephalic trunk, aorta, pulmonary arteries, pulmonary veins, and caudal vena cava were visualized, and selected intraluminal measurements collected. The intraobserver and interobserver variability for 3 observers was calculated. Intraobserver agreement was found to be near perfect (intraclass correlation coefficient ≥0.95), whereas interobserver agreement was moderate to substantial (intraclass correlation coefficient ≥0.52). Coefficients of variation were excellent (VD 0.99, LAT 0.99) for intraobserver assessments and moderate (VD 0.72, LAT 0.52) for interobserver assessments. For the interobserver assessments, the VD projection measurements performed better than the LAT measurements. These results suggest that although there was some variation between different observers, relatively consistent vascular measurements could be obtained. The described fluoroscopic angiography protocol is a repeatable and reliable technique that could be useful for the diagnosis and monitoring of cardiovascular diseases in birds.


Asunto(s)
Amazona , Angiografía , Animales , Fluoroscopía/veterinaria
2.
Front Genet ; 11: 549558, 2020.
Artículo en Inglés | MEDLINE | ID: mdl-33193624

RESUMEN

Avian species have varying analgesic responses to opioid drugs. Some of this variability could be due to extrinsic factors such as administration route or dose. However, intrinsic factors such as gene expression or polymorphic differences in opioid receptors may be important components. OBJECTIVES: The objectives of this study were to determine the relative gene expression and polymorphisms present for mu and kappa opioid receptors (OPRM1 and OPRK1) in the cerebrum, brainstem, spinal cord, and footpad of cockatiels and pigeons. METHODS: Tissue biopsies were obtained from 11 adult cockatiels (6 male and 5 female) and 11 adult pigeons (6 male and 5 female). RNA was extracted and qPCR was performed to determine the level of gene expression for OPRM1 and OPRK1 relative to a reference gene phosphoglycerate kinase 1 (PGK1) using the ΔΔCt method. Sanger sequencing was performed to identify polymorphisms, if present. RESULTS: There were higher expression levels of OPRM1 compared to OPRK1 in all tissues examined regardless of species (p < 0.001, FDR p < 0.001) Cockatiels had less OPRK1 expression in the cerebrum compared to pigeons (p = 0.005, FDR p = 0.004). Cockatiels had more OPRM1 expression in the brainstem (p = 0.045, FDR p = 0.029), but less OPRM1 expression in the footpad compared to pigeons (p = 0.029, FDR p = 0.021). No other significant differences in OPRM1 or OPRK1 expression were identified across species. Two missense polymorphisms were identified in OPRK1; none were found in OPRM1. CONCLUSION: The differential expression of opioid receptors between cockatiels and pigeons could have implications for variability in analgesic response between these two species.

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