M. Or, K. Ishigaki, H. de Rooster, K. Kutara, K. Asano
{"title":"Determination of Porto-Azygos Shunt Anatomy in Dogs by Computed Tomography Angiography.","authors":"M. Or, K. Ishigaki, H. de Rooster, K. Kutara, K. Asano","doi":"10.1111/vsu.12553","DOIUrl":null,"url":null,"abstract":"OBJECTIVE\nTo describe the morphology of porto-azygos shunts in a large series of dogs using computed tomography (CT) angiography.\n\n\nSTUDY DESIGN\nRetrospective study.\n\n\nANIMALS\nDogs (n=36) with porto-azygos shunts.\n\n\nMETHODS\nCT angiography was performed in dogs subsequently proven to have a porto-azygos shunt. The origin and insertion of the shunts were assessed on native images. The diameter of the porto-azygos shunt and the portal vein, cranial and caudal to the shunt origin, were measured. The porto-azygos shunt anatomy was studied on three-dimensional images.\n\n\nRESULTS\nAll porto-azygos shunts originated either in the left gastric vein (33 left gastro-azygos shunts) or the right gastric vein (3 right gastro-azygos shunts). Two left gastro-azygos shunts had concurrent caval-azygos continuation and 2 right gastro-azygos shunts had a caudal splenic loop. All shunts crossed the diaphragm through the esophageal hiatus. The majority of porto-azygos shunts (32) followed a straight pathway after traversing the diaphragm, although 4 shunts followed a tortuous route. All shunts terminated in the thoracic part of the azygos vein, perpendicular to the aorta. The shunt diameter at insertion was only 3 mm on average. The insertion site was consistently the narrowest part of the shunt.\n\n\nCONCLUSION\nCT angiography was well suited to provide anatomic details of porto-azygos shunts and comprehensively documented that all porto-azygos shunts had a thoracic terminus, after crossing the diaphragm through the esophageal hiatus. Different shunt types existed with minor variations.","PeriodicalId":123280,"journal":{"name":"Veterinary surgery : VS","volume":"4 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2016-11-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"16","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Veterinary surgery : VS","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1111/vsu.12553","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 16
Abstract
OBJECTIVE
To describe the morphology of porto-azygos shunts in a large series of dogs using computed tomography (CT) angiography.
STUDY DESIGN
Retrospective study.
ANIMALS
Dogs (n=36) with porto-azygos shunts.
METHODS
CT angiography was performed in dogs subsequently proven to have a porto-azygos shunt. The origin and insertion of the shunts were assessed on native images. The diameter of the porto-azygos shunt and the portal vein, cranial and caudal to the shunt origin, were measured. The porto-azygos shunt anatomy was studied on three-dimensional images.
RESULTS
All porto-azygos shunts originated either in the left gastric vein (33 left gastro-azygos shunts) or the right gastric vein (3 right gastro-azygos shunts). Two left gastro-azygos shunts had concurrent caval-azygos continuation and 2 right gastro-azygos shunts had a caudal splenic loop. All shunts crossed the diaphragm through the esophageal hiatus. The majority of porto-azygos shunts (32) followed a straight pathway after traversing the diaphragm, although 4 shunts followed a tortuous route. All shunts terminated in the thoracic part of the azygos vein, perpendicular to the aorta. The shunt diameter at insertion was only 3 mm on average. The insertion site was consistently the narrowest part of the shunt.
CONCLUSION
CT angiography was well suited to provide anatomic details of porto-azygos shunts and comprehensively documented that all porto-azygos shunts had a thoracic terminus, after crossing the diaphragm through the esophageal hiatus. Different shunt types existed with minor variations.