Literature DB >> 34498005

Anatomic Variations of the Hepatic Artery in 5625 Patients.

Tae Won Choi1, Jin Wook Chung1, Hyo-Cheol Kim1, Myungsu Lee1, Jin Woo Choi1, Hwan Jun Jae1, Saebeom Hur1.   

Abstract

PURPOSE: To analyze the origin and anatomic course of the hepatic arteries by using digital subtraction angiography (DSA) and multidetector CT in a large study sample.
MATERIALS AND METHODS: This retrospective study included 5625 patients who underwent liver CT and chemoembolization between January 2005 and December 2018 (mean age, 60 years ± 11 [range, 11-99 years]; 4464 males). The CT and DSA images were reviewed to evaluate the visceral arterial anatomy for variations in the celiac axis and hepatic arteries. Aberrant right hepatic arteries (aRHAs) and aberrant left hepatic arteries (aLHAs) were defined on the basis of their origin and anatomic course. Statistical analyses were performed to evaluate the association between aRHAs and aLHAs and the association between variations in the hepatic artery and celiac axis.
RESULTS: Right hepatic arteries were categorized as being aRHAs (if originating from the proximal to middle common hepatic artery, gastroduodenal artery, superior mesenteric artery [SMA], celiac axis, aorta, splenic artery, or left gastric artery [LGA]) or as being aLHAs (if arising from the LGA, celiac axis, aorta, or SMA). The prevalence of aRHAs (15.63%; 879 of 5625) and the prevalence aLHAs (16.32%; 918 of 5625) were similar. Patients with an aRHA were more likely to have an aLHA than those without an aRHA (29.01% vs 13.97%; P < .001), and patients with an aLHA were more likely to have an aRHA than those without an aLHA (27.78% vs 13.26%; P < .001). There was no association between the hepatic arterial variations and celiac axis variations. A hypothetical anatomic model summarizing the observed variations was created.
CONCLUSION: A comprehensive list of hepatic arterial variations and a three-dimensional hypothetical model for the observed variations were described.Keywords: CT, Angiography, Liver, Anatomy, Arteries© RSNA, 2021 Supplemental material is available for this article. See also commentary by Sutphin and Kalva in this issue. 2021 by the Radiological Society of North America, Inc.

Entities:  

Keywords:  Anatomy; Angiography; Arteries; CT; Liver

Year:  2021        PMID: 34498005      PMCID: PMC8415139          DOI: 10.1148/ryct.2021210007

Source DB:  PubMed          Journal:  Radiol Cardiothorac Imaging        ISSN: 2638-6135


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3.  Newer anatomy of the liver and its variant blood supply and collateral circulation.

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4.  Anatomic variation of the right hepatic artery and its reconstruction for living donor liver transplantation using right lobe graft.

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5.  Anatomical variations of hepatic artery using the multidetector computed tomography angiography.

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Review 6.  Preoperative hepatic vascular evaluation with CT and MR angiography: implications for surgery.

Authors:  Dushyant Sahani; Aparna Mehta; Michael Blake; Srinivasa Prasad; Gordan Harris; Sanjay Saini
Journal:  Radiographics       Date:  2004 Sep-Oct       Impact factor: 5.333

7.  Experiences of microsurgical reconstruction for variant hepatic artery in living donor liver transplantation.

Authors:  Yurong Liang; Sheng Ye; Xianjie Shi; Wenbin Ji; Weidong Duan; Ying Luo; Jiahong Dong
Journal:  Cell Biochem Biophys       Date:  2013-03       Impact factor: 2.194

8.  ANATOMIC VARIATIONS OF HEPATIC ARTERY: A STUDY IN 479 LIVER TRANSPLANTATIONS.

Authors:  Olival Cirilo Lucena da Fonseca-Neto; Heloise Caroline de Souza Lima; Priscylla Rabelo; Paulo Sérgio Vieira de Melo; Américo Gusmão Amorim; Cláudio Moura Lacerda
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9.  Accessory right hepatic artery branched from gastroduodenal artery.

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Review 10.  The Main Anatomic Variations of the Hepatic Artery and Their Importance in Surgical Practice: Review of the Literature.

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Journal:  J Clin Med Res       Date:  2017-02-21
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1.  The Absence of a Proper Hepatic Artery: A Case Report.

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