PRUDIUS, Vadym, Vladimír PROCHÁZKA, Zdeněk PAVLOVSKÝ, Dana PRUDIUS and Zdeněk KALA. Vascular anatomy of the stomach related to resection procedures strategy. Surgical and Radiologic Anatomy. Paris: Springer France, 2017, vol. 39, No 4, p. 433-440. ISSN 0930-1038. Available from: https://dx.doi.org/10.1007/s00276-016-1746-2.
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Basic information
Original name Vascular anatomy of the stomach related to resection procedures strategy
Authors PRUDIUS, Vadym, Vladimír PROCHÁZKA, Zdeněk PAVLOVSKÝ, Dana PRUDIUS and Zdeněk KALA.
Edition Surgical and Radiologic Anatomy, Paris, Springer France, 2017, 0930-1038.
Other information
Original language English
Type of outcome Article in a journal
Field of Study 30106 Anatomy and morphology
Country of publisher France
Confidentiality degree is not subject to a state or trade secret
WWW URL
Impact factor Impact factor: 1.003
Doi http://dx.doi.org/10.1007/s00276-016-1746-2
UT WoS 000398921700010
Keywords in English Esophagoplasty; Gastro-epiploic artery; Left gastric artery; Stomach
Tags EL OK
Tags International impact, Reviewed
Changed by Changed by: Soňa Böhmová, učo 232884. Changed: 15/5/2019 08:43.
Abstract
This study is focused on the vascular anatomy of the stomach in relation to the gastric pull-up construction. The vascular anatomy was studied on forty-one human specimens. We find out the differences in blood supplement between anterior and posterior wall. It was maked an review of the main trunk arteries of the stomach. To display the vessels of the stomach we used diaphanoscopy, digital shooting in special mode and micro preparation of the vessels. We find out that left gastric artery gives more branches to the posterior wall and right gastroepiploic artery (RGEA) gives more branches to the anterior wall. But brunches of RGEA are longer on the posterior wall than on the anterior. Also we are offering the new classification of the RGEA related to gastric pull-up construction. This classification based not only on the anatomical shapes of RGEA but on the properties of the flow dynamics through the artery.
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