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PMID: 25201585 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Numerical and experimental analysis of factors leading to suture dehiscence after Billroth II gastric resection.

Computer methods and programs in biomedicine ·Vol. 117 ·No. 2 ·2014-11-00 ·页码 71-9

Cvetkovic AM, Milasinovic DZ, Peulic AS, Mijailovic NV, Filipovic ND, Zdravkovic ND

Abstract

The main goal of this study was to numerically quantify risk of duodenal stump blowout after Billroth II (BII) gastric resection. Our hypothesis was that the geometry of the reconstructed tract after BII resection is one of the key factors that can lead to duodenal dehiscence. We used computational fluid dynamics (CFD) with finite element (FE) simulations of various models of BII reconstructed gastrointestinal (GI) tract, as well as non-perfused, ex vivo, porcine experimental models. As main geometrical parameters for FE postoperative models we have used duodenal stump length and inclination between gastric remnant and duodenal stump. Virtual gastric resection was performed on each of 3D FE models based on multislice Computer Tomography (CT) DICOM. According to our computer simulation the difference between maximal duodenal stump pressures for models with most and least preferable geometry of reconstructed GI tract is about 30%. We compared the resulting postoperative duodenal pressure from computer simulations with duodenal stump dehiscence pressure from the experiment. Pressure at duodenal stump after BII resection obtained by computer simulation is 4-5 times lower than the dehiscence pressure according to our experiment on isolated bowel segment. Our conclusion is that if the surgery is performed technically correct, geometry variations of the reconstructed GI tract by themselves are not sufficient to cause duodenal stump blowout. Pressure that develops in the duodenal stump after BII resection using omega loop, only in the conjunction with other risk factors can cause duodenal dehiscence. Increased duodenal pressure after BII resection is risk factor. Hence we recommend the routine use of Roux en Y anastomosis as a safer solution in terms of resulting intraluminal pressure. However, if the surgeon decides to perform BII reconstruction, results obtained with this methodology can be valuable.

Keywords
CFD Computer simulation Dehiscence Duodenal stump Gastric resection
MeSH 主题词
Animals Computer Simulation Duodenum/physiopathology,surgery Female Gastroenterostomy/adverse effects,instrumentation Humans Male Models, Biological Risk Assessment/methods Stomach/physiopathology,surgery Surgical Wound Dehiscence/etiology,physiopathology Sutures/adverse effects Swine
作者与单位
共 6 位作者,点击展开单位 / ORCID
Cvetkovic Aleksandar M
Faculty of Medical sciences, University in Kragujevac, Svetozara Markovica 69, 34000 Kragujevac, Serbia. Electronic address: [email protected].
Milasinovic Danko Z
Faculty of Hotel Management and Tourism, Vojvodjanska bb, 36210 Vrnjacka Banja, Serbia; BioIRC, Bioengineering Research and Development Center, Prvoslava Stojanovica 6, 34000 Kragujevac, Serbia.
Peulic Aleksandar S
Faculty of Engineering, University of Kragujevac, Sestre Janjic 6, 34000 Kragujevac, Serbia.
Mijailovic Nikola V
BioIRC, Bioengineering Research and Development Center, Prvoslava Stojanovica 6, 34000 Kragujevac, Serbia; Faculty of Engineering, University of Kragujevac, Sestre Janjic 6, 34000 Kragujevac, Serbia.
Filipovic Nenad D
BioIRC, Bioengineering Research and Development Center, Prvoslava Stojanovica 6, 34000 Kragujevac, Serbia; Faculty of Engineering, University of Kragujevac, Sestre Janjic 6, 34000 Kragujevac, Serbia.
Zdravkovic Nebojsa D
Faculty of Medical sciences, University in Kragujevac, Svetozara Markovica 69, 34000 Kragujevac, Serbia.
Article Info
Journal
Computer methods and programs in biomedicine
Abbr.
Comput Methods Programs Biomed
ISSN
1872-7565
Corresponding email
Published
2014-11-00
电子出版
2014-00-26
页码
71-9
Language
English
Country/Region
Ireland
NLM ID
8506513
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