Technique Advances in Enteroatmospheric Fistula Isolation After Open Abdomen: A Review and Outlook

Enteroatmospheric fistula (EAF) after open abdomen adds difficulties to the management and increases the morbidity and mortality of patients. As an effective measurement, reconstructing gastrointestinal tract integrity not only reduces digestive juice wasting and wound contamination, but also allows...

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Main Authors: Jinjian Huang, Huajian Ren, Yungang Jiang, Xiuwen Wu, Jianan Ren
Format: Article
Language:English
Published: Frontiers Media S.A. 2021-01-01
Series:Frontiers in Surgery
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/fsurg.2020.559443/full
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spelling doaj-e8447b5cbab9465eaed5a4f19cf6230d2021-01-20T06:22:48ZengFrontiers Media S.A.Frontiers in Surgery2296-875X2021-01-01710.3389/fsurg.2020.559443559443Technique Advances in Enteroatmospheric Fistula Isolation After Open Abdomen: A Review and OutlookJinjian HuangHuajian RenYungang JiangXiuwen WuJianan RenEnteroatmospheric fistula (EAF) after open abdomen adds difficulties to the management and increases the morbidity and mortality of patients. As an effective measurement, reconstructing gastrointestinal tract integrity not only reduces digestive juice wasting and wound contamination, but also allows expedient restoration of enteral nutrition and intestinal homeostasis. In this review, we introduce several technologies for the temporary isolation of EAF, including negative pressure wound therapy, fistuloclysis, fistula patch, surgical covered stent, three-dimensional (3D) printing stent, and injection molding stent. The manufacture and implantation procedures of each technique with their pros and cons are described in detail. Moreover, the approach in combination with finger measurement, x-ray imaging, and computerized tomography is used to measure anatomic parameters of fistula and design appropriate 3D printer-recognizable stereolithography files for production of isolation devices. Given the active roles that engineers playing in the technology development, we call on the cooperation between clinicians and engineers and the organization of clinical trials on these techniques.https://www.frontiersin.org/articles/10.3389/fsurg.2020.559443/fullopen abdomenenteroatmospheric fistulafistula isolationbiomedical device3D printing
collection DOAJ
language English
format Article
sources DOAJ
author Jinjian Huang
Huajian Ren
Yungang Jiang
Xiuwen Wu
Jianan Ren
spellingShingle Jinjian Huang
Huajian Ren
Yungang Jiang
Xiuwen Wu
Jianan Ren
Technique Advances in Enteroatmospheric Fistula Isolation After Open Abdomen: A Review and Outlook
Frontiers in Surgery
open abdomen
enteroatmospheric fistula
fistula isolation
biomedical device
3D printing
author_facet Jinjian Huang
Huajian Ren
Yungang Jiang
Xiuwen Wu
Jianan Ren
author_sort Jinjian Huang
title Technique Advances in Enteroatmospheric Fistula Isolation After Open Abdomen: A Review and Outlook
title_short Technique Advances in Enteroatmospheric Fistula Isolation After Open Abdomen: A Review and Outlook
title_full Technique Advances in Enteroatmospheric Fistula Isolation After Open Abdomen: A Review and Outlook
title_fullStr Technique Advances in Enteroatmospheric Fistula Isolation After Open Abdomen: A Review and Outlook
title_full_unstemmed Technique Advances in Enteroatmospheric Fistula Isolation After Open Abdomen: A Review and Outlook
title_sort technique advances in enteroatmospheric fistula isolation after open abdomen: a review and outlook
publisher Frontiers Media S.A.
series Frontiers in Surgery
issn 2296-875X
publishDate 2021-01-01
description Enteroatmospheric fistula (EAF) after open abdomen adds difficulties to the management and increases the morbidity and mortality of patients. As an effective measurement, reconstructing gastrointestinal tract integrity not only reduces digestive juice wasting and wound contamination, but also allows expedient restoration of enteral nutrition and intestinal homeostasis. In this review, we introduce several technologies for the temporary isolation of EAF, including negative pressure wound therapy, fistuloclysis, fistula patch, surgical covered stent, three-dimensional (3D) printing stent, and injection molding stent. The manufacture and implantation procedures of each technique with their pros and cons are described in detail. Moreover, the approach in combination with finger measurement, x-ray imaging, and computerized tomography is used to measure anatomic parameters of fistula and design appropriate 3D printer-recognizable stereolithography files for production of isolation devices. Given the active roles that engineers playing in the technology development, we call on the cooperation between clinicians and engineers and the organization of clinical trials on these techniques.
topic open abdomen
enteroatmospheric fistula
fistula isolation
biomedical device
3D printing
url https://www.frontiersin.org/articles/10.3389/fsurg.2020.559443/full
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