Development of a computer-aided design and finite-element analysis combined method for customized Nuss bar in pectus excavatum surgery

Abstract Pectus excavatum (PEX) is the most common chest deformity in children, which is usually corrected by using the minimally invasive Nuss method. The orthopedic effect of the Nuss operation is mainly evaluated by both the Haller index and the appearance of the chest wall configuration, which i...

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Main Authors: Longhan Xie, Siqi Cai, Liang Xie, Gang Chen, Haiyu Zhou
Format: Article
Language:English
Published: Nature Publishing Group 2017-06-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-017-03622-y
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spelling doaj-ebf230c4f6e848ea9a86dda569f02efe2020-12-08T02:43:37ZengNature Publishing GroupScientific Reports2045-23222017-06-017111410.1038/s41598-017-03622-yDevelopment of a computer-aided design and finite-element analysis combined method for customized Nuss bar in pectus excavatum surgeryLonghan Xie0Siqi Cai1Liang Xie2Gang Chen3Haiyu Zhou4School of Mechanical and Automotive Engineering, South China University of TechnologySchool of Mechanical and Automotive Engineering, South China University of TechnologyDepartment of Thoracic Surgery, Guangdong General Hospital & Guangdong Academy of Medical SciencesDepartment of Thoracic Surgery, Guangdong General Hospital & Guangdong Academy of Medical SciencesDepartment of Thoracic Surgery, Guangdong General Hospital & Guangdong Academy of Medical SciencesAbstract Pectus excavatum (PEX) is the most common chest deformity in children, which is usually corrected by using the minimally invasive Nuss method. The orthopedic effect of the Nuss operation is mainly evaluated by both the Haller index and the appearance of the chest wall configuration, which is dependent on the operator’s clinical experience to a great extent. To improve the orthopedic effect, we proposed a novel method to individually design and optimize the shape of the Nuss bar and to advise its location as well as the incisions. By using the CT imaging data, the three-dimensional model of the PEX thoracic structure is reconstructed, which is further employed in finite element analysis to determine the operation plan. By referring to a healthy person who has similar chest dimensions to the PEX patient, the Nuss bar shape is designed, and according to the finding that the healthy chest wall boundary is almost convex with positive curvature, the Nuss bar shape is tuned to be a convex curve to ensure the orthopedic effect. Finite element analysis is employed to analyze the orthopedic effect and to determine the incision position of the Nuss bar. Experiments were carried out to verify the orthopedic effect of the customized Nuss bar, which showed that this method is more accurate and individualized, compared to conventional methods.https://doi.org/10.1038/s41598-017-03622-y
collection DOAJ
language English
format Article
sources DOAJ
author Longhan Xie
Siqi Cai
Liang Xie
Gang Chen
Haiyu Zhou
spellingShingle Longhan Xie
Siqi Cai
Liang Xie
Gang Chen
Haiyu Zhou
Development of a computer-aided design and finite-element analysis combined method for customized Nuss bar in pectus excavatum surgery
Scientific Reports
author_facet Longhan Xie
Siqi Cai
Liang Xie
Gang Chen
Haiyu Zhou
author_sort Longhan Xie
title Development of a computer-aided design and finite-element analysis combined method for customized Nuss bar in pectus excavatum surgery
title_short Development of a computer-aided design and finite-element analysis combined method for customized Nuss bar in pectus excavatum surgery
title_full Development of a computer-aided design and finite-element analysis combined method for customized Nuss bar in pectus excavatum surgery
title_fullStr Development of a computer-aided design and finite-element analysis combined method for customized Nuss bar in pectus excavatum surgery
title_full_unstemmed Development of a computer-aided design and finite-element analysis combined method for customized Nuss bar in pectus excavatum surgery
title_sort development of a computer-aided design and finite-element analysis combined method for customized nuss bar in pectus excavatum surgery
publisher Nature Publishing Group
series Scientific Reports
issn 2045-2322
publishDate 2017-06-01
description Abstract Pectus excavatum (PEX) is the most common chest deformity in children, which is usually corrected by using the minimally invasive Nuss method. The orthopedic effect of the Nuss operation is mainly evaluated by both the Haller index and the appearance of the chest wall configuration, which is dependent on the operator’s clinical experience to a great extent. To improve the orthopedic effect, we proposed a novel method to individually design and optimize the shape of the Nuss bar and to advise its location as well as the incisions. By using the CT imaging data, the three-dimensional model of the PEX thoracic structure is reconstructed, which is further employed in finite element analysis to determine the operation plan. By referring to a healthy person who has similar chest dimensions to the PEX patient, the Nuss bar shape is designed, and according to the finding that the healthy chest wall boundary is almost convex with positive curvature, the Nuss bar shape is tuned to be a convex curve to ensure the orthopedic effect. Finite element analysis is employed to analyze the orthopedic effect and to determine the incision position of the Nuss bar. Experiments were carried out to verify the orthopedic effect of the customized Nuss bar, which showed that this method is more accurate and individualized, compared to conventional methods.
url https://doi.org/10.1038/s41598-017-03622-y
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