DOI: 10.12307/2025.116
Constructing a model of degenerative scoliosis using finite element method:biomechanical analysis in etiology and treatment
He Kai
Xing Wenhua
Liu Shengxiang
Bai Xianming
Zhou Chen
Gao Xu
Qiao Yu
He Qiang
Gao Zhiyu
Guo Zhen
Bao Aruhan
Li Chade
Abstract:BACKGROUND:Degenerative scoliosis is defined as a condition that occurs in adulthood with a coronal cobb angle of the spine>10° accompanied by sagittal deformity and rotational subluxation,which often produces symptoms of spinal cord and nerve compression,such as lumbar pain,lower limb pain,numbness,weakness,and neurogenic claudication.The finite element method is a mechanical analysis technique for computer modelling,which can be used for spinal mechanics research by building digital models that can realistically restore the human spine model and design modifications.
OBJECTIVE:To review the application of finite element method in the etiology and treatment of degenerative scoliosis.
METHODS:The literature databases CNKI,PubMed,and Web of Science were searched for articles on the application of finite element method in degenerative scoliosis published before October 2023.Search terms were"finite element analysis,biomechanics,stress analysis,degenerative scoliosis,adult spinal deformity"in Chinese and English.Fifty-four papers were finally included.
RESULTS AND CONCLUSION:(1)The biomechanical findings from the degenerative scoliosis model constructed using the finite element method were identical to those from the in vivo experimental studies,which proves that the finite element method has a high practical value in degenerative scoliosis.(2)The study of the etiology and treatment of degenerative scoliosis by the finite element method is conducive to the prevention of the occurrence of the scoliosis,slowing down the progress of the scoliosis,the development of a more appropriate treatment plan,the reduction of complications,and the promotion of the patients'surgical operation.(3)The finite element method has gradually evolved from a single bony structure to the inclusion of soft tissues such as muscle ligaments,and the small sample content is increasingly unable to meet the research needs.(4)The finite element method has much room for exploration in degenerative scoliosis.
Keywords:degenerative scoliosisadult spinal deformityfinite element methodbiomechanicsstress analysisreview
Publication Date:2025-01-21
Online Publishing Date:2025-08-15(First online date of this platform, not the publication date of the document)
Pages:7( 572-578 )
