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JKSPE : Journal of the Korean Society for Precision Engineering

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정상 척추체 모델을 이용한 척추측만증 모델 자동 생성 프로그램 개발

김영은, 유한규

Development of a Special Program for Automatic Generation of Scoliotic Spine FE Model with a Normal Spine Model

Young Eun Kim, Han Kyu Ryu
JKSPE 2006;23(3):187-194.
Published online: March 1, 2006
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Unexpected postoperative changes, such as growth in rib hump and shoulder unbalance, have been occasionally reported after corrective surgery for scoliosis. However there has been neither experimental data for explanation of these changes, nor the suggestion of optimal correction method. Therefore, the numerical study was designed to investigate the post-operative changes of vertebral rotation and rib cage deformation after the corrective surgery of scoliosis. A mathematical finite element model of normal spine including rib cage, sternum, both clavicles, and pelvis was developed with anatomical details. In this study, we also developed a special program which could convert a normal spine model to a desired scoliotic spine model automatically. A personalized skeletal deformity of scoliosis model was reconstructed with X-ray images of a scoliosis patient from the normal spine structures and rib cage model. The geometric mapping was performed by translating and rotating the spinal column with an amount analyzed from the digitized 12 built-in coordinate axes in each vertebral image. By utilizing this program, problems generated in mapping procedure such as facet joint overlapping, vertebral body deformity could be automatically resolved.

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Development of a Special Program for Automatic Generation of Scoliotic Spine FE Model with a Normal Spine Model
J. Korean Soc. Precis. Eng.. 2006;23(3):187-194.   Published online March 1, 2006
Download Citation

Download a citation file in RIS format that can be imported by all major citation management software, including EndNote, ProCite, RefWorks, and Reference Manager.

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Development of a Special Program for Automatic Generation of Scoliotic Spine FE Model with a Normal Spine Model
J. Korean Soc. Precis. Eng.. 2006;23(3):187-194.   Published online March 1, 2006
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