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새로운 방식의 나사형 인공디스크 고정체 해석Finite Element Analysis of a Newly Designed Screw Type Fixture for an Artificial Intervertebral Disc

Other Titles
Finite Element Analysis of a Newly Designed Screw Type Fixture for an Artificial Intervertebral Disc
Authors
임종완양현익
Issue Date
2010
Publisher
대한의용생체공학회
Keywords
Fixture Design; Assembling screws; Artificial disc; Finite Element Model; P version
Citation
의공학회지, v.31, no.1, pp.56 - 66
Indexed
KCI
Journal Title
의공학회지
Volume
31
Number
1
Start Page
56
End Page
66
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/40349
ISSN
1229-0807
Abstract
The various total replacement artificial discs have developed because spinal fusion has shown a lesser mobility of an operated segment and an accelerated degeneration at adjacent discs. But almost artificial discs have not yet been reached on the substitute surgery of fusion because many problems such as those clinical success rates were not more than them of fusion have not solved. In this paper, vertically inserted assemble-screw fixture in vertebrae was proposed to improve the fixed capability of artificial disc. And also, to evaluate the design suitability of newly designed screw-type, including fixtures of commercial discs such as wedge and plate type, the 1/4 finite element model with a vertebra and various implanted fixtures were generated, and next, 3 bending motions such as flexion, bending and twisting under the moment of 10Nm and compression under the force of 1000N were considered, respectively and finally, FE analyses were performed. Results of three fixture types were compared, such as Range of Motion and maximal stress, and so on. For ROM, the screw type was average 58% less than the wedge type and was average 42% less than the plate type under all loading conditions. For average stress ratio at closer nodes between vertebra and each fixture, the wedge type was the lowest as minimum 0.02 in twisting, screw types were the highest as maximum 0.28 in compression. As the results of using cement material, it was predicted that the instability problem of the wedge type was better solved. The screw type which could be increased by implanting depth according to the number of assembling mid screws, showed that the decreased tendency of ROMs and maximal cancellous bone stresses. In further study, controlling the number of assembling screws that was suitable for a patient’s bone quality, development of surgical tools and keeping on design supplementations, which will be able to develop the competitive artificial disc.
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COLLEGE OF ENGINEERING SCIENCES > DEPARTMENT OF MECHANICAL ENGINEERING > 1. Journal Articles

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ERICA 공학대학 (DEPARTMENT OF MECHANICAL ENGINEERING)
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