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Customized reconstructive prosthesis design based on topological optimization to treat severe proximal tibia defect 被引量:5

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摘要 A novel reconstructive prosthesis was designed with topological optimization(TO)and a lattice structure to enhance biomechanical and biological properties in the proximal tibia.The biomechanical performance was validated through finite element analysis(FEA)and biomechanical tests.The tibia with inhomogeneous material properties was reconstructed according to computed tomography images,and different components were designed to simulate the operation.Minimum compliance TO subject to a volume fraction constraint combined with a graded lattice structure was utilized to redesign the prosthesis.FEA was performed to evaluate the mechanical performances of the tibia and implants after optimization,including stress,micromotion,and strain energy.The results were analyzed by paired-samples t tests,and p<0.05 was considered significant.Biomechanical testing was used to verify the tibial stresses.Compared to the original group(OG),the TO group(TOG)exhibited lower stress on the stem,and the maximum von Mises stresses were 87.2 and 53.1 MPa,respectively,a 39.1%reduction(p<0.05).Conversely,the stress and strain energy on the tibia increased in the TOG.The maximum von Mises stress values were 16.4 MPa in the OG and 22.9 MPa in the TOG with a 39.6%increase(p<0.05),and the maximum SED value was 0.026 MPa in the OG and 0.042 MPa in the TOG,corresponding to an increase of 61.5%(p<0.05).The maximum micromotions in the distal end of the stem were 135μm in the OG and 68μm in the TOG,almost a 50%reduction.The stress curves of the biomechanical test coincided well with the FEA results.The TO approach can effectively reduce the whole weight of the prosthesis and improve the biomechanical environment of the tibia.It could also pave the way for next-generation applications in orthopedics surgery.
出处 《Bio-Design and Manufacturing》 SCIE EI CSCD 2021年第1期87-99,共13页 生物设计与制造(英文)
基金 National Natural Science Foundation of China[Grant Numbers 81802174,81900726&82072456] Department of Science and Technology of Jilin Province,P.R.C[Grant Numbers 20200404202YY,20200403086SF&20200201453JC] Jilin Province Development and Reform Commission,P.R.C[Grant Number 2018C010] Education Department of Jilin Province,P.R.C[GrantNumber JJKH20180106KJ] Administration of Traditional Chinese Medicine of Jilin Province P.R.C[Grant Number 2018115] 10th Youth Project of the First Hospital of Jilin University[Grant Number JDYY102019025] Department of Finance in Jilin Province[Grant Number 2019SCZT046] Undergraduate Teaching Reform Research Project of Jilin University[Grant Number 4Z2000610852] Key training plan for outstanding young teachers of Jilin University[Grant Number 419080520253] Bethune plan of Jilin University[Grant Number 470110000692] The major participant is Qing Han.
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