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Erschienen in: Medical & Biological Engineering & Computing 4/2019

03.11.2018 | Original Article

Custom-designed orthopedic plates using semantic parameters and template

verfasst von: He Kunjin, Zhang Xiang, Zhang Yuxue

Erschienen in: Medical & Biological Engineering & Computing | Ausgabe 4/2019

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Abstract

To quickly construct and conveniently modify the ideal orthopedic plates for individuals, a novel approach for designing the customized orthopedic plates is put forward based on bone template and plate semantic parameters, thus avoiding the need for the detailed geometric operations and the design of orthopedic plates from scratch each time. Firstly, an average bone model (ABM) is created from the existing bone models, among which each bone has an equal contribution to the ABM, and then the template, which contains region of interest (ROI) and segmentation regions, is constructed based on the ABM. Secondly, attached on the template ROI, the abutted surface feature of an orthopedic plate is designed including definition of characteristic points and configuration of semantic parameters, with a directed graph proposed to define the constraint relationship between semantic parameters. Lastly, the custom-designed plate for the target bone can be adaptively generated with a group of new semantic parameter values which are obtained through the mapping from the template to the target bone model. This plate can be easily extended to suit the bones of the same type for individuals by just editing semantic parameters. This method supports modification for a custom-designed plate with semantic parameters, consequently promoting the quality and efficiency of orthopedic plate design.

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Literatur
1.
Zurück zum Zitat Okazaki Y (2012) Development trends of custom-made orthopedic implants. J Artif Organs 15(1):20–25CrossRefPubMed Okazaki Y (2012) Development trends of custom-made orthopedic implants. J Artif Organs 15(1):20–25CrossRefPubMed
2.
Zurück zum Zitat Haglin JM, Eltorai AEM, Gil JA (2016) Patient-specific orthopaedic implants. Orthop Surg 8(4):417–424CrossRefPubMed Haglin JM, Eltorai AEM, Gil JA (2016) Patient-specific orthopaedic implants. Orthop Surg 8(4):417–424CrossRefPubMed
4.
Zurück zum Zitat Kozic N, Weber S, Büchler P, Lutz C, Reimers N, Ballester MAG, Reyes M (2010) Optimisation of orthopaedic implant design using statistical shape space analysis based on level sets. Med Image Anal 14(3):265–275CrossRefPubMed Kozic N, Weber S, Büchler P, Lutz C, Reimers N, Ballester MAG, Reyes M (2010) Optimisation of orthopaedic implant design using statistical shape space analysis based on level sets. Med Image Anal 14(3):265–275CrossRefPubMed
5.
Zurück zum Zitat Manić M, Stamenković Z, Mitković M (2015) Design of 3D model of customized anatomically adjusted implants. FU Mech Eng 13(3):269–282 Manić M, Stamenković Z, Mitković M (2015) Design of 3D model of customized anatomically adjusted implants. FU Mech Eng 13(3):269–282
6.
Zurück zum Zitat Neto R, Marques T, Marta M (2015) Digital-based engineering tools for tailored design of medical implants. Mech Mach Sci(MMS): 733–741 Neto R, Marques T, Marta M (2015) Digital-based engineering tools for tailored design of medical implants. Mech Mach Sci(MMS): 733–741
7.
Zurück zum Zitat Praun E, Sweldens W, Schröder P (2001) Consistent mesh parameterizations. Proceedings of the 28th annual conference on Computer graphics and interactive techniques. ACM: 179–184 Praun E, Sweldens W, Schröder P (2001) Consistent mesh parameterizations. Proceedings of the 28th annual conference on Computer graphics and interactive techniques. ACM: 179–184
8.
Zurück zum Zitat Kraevoy V, Sheffer A (2004) Cross-parameterization and compatible remeshing of 3D models. ACM Trans Graph (TOG). ACM 23(3):861–869CrossRef Kraevoy V, Sheffer A (2004) Cross-parameterization and compatible remeshing of 3D models. ACM Trans Graph (TOG). ACM 23(3):861–869CrossRef
9.
Zurück zum Zitat Botsch M, Sorkine O (2008) On linear variational surface deformation methods. IEEE TVCG 14:213–230PubMed Botsch M, Sorkine O (2008) On linear variational surface deformation methods. IEEE TVCG 14:213–230PubMed
10.
Zurück zum Zitat Yumer ME, Chaudhuri S, Hodgins JK, Kara LB (2015) Semantic shape editing using deformation handles. ACM Trans Graph (TOG) 34(4):86CrossRef Yumer ME, Chaudhuri S, Hodgins JK, Kara LB (2015) Semantic shape editing using deformation handles. ACM Trans Graph (TOG) 34(4):86CrossRef
11.
Zurück zum Zitat Yumer ME, Kara LB (2014) Co-constrained handles for deformation in shape collections. ACM Trans Graph (TOG) 33(6):187CrossRef Yumer ME, Kara LB (2014) Co-constrained handles for deformation in shape collections. ACM Trans Graph (TOG) 33(6):187CrossRef
12.
Zurück zum Zitat Nyirenda PJ, Bronsvoort WF (2009) A framework for extendable freeform surface feature modelling. Comput Ind 60(1):35–47CrossRef Nyirenda PJ, Bronsvoort WF (2009) A framework for extendable freeform surface feature modelling. Comput Ind 60(1):35–47CrossRef
13.
Zurück zum Zitat Langerak TR (2010) Local parameterization of freeform shapes using freeform feature recognition. Comput Aided Des 42(8):682–692CrossRef Langerak TR (2010) Local parameterization of freeform shapes using freeform feature recognition. Comput Aided Des 42(8):682–692CrossRef
14.
Zurück zum Zitat Wang CCL (2005) Parameterization and parametric design of mannequins. Comput Aided Des 37(1):83–98CrossRef Wang CCL (2005) Parameterization and parametric design of mannequins. Comput Aided Des 37(1):83–98CrossRef
15.
Zurück zum Zitat Seo H, Magnenat-Thalmann N (2004) An example-based approach to human body manipulation. Graph Model 66(1):1–23CrossRef Seo H, Magnenat-Thalmann N (2004) An example-based approach to human body manipulation. Graph Model 66(1):1–23CrossRef
16.
Zurück zum Zitat Pernot JP, Giannini F, Falcidieno B, Leon JC (2009) Parameterised free-form feature templates. IEEE International Conference on IEEE: 140–147 Pernot JP, Giannini F, Falcidieno B, Leon JC (2009) Parameterised free-form feature templates. IEEE International Conference on IEEE: 140–147
17.
Zurück zum Zitat Pernot JP, Falcidieno B, Giannini F (2008) Incorporating free-form features in aesthetic and engineering product design: state-of-the-art report. Comput Ind 59(6):626–637CrossRef Pernot JP, Falcidieno B, Giannini F (2008) Incorporating free-form features in aesthetic and engineering product design: state-of-the-art report. Comput Ind 59(6):626–637CrossRef
18.
Zurück zum Zitat He K, Chen Z, Jiang J, Wang L (2014) Creation of user-defined freeform feature from surface models based on characteristic curves. Comput Ind 65(4):598–609CrossRef He K, Chen Z, Jiang J, Wang L (2014) Creation of user-defined freeform feature from surface models based on characteristic curves. Comput Ind 65(4):598–609CrossRef
19.
Zurück zum Zitat Arnone JC (2011) A comprehensive simulation-based methodology for the design and optimization of orthopaedic internal fixation implants, Ph.D., University of Missouri, Columbia Arnone JC (2011) A comprehensive simulation-based methodology for the design and optimization of orthopaedic internal fixation implants, Ph.D., University of Missouri, Columbia
20.
Zurück zum Zitat Arnone JC, Ward CV, Della Rocca GJ (2010) Simulation-based design of orthopedic trauma implants[C]Am Soc Mech Eng(ASME): 465–474 Arnone JC, Ward CV, Della Rocca GJ (2010) Simulation-based design of orthopedic trauma implants[C]Am Soc Mech Eng(ASME): 465–474
21.
Zurück zum Zitat Dobbe JGG, Vroemen JC, Strackee SD (2013) Patient-tailored plate for bone fixation and accurate 3D positioning in corrective osteotomy. Med Biol Eng Comput 51(1–2):19–27CrossRefPubMed Dobbe JGG, Vroemen JC, Strackee SD (2013) Patient-tailored plate for bone fixation and accurate 3D positioning in corrective osteotomy. Med Biol Eng Comput 51(1–2):19–27CrossRefPubMed
22.
Zurück zum Zitat Kaman MO, Celik N, Karakuzu S (2014) Numerical stress analysis of the plates used to treat the tibia bone fracture. J Appl Math Phys 2(06):304–309CrossRef Kaman MO, Celik N, Karakuzu S (2014) Numerical stress analysis of the plates used to treat the tibia bone fracture. J Appl Math Phys 2(06):304–309CrossRef
23.
Zurück zum Zitat Andrade-Campos A, Ramos A, Simões JA (2012) A model of bone adaptation as a topology optimization process with contact. J Biomed Sci Eng 5(5):229–244CrossRef Andrade-Campos A, Ramos A, Simões JA (2012) A model of bone adaptation as a topology optimization process with contact. J Biomed Sci Eng 5(5):229–244CrossRef
24.
Zurück zum Zitat Kutuk MA, Gov I (2013) Application of topology optimization to the tibial osteotomy fixation plates. Appl Bionics Biomech 10(2–3):125–133CrossRef Kutuk MA, Gov I (2013) Application of topology optimization to the tibial osteotomy fixation plates. Appl Bionics Biomech 10(2–3):125–133CrossRef
25.
Zurück zum Zitat Grujicica M, Arakerea G, Xiea X, LaBergeb M, Grujicicb A, Wagnerc DW, Vallejoc A (2010) Design-optimization and material selection for a femoral-fracture fixation-plate implant. Mater Des 31(7):3463–3473CrossRef Grujicica M, Arakerea G, Xiea X, LaBergeb M, Grujicicb A, Wagnerc DW, Vallejoc A (2010) Design-optimization and material selection for a femoral-fracture fixation-plate implant. Mater Des 31(7):3463–3473CrossRef
26.
Zurück zum Zitat Kim VG, Li W, Mitra NJ, Chaudhuri S, Diverdi S, Funkhouser T (2013) Learning part-based templates from large collections of 3D shapes. ACM Trans. Graph 32(4):70 Kim VG, Li W, Mitra NJ, Chaudhuri S, Diverdi S, Funkhouser T (2013) Learning part-based templates from large collections of 3D shapes. ACM Trans. Graph 32(4):70
27.
Zurück zum Zitat Allen B, Curless B, Popovic Z (2003) The space of human body shapes reconstruction and parameterization from range scans. ACM Trans. Graph 22(3):587–594CrossRef Allen B, Curless B, Popovic Z (2003) The space of human body shapes reconstruction and parameterization from range scans. ACM Trans. Graph 22(3):587–594CrossRef
28.
Zurück zum Zitat Yeh IC, Lin CH, Sorkine O (2011) Template-based 3d model fitting using dual-domain relaxation. IEEE Trans Vis Comput Graph 17(8):1178–1190CrossRefPubMed Yeh IC, Lin CH, Sorkine O (2011) Template-based 3d model fitting using dual-domain relaxation. IEEE Trans Vis Comput Graph 17(8):1178–1190CrossRefPubMed
29.
Zurück zum Zitat Myronenko A, Song X (2010) Point set registration coherent point drift. IEEE TPAMI 32(12):2262–2275CrossRef Myronenko A, Song X (2010) Point set registration coherent point drift. IEEE TPAMI 32(12):2262–2275CrossRef
30.
Zurück zum Zitat Aiger D, Mitra NJ, Cohen-Or D (2008) 4-points congruent sets for robust pairwise surface registration. ACM Trans Graph (TOG) 27(3):85CrossRef Aiger D, Mitra NJ, Cohen-Or D (2008) 4-points congruent sets for robust pairwise surface registration. ACM Trans Graph (TOG) 27(3):85CrossRef
31.
Zurück zum Zitat Tam GKL, Cheng ZQ, Lai YK (2013) Registration of 3D point clouds and meshes: a survey from rigid to non-rigid. IEEE TVCG 19(7):1199–1217PubMed Tam GKL, Cheng ZQ, Lai YK (2013) Registration of 3D point clouds and meshes: a survey from rigid to non-rigid. IEEE TVCG 19(7):1199–1217PubMed
32.
Zurück zum Zitat He K, Zhang R, Chen Z, Jiang J, Yuming Z (2017) An approach for generating an average bone template with semantic parameters. J Med Dev 11(3):031004 -031004-7 CrossRef He K, Zhang R, Chen Z, Jiang J, Yuming Z (2017) An approach for generating an average bone template with semantic parameters. J Med Dev 11(3):031004 -031004-7 CrossRef
33.
Zurück zum Zitat Chen X, He K, Chen Z, Xiang W (2015) Quick construction of femoral model using surface feature parameterization. Mol Cell Biomech 12:123–146 Chen X, He K, Chen Z, Xiang W (2015) Quick construction of femoral model using surface feature parameterization. Mol Cell Biomech 12:123–146
34.
Zurück zum Zitat Park BK, Bae JH, Koo BY, Kim JJ (2014) Function-based morphing methodology for parameterizing patient-specific models of human proximal femurs. Comput Aided Des 2014(51):31–38CrossRef Park BK, Bae JH, Koo BY, Kim JJ (2014) Function-based morphing methodology for parameterizing patient-specific models of human proximal femurs. Comput Aided Des 2014(51):31–38CrossRef
35.
Zurück zum Zitat Veselinovic M, Vitkovic N, Stevanovic D et al (2011) Study on creating human tibia geometrical models// E-health and bioengineering conference (EHB). IEEE:1–4 Veselinovic M, Vitkovic N, Stevanovic D et al (2011) Study on creating human tibia geometrical models// E-health and bioengineering conference (EHB). IEEE:1–4
36.
Zurück zum Zitat Kunjin H, Zeyu Z, Rongli Z (2015) Design of orthopedic plates and its modification based on feature. Mol Cell Biomech 12(4):265–286PubMed Kunjin H, Zeyu Z, Rongli Z (2015) Design of orthopedic plates and its modification based on feature. Mol Cell Biomech 12(4):265–286PubMed
37.
Zurück zum Zitat Qin SF, Wright DK (2006) Progressive surface modelling scheme from unorganised curves. Comput Aided Des 38(10):1113–1122CrossRef Qin SF, Wright DK (2006) Progressive surface modelling scheme from unorganised curves. Comput Aided Des 38(10):1113–1122CrossRef
38.
Zurück zum Zitat Dekkers E, Kobbelt L, Pawlicki R (2011) A sketching interface for feature curve recovery of free-form surfaces. Comput Aided Des 43(7):771–780CrossRef Dekkers E, Kobbelt L, Pawlicki R (2011) A sketching interface for feature curve recovery of free-form surfaces. Comput Aided Des 43(7):771–780CrossRef
39.
Zurück zum Zitat He K, Chen Z, Zhao L (2011) A new method for classification and parametric representation of freeform surface feature. Int J Adv Manuf Technol 57(1–4):271–283CrossRef He K, Chen Z, Zhao L (2011) A new method for classification and parametric representation of freeform surface feature. Int J Adv Manuf Technol 57(1–4):271–283CrossRef
Metadaten
Titel
Custom-designed orthopedic plates using semantic parameters and template
verfasst von
He Kunjin
Zhang Xiang
Zhang Yuxue
Publikationsdatum
03.11.2018
Verlag
Springer Berlin Heidelberg
Erschienen in
Medical & Biological Engineering & Computing / Ausgabe 4/2019
Print ISSN: 0140-0118
Elektronische ISSN: 1741-0444
DOI
https://doi.org/10.1007/s11517-018-1916-y

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