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E-raamat: Wear Prediction on Total Ankle Replacement: Effect of Design Parameters

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This book develops and analyses computational wear simulations of the total ankle replacement for the stance phase of gait cycle. The emphasis is put on the relevant design parameters. The book presents a model consisting of three components; tibial, bearing and talar representing their physiological functions.
1 Introduction
1(18)
1.1 Ankle Joint Anatomy
2(5)
1.1.1 Ankle Biomechanics
4(1)
1.1.2 Loading on the Ankle
5(2)
1.1.3 Kinematics of the Ankle
7(1)
1.2 Ankle Joint Problems that Lead to Surgical Treatment
7(2)
1.3 Ankle Joint Treatment
9(3)
1.3.1 Ankle Fusion
10(1)
1.3.2 Total Ankle Replacement (TAR)
10(2)
1.4 Total Ankle Replacement (TAR)
12(3)
1.4.1 Agility TAR (DePuy, Warsaw, iN, USA)
12(1)
1.4.2 Scandinavian Total Ankle Replacement (STAR) (Waldmar Link, Hamburg, Germany)
13(1)
1.4.3 Buechel-Pappas (BP) TAR
14(1)
1.4.4 Bologna, Oxford Total Ankle Replacement (BOX)
15(1)
1.5 Complications
15(4)
References
16(3)
2 Contact Pressure of Total Ankle Replacement (TAR)
19(14)
2.1 Geometric Model
19(1)
2.2 Finite Element Analysis
20(5)
2.2.1 Development of Finite Element Analysis of Gait Cycle
21(4)
2.3 Contact Analysis
25(2)
2.3.1 Contact Pressure of Total Ankle Replacement (TAR)
26(1)
2.4 Sliding Distance
27(1)
2.5 Validity of Contact Analysis
28(5)
2.5.1 Mesh Sensitivity Test
29(1)
2.5.2 Contact Analysis
30(1)
References
31(2)
3 Wear of Total Ankle Replacement (TAR)
33(10)
3.1 Fundamental of Wear Modelling
33(2)
3.1.1 Wear of Total Ankle Replacement (TAR)
34(1)
3.2 Wear Model of Total Ankle Replacement (TAR)
35(1)
3.3 Update Contact Geometry of Total Ankle Replacement (TAR)
36(2)
3.4 Wear Sensitivity Study
38(5)
References
40(3)
4 Effect of Design Parameter Towards Wear Generation
43(12)
4.1 Parametric Study
43(12)
4.1.1 Thickness of Meniscal Bearing
43(4)
4.1.2 Radial Contact of Meniscal Bearing
47(5)
References
52(3)
5 Conclusion
55