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Hip Biomechanics

Buch | Hardcover
348 Seiten
1993
Springer Verlag, Japan
978-4-431-70118-7 (ISBN)
CHF 119,75 inkl. MwSt
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This volume is the arranged monograph based on the Hip Biomechanics Symposium held on November 1992 in Fukui, Japan. It consists of six major sections: loading, gait analysis, total hip arthroplasty, osteotomies, motion analysis, and stem designs for stability. The most important aim of the volume is to overview the current research outcomes in the biomechanical approaches to adult hip diseases. Each of these sections brings together many of the leading researchers in this field. The information found here will be of benefit to orthopedic surgeons and researchers in the related areas.

I Hip Joint and Loading.- 1 Two-Dimensional Finite Element Analysis for Stress Distribution in Normal and Dysplastic Hips.- 2 Stress Distribution at Hip Joint During Level Walking.- 3 Biomechanical Studies of the Hip Utilizing Computer Simulation.- 4 -Overview- Estimation of Femoral Head Resultant Force with Three-Dimensional Rigid Body Spring Model.- II Hip Joint and Gait Analysis.- 5 Quantitative Analysis of the Limp in Coxarthrosis.- 6 Tridimensional Motion Analysis of Trunk Versus Pelvis Movement in Hip Abductor Lurch.- 7 Three-Dimensional Analysis of Trunk Movements During Walking in Patients with Osteoarthritic Hip.- 8 Gait Analysis Following Pelvic Osteotomy.- 9 Gait Analysis of Utilateral Total Hip Replacement: Quantitative Analysis of the Vertical Floor Reaction Force.- 10 -Overview- Clinical Gait Analysis in Hip Patients.- III Hip Joint Surgery and Simulation.- A Total Hip Arthroplasty.- 11 Simple Solid Models for Surgical Planning in Hip Arthroplasties.- 12 Application of Three-Dimensional Milling System in Hip Disorders.- 13 Three-Dimensional Fitting of Stem by Computer Analysis.- 14 Computer Simulation for the Planning of Total Hip Replacement: Improvement of the Simulation System.- 15 -Overview- Clinical Applications of Image Analyses in the Hip Joint.- B Osteotomy.- 16 Biomechanical Analysis of the Dysplastic Hip: Pre- and Post-Pelvic and Femoral Osteotomy.- 17 Computer Simulation of Hip Osteotomies for Dysplastic Coxarthroses: Use of a Rigid Body Spring Model.- 18 Simulation of Rotational Acetabular Osteotomy: Comparison of Graphic and Organ Models.- 19 Simulation for Hip Osteotomy Using Three-Dimensional Computerized Tomography.- 20 Biomechanical Analysis After Chiari's Pelvic Osteotomy by Means of Superimposed Pelvic Computed Tomography Scan.- 21 -Overview- Alteration in Neck Axis Direction After Transtrochanteric Rotational Osteotomy.- IV Stress Analysis in Total Hip Arthroplasty.- 22 Biomechanical Analysis of a New Type of Surface Total Hip Replacement.- 23 Biomechanical Study of Femoral Stem Load Transfer in Cementless Total Hip Arthroplasty, Using a Non-Linear Two-Dimensional Finite Element Method.- 24 Load-Bearing Mechanisms of Natural and Artificial Joints.- 25 Biomechanical Features of Various Cementless Total Hip Replacement Systems.- 26 -Overview- Application of Thermoelastic Stress Analysis Method to Joint Biomechanics.- V Design and Fixation of Femoral Components in Total Hip Arthroplasty.- 27 Basic Study of Hip Prosthesis Design: Analysis of Shape of the Femoral Medullary Canal in Japanese Subjects by Computed Tomographic Scanning.- 28 Analysis of the Endosteal Geometry of the Proximal Femur in Japanese Patients with Osteoarthritic Hips: Use in Femoral Stem Design.- 29 Torsional Fixation of the Femoral Component in Cementless Total Hip Arthroplasty: Newly Designed Funnel Shape Femoral Component.- 30 -Overview- Ideal Stem Design for Cementless Total Hip System.- List of Contributors.

Zusatzinfo 338 black & white illustrations, biography
Verlagsort Tokyo
Sprache englisch
Gewicht 680 g
Themenwelt Medizinische Fachgebiete Chirurgie Unfallchirurgie / Orthopädie
Medizin / Pharmazie Physiotherapie / Ergotherapie Orthopädie
Medizin / Pharmazie Physiotherapie / Ergotherapie Rehabilitation
Technik Medizintechnik
ISBN-10 4-431-70118-4 / 4431701184
ISBN-13 978-4-431-70118-7 / 9784431701187
Zustand Neuware
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