
eBook - PDF
Foot and Ankle Motion Analysis
Clinical Treatment and Technology
- 704 pages
- English
- PDF
- Available on iOS & Android
eBook - PDF
About this book
Human motion analysis or gait analysis is used throughout the country and the world in clinics for pre-surgical planning and postsurgical follow-up. Only recently have technological advances truly begun to meet medical needs by supplying more accurate analytical data from which to make educated assessments of dynamic foot and ankle pathology. A com
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Yes, you can access Foot and Ankle Motion Analysis by Gerald F. Harris,Peter A. Smith in PDF and/or ePUB format, as well as other popular books in Medicine & Biotechnology in Medicine. We have over one million books available in our catalogue for you to explore.
Information
Table of contents
- Front cover
- Preface
- Editors
- Contributors
- Acknowledgments
- Table of Contents
- Chapter 1. Foot and Ankle Motion Analysis: Evolutionary Perspectives and Introduction
- Chapter 2. Clinical Applications of Foot and Ankle Motion Analysis in Children
- Chapter 3. Functional Gait Analysis in Children Following Clubfoot Releases
- Chapter 4. Dynamic Plantar Pressure Characteristics and Clinical Applications in Patients with Residual Clubfoot
- Chapter 5. Three-Dimensional Magnetic Resonance Imaging Modeling of Normal and Surgically Treated Clubfeet
- Chapter 6. Dynamic Foot Pressure in the Early Evolution of Foot Deformities in Children with Spastic Cerebral Palsy
- Chapter 7. Plantar Pressure-Based Quantitative Assessment of Subtalar Arthrodesis in the Rehabilitation of the Planovalgus Foot Deformity
- Chapter 8. Chemodenervation and Motion Assessment
- Chapter 9. Equinovarus Foot: Electromyography Analysis and Clinical Outcome
- Chapter 10. Lower Extremity Characterization of Walker-Assisted Gait in Children with Spastic Diplegic Cerebral Palsy
- Chapter 11. Response to Balance Perturbation: A Strategy for Pediatric Assessment
- Chapter 12. Gait Analysis in Posterior Tibial Tendon Dysfunction: Pre- and Postoperative Analysis Compared to a Normal Population
- Chapter 13. Hallux Valgus: A Pre- and Postoperative Analysis of Gait
- Chapter 14. Hallux Rigidus: A Pre- and Postoperative Analysis of Gait
- Chapter 15. Preoperative and Postoperative Gait Analysis of the Rheumatoid Forefoot
- Chapter 16. Foot and Ankle Motion Analysis of Patients with Ankle Arthritis
- Chapter 17. Total Ankle Arthroplasty: A Pre- and Postoperative Analysis of Gait*
- Chapter 18. Dynamic Poly-EMG in Gait Analysis for the Assessment of Equinovarus Foot
- Chapter 19. The Challenge of the Diabetic Foot
- Chapter 20. The Biomechanics of the Diabetic Foot
- Chapter 21. Three-Dimensional Finite Element Analysis of the Fifth Metatarsal Jones Fracture
- Chapter 22. A System for the Analysis of Foot and Ankle Kinematics during Gait*
- Chapter 23. Validation of a Multisegment Foot and Ankle Kinematic Model for Pediatric Gait*
- Chapter 24. Measurement of Foot Kinematics and Plantar Pressure in Children Using the Oxford Foot Model
- Chapter 25. The Design, Development, and Initial Evaluation of a Multisegment Foot Model for Routine Clinical Gait Analysis
- Chapter 26. Reliability of a Clinically Practical Multisegment Foot Marker Set/Model
- Chapter 27. A Multisegment, 3D Kinematic Model of the Foot and Ankle
- Chapter 28. A Spatial Linkage Model of the Ankle Complex
- Chapter 29. Multisegment Foot Biomechanics in Dynamic Hindfoot Varus
- Chapter 30. The Accuracy and Utility of Virtual Markers
- Chapter 31. Determination of Subject-Specific Ankle Joint Axes from Measured Foot Motion
- Chapter 32. Dynamic Radiographic Measurement of Three- Dimensional Skeletal Motion
- Chapter 33. Exploring the Frontiers of V Multibody Ankle Dynamics Using Fast-Phase Contrast Magnetic Resonance Imaging
- Chapter 34. Kinetic Measures of the Foot: Overcoming Current Obstacles
- Chapter 35. Triaxial Plantar Force Sensor: Design, Calibration, Characterization, and Subject Testing
- Chapter 36. Quasi-Stiffness of the Ankle during Able-Bodied Walking at Different Speeds: Implications for Design of Prostheses
- Chapter 37. Development of an Advanced Biofidelic Lower Extremity Prosthesis*
- Chapter 38. The Role of Robotic Technology in Gait Simulation and Foot Mechanics
- Chapter 39. Supporting Rehabilitation Research on Foot and Ankle Motion Analysis
- Index
- Back cover