 
                                    Weight Bearing Cone Beam Computed Tomography (WBCT) in the Foot and Ankle: A Scientific, Technical and Clinical Guide
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Autor: Martinus Richter, Francois Lintz, Cesar de Cesar Netto, Alexej Barg, Arne Burssens, Scott Ellis
Editura: Springer
Limba: Engleza
Nr. pagini: 313
Coperta: Hardcover
Dimensiuni: 15.5 x 23.5 cm
An aparitie: 2019
·  Cover
·  Front Matter
·  Part I. History and Scientific Overview of Weight Bearing Cone Beam Computed Tomography
·  1. Background of Weight Bearing Cone Beam Computed Tomography
·  2. Scientific Overview of Weight Bearing Cone Beam Computed Tomography
·  Part II. Scientific Background of Weight Bearing Cone Beam Computed Tomography
·  3. Weight Bearing CT Allows for More Accurate Bone Position (Angle) Measurement than Radiographs or CT
·  4. Combination of Weight Bearing CT (WBCT) with Pedography Shows No Statistical Correlation of Bone Position with Force/Pressure Distribution
·  5. Combination of Weight Bearing CT (WBCT) with Pedography Shows Relationship Between Anatomy-Based Foot Center (FC) and Force/Pressure-Based Center of Gravity (COG)
·  6. A New Concept of 3D Biometrics for Hindfoot Alignment Using Weight Bearing CT
·  7. 3D Biometrics for Hindfoot Alignment Using Weight Bearing Computed Tomography: A Prospective Assessment of 249 Feet
·  8. Relationship Between Chronic Lateral Ankle Instability and Hindfoot Varus Using Weight Bearing Cone Beam Computed Tomography: A Retrospective Study
·  9. Normal Hindfoot Alignment Assessed by Weight Bearing CT: Presence of a Constitutional Valgus?
·  10. Reliability and Correlation Analysis of Computed Methods to Convert Conventional 2D Radiological Hindfoot Measurements to 3D Equivalents Using Weight Bearing CT
·  11. The Hind- and Midfoot Alignment Analyzed After a Medializing Calcaneal Osteotomy Using a 3D Weight Bearing CT
·  12. Is Load Application Necessary when Using Computed Tomography Scans to Diagnose Syndesmotic Injuries? A Cadaver Study
·  13. Use of Weight Bearing Computed Tomography in Subtalar Joint Instability: A Cadaver Study
·  14. Is Torque Application Necessary When Using Computed Tomography Scans to Diagnose Syndesmotic Injuries? A Cadaver Study
·  15. Flexible Adult-Acquired Flatfoot Deformity: Comparison Between Weight Bearing and Non-weight Bearing Measurements Using Cone Beam Computed Tomography
·  16. Hindfoot Alignment of Adult-Acquired Flatfoot Deformity: A Comparison of Clinical Assessment and Weight Bearing Cone Beam CT Examinations
·  17. Influence of Investigator Experience on Reliability of Adult-Acquired Flatfoot Deformity Measurements Using Weight Bearing Computed Tomography
·  18. Results of More Than 11,000 Scans with Weight Bearing CT: Impact on Costs, Radiation Exposure, and Procedure Time
·  Part III. Technical Guide to Weight Bearing Cone Beam Computed Tomography
·  19. Technology of Weight Bearing Cone Beam Computed Tomography
·  20. Weight Bearing Computed Tomography Devices
·  21. Measurements in Weight Bearing Computed Tomography
·  22. Clinical Examples of Weight Bearing Computed Tomography
·  23. Future Developments in Weight Bearing Computed Tomography
·  Back Matter
| An aparitie | 2019 | 
| Autor | Martinus Richter, Francois Lintz, Cesar de Cesar Netto, Alexej Barg, Arne Burssens, Scott Ellis | 
| Dimensiuni | 15.5 x 23.5 cm | 
| Editura | Springer | 
| Format | Hardcover | 
| ISBN | 9783030319489 | 
| Limba | Engleza | 
| Nr pag | 313 | 
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