Biomechanics of the Human Spine: Basic Concepts, Spinal Disorders and Treatments
Editat de Fabio Galbusera, Hans-Joachim Wilkeen Limba Engleză Hardback – mar 2026
Contributions from leading institutions worldwide ensure the inclusion of the latest research and expertise in spine biomechanics. Highlights include in-depth experimental testing, numerical simulation, and in vivo studies, such as imaging and motion analysis. The book stands out for its comprehensive approach, bridging the gap between biomechanical knowledge and clinical application. It is indispensable for professionals in the field, offering valuable insights and practical guidance for understanding and treating spinal disorders.
- Provides a complete reference which covers all topics related to spine biomechanics (tissue mechanics, methods of investigation, spinal disorders)
- Focuses on clinically relevant research questions without compromising on scientific rigour
- Includes contributions from a large group of experts with worldwide recognition
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Specificații
ISBN-13: 9780443265686
ISBN-10: 0443265682
Pagini: 600
Dimensiuni: 191 x 235 mm
Ediția:2
Editura: ELSEVIER SCIENCE
ISBN-10: 0443265682
Pagini: 600
Dimensiuni: 191 x 235 mm
Ediția:2
Editura: ELSEVIER SCIENCE
Cuprins
Section 1: Introduction and functional anatomy
1. Historical perspective on spine biomechanics research
2. Anatomy, development and evolution of the human spine
3. General biomechanics of the spine
4. The cervical spine
5. The thoracic spine and the rib cage
6. The lumbar spine
7. Sacrum and pelvis
Section 2: Biomechanics of Spinal Tissues
8. Vertebral bone
9. Intervertebral disc
10. Vertebral endplates
11. Spinal muscles
12. Cell biomechanics and mechanobiology
Section 3: Methods in Spine Biomechanics Research
13. Spinal imaging
14. Motion analysis
15. In vitro testing of cadaveric specimens
16. Standard testing
17. Mathematical and finite element modeling
18. Musculoskeletal modeling
19. Animal models for spine biomechanics
20. Machine learning and artificial intelligence
Section 4: Spinal Disorders and Spine Surgery Degenerative disorders
21. Intervertebral disc degeneration
22. Biomechanics of low back pain
23. Disc herniation
24. Biomechanics of physical therapy and rehabilitation Spinal implants
25. Fixation and fusion
26. Motion preservation
27. Nucleus replacement and regenerative therapies Spinal deformities
28. Pediatric and adolescent scoliosis
29. Sagittal imbalance
30. Adult spine deformities
31. Neuromuscular spine disorders Trauma, osteoporosis and tumors
32. Spinal fractures
33. Whiplash
34. Osteoporosis and osteoporotic fractures
35. Spine tumors
36. Biomechanics of spinal cord injuries
37. Glossary
1. Historical perspective on spine biomechanics research
2. Anatomy, development and evolution of the human spine
3. General biomechanics of the spine
4. The cervical spine
5. The thoracic spine and the rib cage
6. The lumbar spine
7. Sacrum and pelvis
Section 2: Biomechanics of Spinal Tissues
8. Vertebral bone
9. Intervertebral disc
10. Vertebral endplates
11. Spinal muscles
12. Cell biomechanics and mechanobiology
Section 3: Methods in Spine Biomechanics Research
13. Spinal imaging
14. Motion analysis
15. In vitro testing of cadaveric specimens
16. Standard testing
17. Mathematical and finite element modeling
18. Musculoskeletal modeling
19. Animal models for spine biomechanics
20. Machine learning and artificial intelligence
Section 4: Spinal Disorders and Spine Surgery Degenerative disorders
21. Intervertebral disc degeneration
22. Biomechanics of low back pain
23. Disc herniation
24. Biomechanics of physical therapy and rehabilitation Spinal implants
25. Fixation and fusion
26. Motion preservation
27. Nucleus replacement and regenerative therapies Spinal deformities
28. Pediatric and adolescent scoliosis
29. Sagittal imbalance
30. Adult spine deformities
31. Neuromuscular spine disorders Trauma, osteoporosis and tumors
32. Spinal fractures
33. Whiplash
34. Osteoporosis and osteoporotic fractures
35. Spine tumors
36. Biomechanics of spinal cord injuries
37. Glossary