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Advances in the material sciences, 3D printing technology, functional electrical stimulation, smart devices and apps, FES technology, sensors and microprocessor technologies, and more have lately transformed the field of orthotics, making the prescription of these devices more complex than ever before. Atlas of Orthoses and Assistive Devices, 5th Edition, brings you completely up to date with these changes, helping physiatrists, orthopaedic surgeons, prosthetists, orthotists, and other rehabilitative specialists work together to select the appropriate orthotic device for optimal results in every patient.

1. Introduction - p. 1 2. 1 Orthotic Prescription - p. 2 3. 2 Materials Science - p. 7 4. 3 Principles of Fabrication - p. 42 5. 4 Principles of Normal and Pathologic Gait - p. 49 6. Section 2 Spinal Orthoses - p. 62.e1 7. Introduction - p. 63 8. 5 Biomechanics of the Spine - p. 64 9. 6 Principles and Components of Spinal Orthoses - p. 69 10. 7 Orthoses for Spinal Pain - p. 90 11. 8 Orthoses for Spinal Deformities - p. 95 12. 9 Orthoses for Spinal Trauma and Postoperative Care - p. 105 13. 10 Orthoses for Osteoporosis - p. 115 14. Section 3 Upper Limb Orthoses - p. 125.e2 15. Introduction - p. 126 16. 11 Biomechanics of the Upper Limb - p. 127 17. 12 Principles and Components of Upper Limb Orthoses - p. 134 18. 13 Upper Limb Orthoses for the Stroke- and Brain-Injured Patient - p. 146 19. 14 Upper Limb Orthoses for Persons With Spinal Cord Injuries and Brachial Plexus Injuries - p. 157 20. 15 Orthoses for the Burned Hand - p. 170 21. 16 Orthotic Treatment Considerations for Arthritis and Overuse Syndromes in the Upper Limb - p. 176 22. 17 Functional Bracing of Selected Upper Limb Fractures - p. 198 23. Section 4 Lower Limb Orthoses - p. 205.e1 24. Introduction - p. 206 25. 18 Biomechanics of the Hip, Knee, and Ankle - p. 207 26. 19 Foot Biomechanics - p. 216 27. 20 Shoes and Shoe Modifications - p. 229 28. 21 Foot Orthoses - p. 233 29. 22 Lower Limb Orthoses - p. 239 30. 23 Lower Limb Orthoses for Persons With Spinal Cord Injury - p. 247 31. 24 Orthoses in Total Joint Arthroplasty - p. 256 32. 25 Knee Orthoses for Sports-Related Issues - p. 259 33. 26 Orthotic Management of Neuropathic and Dysvascular Feet - p. 268 34. 27 Orthotic Management of Polio and Postpolio Syndrome - p. 277 35. 28 Lower Limb Orthoses for Persons Who Have Had a Stroke - p. 289 36. 29 Assessment and Orthotic Management of Gait Dysfunction in Individuals With Traumatic Brain Injury - p. 296 37. Section 5 Pediatric Orthoses - p. 301.e1 38. Introduction - p. 302 39. 30 Congenital and Acquired Disorders - p. 303 40. 31 Pediatric Hip Orthoses - p. 313 41. 32 Orthoses for the Muscle Disease Patient - p. 332 42. 33 Orthoses for Cerebral Palsy - p. 337 43. 34 Orthoses for Myelomeningocele - p. 350 44. 35 Cranial Remolding Orthoses - p. 359 45. Section 6 Assistive Devices - p. 375.e3 46. Introduction - p. 376 47. 36 Canes, Crutches, and Walkers - p. 377 48. 37 Wheeled Mobility - p. 383 49. 38 Wheeled Mobility - p. 390 50. 39 Wheelchair and Assistive Device Considerations for Remote Settings - p. 398 51. 40 Communication Devices and Electronic Aids to Activities of Daily Living - p. 403 52. 41 Sports Adaptations and Assistive Devices for Recreation - p. 418 53. 42 Driving and Related Assistive Devices - p. 425 54. 43 Neuromuscular Electrical Stimulation Applications - p. 432 55. 44 Exoskeletal Assisted Rehabilitation After Spinal Cord Injury - p. 440 56. 45 Future Trends and Research in Orthoses - p. 448 57. Index - p. 451

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Advances in the material sciences, 3D printing technology, functional electrical stimulation, smart devices and apps, FES technology, sensors and microprocessor technologies, and more have lately transformed the field of orthotics, making the prescription of these devices more complex than ever before. Atlas of Orthoses and Assistive Devices, 5th Edition, brings you completely up to date with these changes, helping physiatrists, orthopaedic surgeons, prosthetists, orthotists, and other rehabilitative specialists work together to select the appropriate orthotic device for optimal results in every patient.

1. Introduction - p. 1 2. 1 Orthotic Prescription - p. 2 3. 2 Materials Science - p. 7 4. 3 Principles of Fabrication - p. 42 5. 4 Principles of Normal and Pathologic Gait - p. 49 6. Section 2 Spinal Orthoses - p. 62.e1 7. Introduction - p. 63 8. 5 Biomechanics of the Spine - p. 64 9. 6 Principles and Components of Spinal Orthoses - p. 69 10. 7 Orthoses for Spinal Pain - p. 90 11. 8 Orthoses for Spinal Deformities - p. 95 12. 9 Orthoses for Spinal Trauma and Postoperative Care - p. 105 13. 10 Orthoses for Osteoporosis - p. 115 14. Section 3 Upper Limb Orthoses - p. 125.e2 15. Introduction - p. 126 16. 11 Biomechanics of the Upper Limb - p. 127 17. 12 Principles and Components of Upper Limb Orthoses - p. 134 18. 13 Upper Limb Orthoses for the Stroke- and Brain-Injured Patient - p. 146 19. 14 Upper Limb Orthoses for Persons With Spinal Cord Injuries and Brachial Plexus Injuries - p. 157 20. 15 Orthoses for the Burned Hand - p. 170 21. 16 Orthotic Treatment Considerations for Arthritis and Overuse Syndromes in the Upper Limb - p. 176 22. 17 Functional Bracing of Selected Upper Limb Fractures - p. 198 23. Section 4 Lower Limb Orthoses - p. 205.e1 24. Introduction - p. 206 25. 18 Biomechanics of the Hip, Knee, and Ankle - p. 207 26. 19 Foot Biomechanics - p. 216 27. 20 Shoes and Shoe Modifications - p. 229 28. 21 Foot Orthoses - p. 233 29. 22 Lower Limb Orthoses - p. 239 30. 23 Lower Limb Orthoses for Persons With Spinal Cord Injury - p. 247 31. 24 Orthoses in Total Joint Arthroplasty - p. 256 32. 25 Knee Orthoses for Sports-Related Issues - p. 259 33. 26 Orthotic Management of Neuropathic and Dysvascular Feet - p. 268 34. 27 Orthotic Management of Polio and Postpolio Syndrome - p. 277 35. 28 Lower Limb Orthoses for Persons Who Have Had a Stroke - p. 289 36. 29 Assessment and Orthotic Management of Gait Dysfunction in Individuals With Traumatic Brain Injury - p. 296 37. Section 5 Pediatric Orthoses - p. 301.e1 38. Introduction - p. 302 39. 30 Congenital and Acquired Disorders - p. 303 40. 31 Pediatric Hip Orthoses - p. 313 41. 32 Orthoses for the Muscle Disease Patient - p. 332 42. 33 Orthoses for Cerebral Palsy - p. 337 43. 34 Orthoses for Myelomeningocele - p. 350 44. 35 Cranial Remolding Orthoses - p. 359 45. Section 6 Assistive Devices - p. 375.e3 46. Introduction - p. 376 47. 36 Canes, Crutches, and Walkers - p. 377 48. 37 Wheeled Mobility - p. 383 49. 38 Wheeled Mobility - p. 390 50. 39 Wheelchair and Assistive Device Considerations for Remote Settings - p. 398 51. 40 Communication Devices and Electronic Aids to Activities of Daily Living - p. 403 52. 41 Sports Adaptations and Assistive Devices for Recreation - p. 418 53. 42 Driving and Related Assistive Devices - p. 425 54. 43 Neuromuscular Electrical Stimulation Applications - p. 432 55. 44 Exoskeletal Assisted Rehabilitation After Spinal Cord Injury - p. 440 56. 45 Future Trends and Research in Orthoses - p. 448 57. Index - p. 451

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