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49 results on '"Fasser, Marie-Rosa'

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18. Load distribution on intervertebral cages with and without posterior instrumentation

19. Intraoperative anteroposterior and oblique fluoroscopic views for detection of mediolateral pedicle screw misplacement in the lumbar spine: a randomized cadaveric study

21. Influence of offset on osseointegration in cementless total hip arthroplasty: A finite element study.

23. Bone density optimized pedicle screw insertion

26. A novel approach for tetrahedral-element-based finite element simulations of anisotropic hyperelastic intervertebral disc behavior

27. Bone density optimized pedicle screw insertion

28. Residual motion of different posterior instrumentation and interbody fusion constructs

29. Interspinous and spinolaminar synthetic vertebropexy of the lumbar spine

30. Vertebropexy as a semi-rigid ligamentous alternative to lumbar spinal fusion

31. Biomechanics after spinal decompression and posterior instrumentation

32. Residual motion of cortical versus pedicle screw constructs after decompression, interbody fusion and cross-link augmentation

33. Bone density optimized pedicle screw instrumentation improves screw pull-out force in lumbar vertebrae

34. The biomechanical fundamentals of crosslink-augmentation in posterior spinal instrumentation

36. Posterior spinal instrumentation and decompression with or without cross-link?

38. Subject-Specific Alignment and Mass Distribution in Musculoskeletal Models of the Lumbar Spine

41. Is a cross-connector beneficial for single level traditional or cortical bone trajectory pedicle screw instrumentation?

44. Individualized prediction of pedicle screw fixation strength with a finite element model

46. A novel approach for tetrahedral-element-based finite element simulations of anisotropic hyperelastic intervertebral disc behavior.

47. Bone density optimized pedicle screw instrumentation improves screw pull-out force in lumbar vertebrae.

48. Posterior spinal instrumentation and decompression with or without cross-link?

49. Subject-Specific Alignment and Mass Distribution in Musculoskeletal Models of the Lumbar Spine.

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