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191 results on '"Kinematics"'

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1. All-suture anchor pullout results in decreased bone damage and depends on cortical thickness.

2. The tibial cut in total knee arthroplasty influences the varus alignment, the femoral roll-back and the tibiofemoral rotation in patients with constitutional varus.

3. A constrained-condylar fixed-bearing total knee arthroplasty is stabilised by the medial soft tissues.

4. The superficial medial collateral ligament is the major restraint to anteromedial instability of the knee.

5. The tibial cut influences the patellofemoral knee kinematics and pressure distribution in total knee arthroplasty with constitutional varus alignment.

6. Improved mediolateral load distribution without adverse laxity pattern in robot-assisted knee arthroplasty compared to a standard manual measured resection technique.

7. Osseous valgus alignment and posteromedial ligament complex deficiency lead to increased ACL graft forces.

8. Selective bundle tensioning in double-bundle MPFL reconstruction to improve restoration of dynamic patellofemoral contact pressure.

9. Varus alignment increases medial meniscus extrusion and peak contact pressure: a biomechanical study.

10. LUCL internal bracing restores posterolateral rotatory stability of the elbow.

11. Repair of the medial patellofemoral ligament with suture tape augmentation leads to similar primary contact pressures and joint kinematics like reconstruction with a tendon graft: a biomechanical comparison.

12. Notchplasty alters knee biomechanics after anatomic ACL reconstruction.

13. The CFL fails before the ATFL immediately after combined ligament repair in a biomechanical cadaveric model.

14. Repair of the entire superior acromioclavicular ligament complex best restores posterior translation and rotational stability.

15. Education and repetition improve success rate and quantitative measures of the pivot shift test.

16. Slope-reducing tibial osteotomy decreases ACL-graft forces and anterior tibial translation under axial load.

17. Bone block augmentation from the iliac crest for treatment of deep osteochondral defects of the knee resembles biomechanical properties of the subchondral bone.

18. Distal femoral torsional osteotomy increases the contact pressure of the medial patellofemoral joint in biomechanical analysis.

19. The native coronal orientation of tibial plateaus may limit the indications to perform a kinematic aligned total knee arthroplasty.

20. Kinematics of the proximal tibiofibular joint is influenced by ligament integrity, knee and ankle mobility: an exploratory cadaver study.

21. Interference screw insertion angle has no effect on graft fixation strength for insertional Achilles tendon reconstruction.

22. Native rotational knee kinematics is restored after lateral UKA but not after medial UKA.

23. Posterior tibial slope impacts intraoperatively measured mid-flexion anteroposterior kinematics during cruciate-retaining total knee arthroplasty.

24. Native rotational knee kinematics are lost in bicruciate-retaining total knee arthroplasty when the tibial component is replaced.

25. Increases in tibial force imbalance but not changes in tibiofemoral laxities are caused by varus-valgus malalignment of the femoral component in kinematically aligned TKA.

26. Repair of the lateral posterior meniscal root improves stability in an ACL-deficient knee.

27. Internal femoral component malrotation in TKA significantly alters tibiofemoral kinematics.

28. Medial stabilized and posterior stabilized TKA affect patellofemoral kinematics and retropatellar pressure distribution differently.

29. Kinematically aligned total knee arthroplasty limits high tibial forces, differences in tibial forces between compartments, and abnormal tibial contact kinematics during passive flexion.

30. Anatomic and non-anatomic anterior cruciate ligament posterolateral bundle augmentation affects graft function.

31. Internal femoral component rotation adversely influences load transfer in total knee arthroplasty: a cadaveric navigated study using the Verasense device.

32. Comparison between cylindrical axis-reference and articular surface-reference femoral bone cut for total knee arthroplasty.

33. Three-dimensional patellar tendon fibre kinematics in navigated TKA with and without patellar resurfacing.

34. Tibial component with and without stem extension in a trabecular metal cone construct.

35. Mediolateral femoral component position in TKA significantly alters patella shift and femoral roll-back.

36. Influence of mediolateral tibial baseplate position in TKA on knee kinematics and retropatellar pressure.

37. An in vitro analysis of medial structures and a medial soft tissue reconstruction in a constrained condylar total knee arthroplasty.

38. Assessment of knee laxity using a robotic testing device: a comparison to the manual clinical knee examination.

39. Lateral clavicle fracture with coracoclavicular ligament injury: a biomechanical study of 4 different repair techniques.

40. Radial shortening osteotomy reduces radiocapitellar contact pressures while preserving valgus stability of the elbow.

41. Tibiofemoral forces for the native and post-arthroplasty knee: relationship to maximal laxity through a functional arc of motion.

42. Kinematics of a bicruciate-retaining total knee arthroplasty.

43. Novel anatomical reconstruction of distal tibiofibular ligaments restores syndesmotic biomechanics.

44. Mechanical strains passing through the acetabular labrum modify its shape during hip motion: an anatomical study.

45. Converting round tendons to flat tendon constructs: Does the preparation process have an influence on the structural properties?

46. ACL double-bundle reconstruction with one tibial tunnel provides equal stability compared to two tibial tunnels.

47. Knee joint kinematics after dynamic intraligamentary stabilization: cadaveric study on a novel anterior cruciate ligament repair technique.

48. Femoral interference screw fixation of hamstring and quadriceps tendons for ACL reconstruction.

49. Kinematics of ACL and anterolateral ligament. Part I: Combined lesion.

50. Kinematics of ACL and anterolateral ligament. Part II: anterolateral and anterior cruciate ligament reconstruction.

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