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1. Darstellung unterschiedlicher Schädigungsmuster des femoro-acetabulären Knorpel mittels dGEMRIC-Index in femoro-acetabulären Impingement Patienten

2. Auswirkung der periacetabulären Osteotomie auf den Zustand des acetabulären Knorpels – gemessen an mit Gadoliniumkontrastmittel verstärkten MR-Bildern (dGEMRIC)

3. Femoroazetabuläres Impingement: diagnostische Sensitivität von Nativröntgen in 2 Ebenen versus radiale MRT

4. T1Gd-Messung im Hüftgelenksknorpel nach intraartikulärer Gadoliniumgabe: eine Pilotstudie

5. MR-Datenerhebung zur Entwicklung der Hüfte: 1-Jahres-Follow-up einer 9–16 Jahre alten Kohorte aus asymptomatischen Kindern

6. Biochemische Knorpelbildgebung zur Früherkennung von Knorpelschäden: Vergleich hochauflösende morphologische MRT-Bildgebung mit quantitativen T2mapping bei 3Tesla

7. Überdachung des Hüftgelenks bei Femoroacetabulärem Impingement (FAI): MRT basierte Studie in 21 Patienten mit radiologisch klassifizierten Pincer type FAI

8. Knorpelreparaturgewebe nach Matrix-assoziierter autologer Chondrozyten Transplantation (MACT) mittels Hyaluronsäure-basierter oder Kollagen-basierter Matrix: Differenzierung durch morphologische und biochemische Magnetresonanztomographie

9. Parametrisches T2 und T2* Mapping zur Visualisierung der Ultrastruktur der Bandscheibe bei Patienten mit Lumbalgie

10. Untersuchung der Knorpelqualität im Langzeitverlauf nach Morbus Perthes: Delayed Gadolinium Enhanced MRI of Cartilage (dGEMRIC)

11. 3D - MOCART (Magnetic Resonance Observation of Cartilage Repair Tissue) Score in der Darstellbarkeit von Knorpelersatztransplantaten basierend auf einer isotropen 3D-MRT Seqeunz

12. Vergleich Standard-MRT, dGEMRIC (Idelayed Gadolinium-Enhanced MRI in Cartilage) und intra-operative Knorpelbeurteilung beim Femoroazetabulären Impingement (FAI): eine prospektive Studie

13. Delayed gadolinium enhanced MRI of cartilage (dGEMRIC): Molekulare MRT-Bildgebung des Hüftgelenkknorpels [Delayed gadolinium enhanced MRI of cartilage (dGEMRIC): molecular MRI of hip joint cartilage]

14. [Radiological diagnosis of femoroacetabular impingement]

26. Femoral morphology and epiphyseal growth plate changes of the hip during maturation: MR assessments in a 1-year follow-up on a cross-sectional asymptomatic cohort in the age range of 9-17 years.

27. Axial T2 mapping in intervertebral discs: a new technique for assessment of intervertebral disc degeneration.

28. Biochemical (T2, T2* and magnetisation transfer ratio) MRI of knee cartilage: feasibility at ultra-high field (7T) compared with high field (3T) strength.

30. Lumbar intervertebral disc abnormalities: comparison of quantitative T2 mapping with conventional MR at 3.0 T.

31. T2 and T2* mapping in patients after matrix-associated autologous chondrocyte transplantation: initial results on clinical use with 3.0-Tesla MRI.

34. The in vivo effects of unloading and compression on T1-Gd (dGEMRIC) relaxation times in healthy articular knee cartilage at 3.0 Tesla.

35. Multimodal approach in the use of clinical scoring, morphological MRI and biochemical T2-mapping and diffusion-weighted imaging in their ability to assess differences between cartilage repair tissue after microfracture therapy and matrix-associated...

37. Range of motion after computed tomography-based simulation of intertrochanteric corrective osteotomy in cases of slipped capital femoral epiphysis: comparison of uniplanar flexion osteotomy and multiplanar flexion, valgisation, and rotational osteotomies.

38. Evaluation and comparison of cartilage repair tissue of the patella and medial femoral condyle by using morphological MRI and biochemical zonal T2 mapping.

39. Kinematic biomechanical assessment of human articular cartilage transplants in the knee using 3-T MRI: an in vivo reproducibility study.

40. Femoral morphology due to impingement influences the range of motion in slipped capital femoral epiphysis.

41. T2 mapping in the knee after microfracture at 3.0 T: correlation of global T2 values and clinical outcome - preliminary results.

42. Differentiating normal hyaline cartilage from post-surgical repair tissue using fast gradient echo imaging in delayed gadolinium-enhanced MRI (dGEMRIC) at 3 Tesla.

43. Steady-state diffusion imaging for MR in-vivo evaluation of reparative cartilage after matrix-associated autologous chondrocyte transplantation at 3 tesla--preliminary results.

44. Quantitative T2 mapping of the patella at 3.0T is sensitive to early cartilage degeneration, but also to loading of the knee.

45. Effect of short-term unloading on T2 relaxation time in the lumbar intervertebral disc--in vivo magnetic resonance imaging study at 3.0 tesla.

49. Biochemical MRI predicts hip osteoarthritis in an experimental ovine femoroacetabular impingement model.

50. Does periacetabular osteotomy for hip dysplasia modulate cartilage biochemistry?

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