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Clinical Biomechanics (Bristol, Avon)|December 1, 1995
The potential of magnetic resonance imaging (MRI) for quantifying articular cartilage thickness -- a methodological studyF Eckstein, H Sittek, S Milz, et al.The Anatomical Record|November 1, 1995
Morphomechanics of the humero-ulnar joint: I. Joint space width and contact areas as a function of load and flexion angleF Eckstein, F Löhe, S Hillebrand, et al.Osteoarthritis and Cartilage|December 5, 2002
Side differences of knee joint cartilage volume, thickness, and surface area, and correlation with lower limb dominance--an MRI-based studyF Eckstein, S Müller, S C Faber, et al.Spine|July 28, 2001
An immunohistochemical study of the dorsal capsule of the lumbar and thoracic facet jointsB M Boszczyk, A A Boszczyk, R Putz, et al.Der Unfallchirurg|December 1, 1994
[Change in subchondral mineralization after reconstruction of the anterior cruciate ligament of the sheep]H Anetzberger, M Müller-Gerbl, M A Scherer, et al.Der Radiologe|February 1, 1995
[Knee joint cartilage in magnetic resonance tomography. MR chondrovolumetry (MR-CVM) using fat-suppressed FLASH 3D sequence]F Eckstein, H Sittek, A Gavazzeni, et al.Magnetic Resonance in Medicine|May 15, 1998
An MR-based technique for quantifying the deformation of articular cartilage during mechanical loading in an intact cadaver jointC Herberhold, T Stammberger, S Faber, et al.Der Unfallchirurg|September 15, 1999
[Quantitative determination of pressure distribution in the hip joint during the gait cycle]R von Eisenhart-Rothe, H Witte, M Steinlechner, et al.Osteoarthritis and Cartilage|February 14, 2002
Functional adaptation of human joints to mechanical stimuliF Eckstein, S Faber, R Mühlbauer, et al.Arthritis and Rheumatism|November 17, 2001
Age-related changes in the morphology and deformational behavior of knee joint cartilageM Hudelmaier, C Glaser, J Hohe, et al.Pageof 14