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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.
Zeitschrift Fur Orthopadie Und Ihre Grenzgebiete|April 16, 2003
[Detection of bone fragments in pulmonary vessels following extracorporeal shock wave application to the distal femur in an in-vivo animal model]M Maier, J A Freed, S Milz, et al.
Zeitschrift Fur Orthopadie Und Ihre Grenzgebiete|April 24, 2004
[The architecture of the subacromial space after full thickness supraspinatus tears]H Anetzberger, M Maier, S Zysk, et al.
Magnetic Resonance in Medicine|January 1, 1996
Magnetic resonance chondro-crassometry (MR CCM): a method for accurate determination of articular cartilage thickness?F Eckstein, H Sittek, A Gavazzeni, et al.
Journal of Biomechanics|March 1, 1997
Non-invasive determination of cartilage thickness throughout joint surfaces using magnetic resonance imagingF Eckstein, C Adam, H Sittek, et al.
European Surgical Research. Europaische Chirurgische Forschung. Recherches Chirurgicales Europeennes|April 29, 2008
Dose-dependent new bone formation by extracorporeal shock wave application on the intact femur of rabbitsT Tischer, S Milz, C Weiler, et al.
Der Orthopade|October 19, 2004
[New bone formation by extracorporeal shock waves. Dependence of induction on energy flux density]M Maier, J Hausdorf, T Tischer, et al.
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