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Radiology|April 8, 1998
Effect of physical exercise on cartilage volume and thickness in vivo: MR imaging studyF Eckstein, M Tieschky, S C Faber, et al.Proceedings. Symposium on Computer Applications in Medical Care|January 1, 1992
Visualization of multimodal image information in medicineK H Englmeier, U Fink, T HilbertzEuropean Journal of Medical Research|May 16, 1998
Hybrid rendering of the cervico-cranial arteries using spiral computed tomographyM Seemann, K Englmeier, M Haubner, et al.Anatomy and Embryology|June 12, 1998
Quantitative relationships of normal cartilage volumes of the human knee joint--assessment by magnetic resonance imagingF Eckstein, M Winzheimer, J Westhoff, et al.Journal of Orthopaedic Research : Official Publication of the Orthopaedic Research Society|March 14, 1998
Repeatability of patellar cartilage thickness patterns in the living, using a fat-suppressed magnetic resonance imaging sequence with short acquisition time and three-dimensional data processingM Tieschky, S Faber, M Haubner, et al.AJR. American Journal of Roentgenology|December 10, 1999
Three-dimensional analysis of the width of the subacromial space in healthy subjects and patients with impingement syndromeH Graichen, H Bonel, T Stammberger, et al.Biomedizinische Technik. Biomedical Engineering|October 24, 1998
[Relevance of susceptibility-induced geometrical distortion for validity of MRI-based cartilage volume and density measurements of the knee joint]M Schnier, J Priebsch, S Faber, et al.Methods of Information in Medicine|January 1, 1997
Hybrid rendering of multidimensional image dataK H Englmeier, M Haubner, A Lösch, et al.Magnetic Resonance Imaging|January 1, 1997
A non-invasive technique for 3-dimensional assessment of articular cartilage thickness based on MRI. Part 1: Development of a computational methodA Lösch, F Eckstein, M Haubner, et al.Computer Methods and Programs in Biomedicine|June 9, 1998
VR interaction techniques for medical imaging applicationsC Krapichler, M Haubner, R Engelbrecht, et al.Pageof 360