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Measuring discomfort—An objective method for quantifying peak pressure discomfort and improved fit in adults with transtibial amputation.
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Long-term reproducibility of opportunistically assessed vertebral bone mineral density and texture features in routine clinical multi-detector computed tomography using an automated segmentation framework.
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Form exploration on different fabrics using material extrusion based additive manufacturing and end users experience.
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Gender-, Age- and Region-Specific Characterization of Vertebral Bone Microstructure Through Automated Segmentation and 3D Texture Analysis of Routine Abdominal CT.
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Finite element analysis of osteoporotic and osteoblastic vertebrae and its association with the proton density fat fraction from chemical shift encoding-based water-fat MRI – a preliminary study.
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Associations of Texture Features of Proton Density Fat Fraction Maps between Lumbar Vertebral Bone Marrow and Paraspinal Musculature.
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Patient-Specific Finite Element Modeling of the Whole Lumbar Spine Using Clinical Routine Multi-Detector Computed Tomography (MDCT) Data—A Pilot Study.
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Imaging of the Osteoporotic Spine – Quantitative Approaches in Diagnostics and for the Prediction of the Individual Fracture Risk: Bildgebung der osteoporotischen Wirbelsäule – quantitative Ansätze für die Diagnostik und Abschätzung des individuellen Frakturrisikos.
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A Guidewire Management Device. (Patentnummer
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Device for Skin Biopsy. (Patentnummer
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Motion Compensation Platform for Image Guided Percutaneous Access to Bodily Organs and Structures. (Patentnummer
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Feasibility of opportunistic osteoporosis screening in routine contrast-enhanced Multi-Detector Computed Tomography using texture analysis.
Osteoporosis International,
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