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Our research directions:
Monitor changes in 3-D microarchitecture over times in mouse and rat in vivo.
Quantify 3-D microarchitecture of bone tissues and biomaterials.
Quantify bone damage and regeneration in e.g. osteoporosis & osteoarthritis etc.
2. Semi-nano-CT sample scanner
Semi-nano-CT50 combines submicron pixel size (nanoCT) with a large field-of-view, making this system extremely versatile (SCANCO Medical AG, Switzerland). The optional sample changer accommodates up to 12 sample holders, and a filter changer offering 4 different materials can be fitted. Variable filter and X-ray power settings greatly increase the range of materials that can be scanned.
Monitor changes in 3-D microarchitecture over times in mouse and rat in vivo.
Quantify 3-D microarchitecture of bone tissues and biomaterials.
Quantify bone damage and regeneration in e.g. osteoporosis & osteoarthritis etc.
2. Semi-nano-CT sample scanner
Semi-nano-CT50 combines submicron pixel size (nanoCT) with a large field-of-view, making this system extremely versatile (SCANCO Medical AG, Switzerland). The optional sample changer accommodates up to 12 sample holders, and a filter changer offering 4 different materials can be fitted. Variable filter and X-ray power settings greatly increase the range of materials that can be scanned.
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论文共 137 篇作者统计合作学者相似作者
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Michael L.C. Beagan,Chris H. Dreyer, Louise K. Jensen,Henrik E. Jensen,Thomas E. Andersen, Soeren Overgaard,Ming Ding
Journal of Orthopaedic Translation (2024): 120-131
Li Chen,Kaikai Shi,Nicholas Ditzel,Weimin Qiu,Florence Figeac, Louise Himmelstrup Dreyer Nielsen,Michaela Tencerova,Justyna Magdalena Kowal,Ming Ding,Christina Møller Andreasen,Thomas Levin Andersen,Moustapha Kassem
Nature communicationsno. 1 (2023): 2016-14
The bone & joint journalno. 10 (2023): 1052-1059
Fredrik K. E. Guldbaek-Svensson, Mathias M. M. Thygesen, Teresa H. H. Nielsen,Trine W. W. Mikkelsen,Ming Ding,Michael Pedersen,Henrik Lauridsen
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