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Multi‐“Color” Delineation of Bone Microdamages Using Ligand‐Directed Sub‐5 nm Hafnia Nanodots and Photon Counting CT Imaging / Ostadhossein, Fatemeh (Illinois U., Urbana) ; Tripathi, Indu (Illinois U., Urbana) ; Benig, Lily (Illinois U., Urbana) ; LoBato, Denae (Illinois U., Urbana) ; Moghiseh, Mahdieh (Otago U.) ; Lowe, Chiara (Otago U.) ; Raja, Aamir (Otago U.) ; Butler, Anthony (Otago U. ; CERN) ; Panta, Raj (Otago U.) ; Anjomrouz, Marzieh (Otago U.) et al.
The early detection of bone microdamages is crucial to make informed deci-sions about the therapy and taking precautionary treatments to avoid cata-strophic fractures. Conventional computed tomography (CT) imaging faces obstacles in detecting bone microdamages due to the strong self-attenuation of photons from bone and poor spatial resolution. [...]
2019 - Published in : Advanced Functional Materials 30 (2019) 1904936

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