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Journal of Materials Science. Materials in Medicine|September 7, 2004
Mechanical properties of carbonated apatite bone mineral substitute: strength, fracture and fatigue behaviourE F Morgan, D N Yetkinler, B R Constantz, et al.
Biomaterials|January 5, 2002
Dissolution rates of carbonated hydroxyapatite in hydrochloric acidChristine R Hankermeyer, Kevin L Ohashi, David C Delaney, et al.
Frontiers in Bioengineering and Biotechnology|May 15, 2024
A bicarbonate-rich liquid condensed phase in non-saturated solutions in the absence of divalent cationsMark A Bewernitz, Matthew Ginder-Vogel, Stephan E Wolf, et al.
Biomaterials|January 5, 2002
Measurements of the solubilities and dissolution rates of several hydroxyapatitesMark T Fulmer, Ira C Ison, Christine R Hankermayer, et al.
Bone|May 1, 1997
Determining mineral content variations in bone using backscattered electron imagingR D Bloebaum, J G Skedros, E G Vajda, et al.
The Journal of Heart Valve Disease|August 18, 2004
Hemodynamic characterization of calcified stenotic human aortic valves before and after treatment with a novel aortic valve repair systemKevin L Ohashi, James Culkar, Jerome B Riebman, et al.
Acta Orthopaedica Scandinavica|June 25, 2002
Mechanical evaluation of a carbonated apatite cement in the fixation of unstable intertrochanteric fracturesDuran N Yetkinler, Stuart B Goodman, Eric S Reindel, et al.
Frontiers in Bioengineering and Biotechnology|May 15, 2024
Discovery of a hyperalkaline liquid condensed phase: significance toward applications in carbon dioxide sequestrationMark A Bewernitz, Jacob Schneider, Christopher L Camiré, et al.
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