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- Q88707766 description "2018 թվականի հունիսի 10-ին հրատարակված գիտական հոդված" @default.
- Q88707766 description "article scientifique publié en 2018" @default.
- Q88707766 description "artículu científicu espublizáu en xunu de 2018" @default.
- Q88707766 description "im Juni 2018 veröffentlichter wissenschaftlicher Artikel" @default.
- Q88707766 description "scientific article published on 10 June 2018" @default.
- Q88707766 description "wetenschappelijk artikel" @default.
- Q88707766 description "наукова стаття, опублікована в червні 2018" @default.
- Q88707766 name "Particles of vaterite, a metastable CaCO3 polymorph, exhibit high biocompatibility for human osteoblasts and endothelial cells and may serve as a biomaterial for rapid bone regeneration" @default.
- Q88707766 name "Particles of vaterite, a metastable CaCO3 polymorph, exhibit high biocompatibility for human osteoblasts and endothelial cells and may serve as a biomaterial for rapid bone regeneration" @default.
- Q88707766 type Item @default.
- Q88707766 label "Particles of vaterite, a metastable CaCO3 polymorph, exhibit high biocompatibility for human osteoblasts and endothelial cells and may serve as a biomaterial for rapid bone regeneration" @default.
- Q88707766 label "Particles of vaterite, a metastable CaCO3 polymorph, exhibit high biocompatibility for human osteoblasts and endothelial cells and may serve as a biomaterial for rapid bone regeneration" @default.
- Q88707766 prefLabel "Particles of vaterite, a metastable CaCO3 polymorph, exhibit high biocompatibility for human osteoblasts and endothelial cells and may serve as a biomaterial for rapid bone regeneration" @default.
- Q88707766 prefLabel "Particles of vaterite, a metastable CaCO3 polymorph, exhibit high biocompatibility for human osteoblasts and endothelial cells and may serve as a biomaterial for rapid bone regeneration" @default.
- Q88707766 P1433 Q88707766-696A06CF-596D-4F86-B70F-A5379A62D722 @default.
- Q88707766 P1476 Q88707766-F4162922-A2A4-4CF5-B864-1BC20F1DD981 @default.
- Q88707766 P2093 Q88707766-3EB4A2C5-D2CD-406F-AB72-D0DBD80A8DB4 @default.
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- Q88707766 P2093 Q88707766-714BD8F8-F9FF-4BEA-B765-AB6799906E6D @default.
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- Q88707766 P304 Q88707766-2115B741-B00F-44A8-A58B-081EDFE4B951 @default.
- Q88707766 P31 Q88707766-873A89F9-F722-4AF8-A4AD-7CD085A86336 @default.
- Q88707766 P356 Q88707766-FB4DFC2C-B626-4895-8F4D-CA733A6B1DC0 @default.
- Q88707766 P433 Q88707766-5D87606E-BD7F-44D8-80EA-519884ED766F @default.
- Q88707766 P478 Q88707766-3F5F57AF-3D7D-49CE-8611-4CC8A6BEBC85 @default.
- Q88707766 P50 Q88707766-71DA5CFB-B9DA-4B26-B0FB-4F1023E7C2CC @default.
- Q88707766 P50 Q88707766-DBBCDC62-FA8B-4B0F-9751-C34F3C4496CE @default.
- Q88707766 P577 Q88707766-B2CB32FD-9965-4EBD-BFAE-777307FB82B9 @default.
- Q88707766 P698 Q88707766-C8EEDAF8-0C2A-4B59-B89A-CB0FD80526C8 @default.
- Q88707766 P356 TERM.2703 @default.
- Q88707766 P698 29770592 @default.
- Q88707766 P1433 Q15746559 @default.
- Q88707766 P1476 "Particles of vaterite, a metastable CaCO3 polymorph, exhibit high biocompatibility for human osteoblasts and endothelial cells and may serve as a biomaterial for rapid bone regeneration" @default.
- Q88707766 P2093 "Hannah Pohlit" @default.
- Q88707766 P2093 "Laura Besch" @default.
- Q88707766 P2093 "Martin Panthöfer" @default.
- Q88707766 P2093 "Romina Schröder" @default.
- Q88707766 P2093 "Wilfried Roth" @default.
- Q88707766 P2093 "Wolfgang Tremel" @default.
- Q88707766 P304 "1754-1768" @default.
- Q88707766 P31 Q13442814 @default.
- Q88707766 P356 "10.1002/TERM.2703" @default.
- Q88707766 P433 "7" @default.
- Q88707766 P478 "12" @default.
- Q88707766 P50 Q66433484 @default.
- Q88707766 P50 Q88707764 @default.
- Q88707766 P577 "2018-06-10T00:00:00Z" @default.
- Q88707766 P698 "29770592" @default.