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Carbonated calcium phosphate/Total:MFr:Pt:Calculus:Qn
Known as:
??? ?? ???:????:????:??:??
, Fosfato di calcio carbonato/Totale:MFr:Pt:Calcolo:Qn
, Karbonatlanm?? kalsiyum fosfat/Total:KütlFr:Zml?:Ta?:Kant
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National Institutes of Health
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Related topics
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7 relations
Calcium
Calculi
Chemical procedure
Mass fraction
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Papers overview
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Highly Cited
2009
Highly Cited
2009
An Effective Morphology Control of Hydroxyapatite Crystals via Hydrothermal Synthesis
Inés S. Neira
,
Yury V. Kolen’ko
,
+4 authors
M. Yoshimura
2009
Corpus ID: 55344402
A facile urea-assisted hydrothermal synthesis and systematic characterization of hydroxyapatite (HA) with calcium nitrate…
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Highly Cited
2006
Highly Cited
2006
From brittle to ductile fracture of bone
H. Peterlik
,
P. Roschger
,
K. Klaushofer
,
P. Fratzl
Nature Materials
2006
Corpus ID: 20836208
Toughness is crucial to the structural function of bone. Usually, the toughness of a material is not just determined by its…
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Highly Cited
2006
Highly Cited
2006
Mineralization of hydroxyapatite in electrospun nanofibrous poly(L-lactic acid) scaffolds.
Jinglu Chen
,
B. Chu
,
B. Hsiao
Journal of Biomedical Materials Research. Part A
2006
Corpus ID: 27979737
A highly porous electrospun poly(L-lactic acid) (PLLA) nanofibrous scaffold was used as a matrix for mineralization of…
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Highly Cited
2002
Highly Cited
2002
Structural evolution of sol-gel-derived hydroxyapatite.
Dean‐Mo Liu
,
Quanzu Yang
,
T. Troczynski
,
W. Tseng
Biomaterials
2002
Corpus ID: 39258351
Highly Cited
2002
Highly Cited
2002
Mechanochemical-hydrothermal synthesis of carbonated apatite powders at room temperature.
W. Suchanek
,
P. Shuk
,
K. Byrappa
,
R. Riman
,
K. Tenhuisen
,
V. Janas
Biomaterials
2002
Corpus ID: 13729177
Highly Cited
2001
Highly Cited
2001
Raman Spectroscopic Detection of Changes in Bioapatite in Mouse Femora as a Function of Age and In Vitro Fluoride Treatment
John J. Freeman
,
B. Wopenka
,
Matthew J. Silva
,
J. Pasteris
Calcified Tissue International
2001
Corpus ID: 2275413
Laser Raman microprobe spectroscopy, which characterizes the molecular structure of a mineral, was used to analyze…
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Highly Cited
2001
Highly Cited
2001
Biologically and chemically optimized composites of carbonated apatite and polyglycolide as bone substitution materials.
W. Linhart
,
F. Peters
,
+5 authors
M. Epple
Journal of Biomedical Materials Research
2001
Corpus ID: 32704851
We report on the development and characterization of a new composite material consisting of amorphous carbonated apatite, Ca(5…
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Highly Cited
2000
Highly Cited
2000
Growth of continuous bonelike mineral within porous poly(lactide-co-glycolide) scaffolds in vitro.
W. Murphy
,
D. Kohn
,
D. Mooney
Journal of Biomedical Materials Research
2000
Corpus ID: 12964365
Strategies to engineer bone have focused on the use of natural or synthetic degradable materials as scaffolds for cell…
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Highly Cited
1997
Highly Cited
1997
Characterization of hydroxyapatite and carbonated apatite by photo acoustic FTIR spectroscopy
I. Rehman
,
William Bonfield
Journal of materials science. Materials in…
1997
Corpus ID: 20424916
An understanding of the interfacial relationship between a bioceramic implant and the adjacent bonet issue is facilitated by…
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Highly Cited
1988
Highly Cited
1988
Band structure of carbonated amorphous silicon studied by optical, photoelectron, and x-ray spectroscopy.
I. SolomonI
,
Schmidt Mp
,
C. Sénémaud
,
M. DrissKhodja
Physical Review B (Condensed Matter)
1988
Corpus ID: 28823478
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