Effect of particle size of metastable calcium phosphates on mechanical strength of a novel self-setting bioactive calcium phosphate cement

scientific article published in January 1995

Effect of particle size of metastable calcium phosphates on mechanical strength of a novel self-setting bioactive calcium phosphate cement is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1002/JBM.820290105
P698PubMed publication ID7713955

P2093author name stringY Matsuda
J L Fox
M Otsuka
W I Higuchi
Y Suwa
P2860cites workA novel skeletal drug delivery system for anti-bacterial drugs using self-setting hydroxyapatite cementQ43885051
P433issue1
P304page(s)25-32
P577publication date1995-01-01
P1433published inJournal of Biomedical Materials Research Part BQ6294852
P1476titleEffect of particle size of metastable calcium phosphates on mechanical strength of a novel self-setting bioactive calcium phosphate cement
P478volume29

Reverse relations

cites work (P2860)
Q81718652Alkali ion substituted calcium phosphate cement formation from mechanically activated reactants
Q45810325Calcium Orthophosphate Cements and Concretes.
Q45153752Evaluation of calcium phosphates and experimental calcium phosphate bone cements using osteogenic cultures
Q33534998In vitro dissolution and mechanical behavior of c-axis preferentially oriented hydroxyapatite thin films fabricated by pulsed laser deposition
Q44068893Influence of cosolvents and in situ forming hydroxyapatite on the mechanical characteristics of collagen films
Q44062465Polymer--calcium phosphate cement composites for bone substitutes
Q37211690Self-Setting Calcium Phosphate Cements with Tunable Antibiotic Release Rates for Advanced Antimicrobial Applications
Q28659431Self-setting calcium orthophosphate formulations
Q74684930Surface properties of calcium phosphate particles for self setting bone cements
Q44535499The exothermal behavior in the hydration process of calcium phosphate cement

Search more.