Wykaz publikacji wybranego autora

Dominika Siek, mgr inż.

doktorant

Wydział Inżynierii Materiałowej i Ceramiki
WIMiC-kcmo, Katedra Ceramiki i Materiałów Ogniotrwałych


Identyfikatory Autora

ORCID: 0000-0002-3215-7147 połącz konto z ORCID

ResearcherID: brak

Scopus: 55123190300



Statystyka obejmuje publikacje afiliowane AGH od 2008 roku włącznie

typ publikacji
rocznikl. publ.książkifragm.referatyartykułypatentymapyred. czas.inne
ogółem513120
2018211
2017523
2016844
20151082
2014633
2013321
20121385
2011431
język publikacji
rocznikrazempolskojęzyczneanglojęzycznepozostałe języki
ogółem512427
201822
201755
201688
20151010
201466
2013312
201213175
2011413
kraj wydania
rocznikrazempubl. krajowepubl. zagraniczne
ogółem513417
201822
2017523
2016862
20151091
2014624
201333
201213103
2011422
Lista Filadelfijska
rocznikrazempubl. z LFpubl. pozostałe
ogółem511041
2018211
2017532
2016817
20151019
2014624
2013312
201213112
201144
punktacja MNiSW
rocznikrazempubl. z pkt. MNiSWpubl. pozostałe
ogółem511140
2018211
2017532
2016817
20151028
2014615
2013312
201213211
201144
publikacje recenzowane
rocznikrazempubl. recenzowanepubl. nierecenzowane
ogółem511833
2018211
2017532
2016826
20151028
2014633
2013312
20121358
2011413



1
  • A comparative study of chemically bonded calcium phosphate based bioceramics
2
  • A comparative study of chemically bonded calcium phosphate based bioceramics
3
  • $\alpha$TCP based bone cements with silver-doped hydroxyapatite and CaCO3
4
  • $\alpha$-TCP-chitosan based composite as a new bone implant material
5
  • Antibacterial hybrid material for bone regeneration
6
7
  • Bioceramic bone cements
8
  • Bioceramic bone cements
9
  • Biodegradable cement type bone implant materials based on calcium phosphates and calcium sulphate
10
  • Biphasic bone cements with antibacterial potential
11
  • Cement-type implant material based on Ca and Mg phosphates with adjustable setting time and improved resorption
12
  • Characterization of the novel calcium sulphate ${Mg}$-hydroxyapatite bone cement
13
  • Chemically bonded, calcium phosphate based bioceramics with addition of calcium sulphate
14
  • Chitosan solution as the effective liquid phase for composite-type bone cements
15
  • Comparative evaluation of calcium phosphate-based bone substitutes
16
  • Cytocompatibility of the selected calcium phosphate based bone cements: comparative study in human cell culture
17
  • Development and characterization of new calcium phosphate cements on the basis of alfa-TCP
18
  • Development of the novel A-TCP – CSH based bone cements
19
  • Effect of liquid phase on the basic properties of chemically bonded material
20
  • Evaluation on antibacterial activity and cytocompatibility of $\alpha-TCP$ based bone cements with silver-doped hydroxyapatite and $CaCO_{3}$
21
  • How calcite and modified hydroxyapatite influence physicochemical properties and cytocompatibility of alpha-TCP based bone cements
22
  • Hydroxyapatite-chitosan based bioactive hybrid biomaterials with improved mechanical strength
23
  • In vitro bioactivity studies of bone substitutes based on titanium or magnesium doped hydroxyapatite and calcium sulfate
24
  • Influence of liquid phase on the physicochemical properties of calcium phosphate based bone cement
25
  • Influence of magnesium and silver ions on rheological properties of hydroxyapatite/chitosan/calcium sulphate based bone cements