Estefania Echeverri Correa
Postdoktor vid Institutionen för kirurgiska vetenskaper; Ortopedi och Handkirurgi
- E-post:
- estefania.echeverri@uu.se
- Besöksadress:
- Akademiska sjukhuset, ingång 61, 6 tr
751 85 UPPSALA - Postadress:
- Akademiska sjukhuset, ingång 61, 6 tr
751 85 UPPSALA

Publikationer
Senaste publikationer
Ingår i Next Materials, 2024
- DOI för The addition of silicon nitride to PMMA bone cements reduces bacterial attachment while supporting pre-osteoblast viability
- Ladda ner fulltext (pdf) av The addition of silicon nitride to PMMA bone cements reduces bacterial attachment while supporting pre-osteoblast viability
In vitro cell study of calcium phosphate cement-PLLA models for hard-tissue implants
2024
2024
Biological response to spinal implant degradation products
2024
Ingår i Biomaterials Science, s. 3144-3158, 2023
- DOI för Fe and C additions decrease the dissolution rate of silicon nitride coatings and are compatible with microglial viability in 3D collagen hydrogels
- Ladda ner fulltext (pdf) av Fe and C additions decrease the dissolution rate of silicon nitride coatings and are compatible with microglial viability in 3D collagen hydrogels
Alla publikationer
Artiklar i tidskrift
Ingår i Next Materials, 2024
- DOI för The addition of silicon nitride to PMMA bone cements reduces bacterial attachment while supporting pre-osteoblast viability
- Ladda ner fulltext (pdf) av The addition of silicon nitride to PMMA bone cements reduces bacterial attachment while supporting pre-osteoblast viability
Ingår i Biomaterials Science, s. 3144-3158, 2023
- DOI för Fe and C additions decrease the dissolution rate of silicon nitride coatings and are compatible with microglial viability in 3D collagen hydrogels
- Ladda ner fulltext (pdf) av Fe and C additions decrease the dissolution rate of silicon nitride coatings and are compatible with microglial viability in 3D collagen hydrogels
Ingår i Biomaterials Science, s. 3757-3769, 2022
- DOI för Tailoring the dissolution rate and in vitro cell response of silicon nitride coatings through combinatorial sputtering with chromium and niobium
- Ladda ner fulltext (pdf) av Tailoring the dissolution rate and in vitro cell response of silicon nitride coatings through combinatorial sputtering with chromium and niobium
Ingår i Biomaterials Science
Doktorsavhandlingar, sammanläggning
Konferensbidrag
In vitro cell study of calcium phosphate cement-PLLA models for hard-tissue implants
2024
2024
Ingår i TERMIS 2023 – European ChapterManchester Central Conference Centre Manchester, UK March 28–31, 2023, 2023
2023
2023
2022
2022
Dissolution and biocompatibility of combinatorially sputtered SiCrNbN coatings
2021