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1.
Hot isostatic pressing as an alternative thermo-mechanical treatment for metallic full-arch implant-supported frameworks obtained by additive and subtractive manufacturing technology: Vertical and horizontal fit, screw removal torque, and stress analysis.
J Prosthodont
; 2024 Mar 21.
Artículo
en Inglés
| MEDLINE | ID: mdl-38513224
2.
Extracellular matrix-derived and low-cost proteins to improve polyurethane-based scaffolds for vascular grafts.
Sci Rep
; 12(1): 5230, 2022 03 28.
Artículo
en Inglés
| MEDLINE | ID: mdl-35347181
3.
Biological performance of a bioabsorbable Poly (L-Lactic Acid) produced in polymerization unit: in vivo studies.
F1000Res
; 10: 1275, 2021.
Artículo
en Inglés
| MEDLINE | ID: mdl-35035900
4.
Osseointegration Improvement of Co-Cr-Mo Alloy Produced by Additive Manufacturing.
Pharmaceutics
; 13(5)2021 May 14.
Artículo
en Inglés
| MEDLINE | ID: mdl-34069254
5.
An assessment of biomedical CoCrMo alloy fabricated by direct metal laser sintering technique for implant applications.
Mater Sci Eng C Mater Biol Appl
; 107: 110305, 2020 Feb.
Artículo
en Inglés
| MEDLINE | ID: mdl-31761221
6.
Cardiac tissue engineering: current state-of-the-art materials, cells and tissue formation.
Einstein (Sao Paulo)
; 16(3): eRB4538, 2018 Sep 21.
Artículo
en Inglés, Portugués
| MEDLINE | ID: mdl-30281764
7.
3D-Printed Craniosynostosis Model: New Simulation Surgical Tool.
World Neurosurg
; 109: 356-361, 2018 Jan.
Artículo
en Inglés
| MEDLINE | ID: mdl-29061457
8.
Cranial reconstruction: 3D biomodel and custom-built implant created using additive manufacturing.
J Craniomaxillofac Surg
; 42(8): 1877-84, 2014 Dec.
Artículo
en Inglés
| MEDLINE | ID: mdl-25175080
9.
Cardiac tissue engineering: current state-of-the-art materials, cells and tissue formation / Engenharia de tecidos cardíacos: atual estado da arte a respeito de materiais, células e formação tecidual
Einstein (Säo Paulo)
; 16(3): eRB4538, 2018. tab, graf
Artículo
en Inglés
| LILACS | ID: biblio-953182
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