An investigation into patient-specific 3D printed titanium stents and the use of etching to overcome Selective Laser Melting design constraints

Author:

McGee Orla M.,Geraghty SamORCID,Hughes Celia,Jamshidi Parastoo,Kenny Damien P.,Attallah Moataz M.,Lally CaitríonaORCID

Funder

Engineering and Physical Sciences Research Council

Science Foundation Ireland

Irish Research Council

National Children's Research Centre

Publisher

Elsevier BV

Subject

Mechanics of Materials,Biomedical Engineering,Biomaterials

Reference61 articles.

1. ANSYS Inc., “SpaceClaim.” Canonsburg, Pennsylvania, United States.

2. Patient-specific simulation of a stentless aortic valve implant: the impact of fibres on leaflet performance;Auricchio;Comput. Methods Biomech. Biomed. Eng.,2014

3. On the size and orientation effect in additive manufactured Ti-6Al-4V;Barba;Mater. Des.,2020

4. Computationally designed 3D printed self-expandable polymer stents with biodegradation capacity for minimally invasive heart valve implantation: a proof-of-concept study;Cabrera;3D Print. Addit. Manuf.,2017

5. BETA Cae Systems, “ANSA.” Luzern, Switzerland.

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