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David L. Safranski
David L. Safranski
Research Leader, Enovis
Verified email at enovis.com
Title
Cited by
Cited by
Year
Strong, Tailored, Biocompatible Shape‐Memory Polymer Networks
CM Yakacki, R Shandas, D Safranski, AM Ortega, K Sassaman, K Gall
Advanced functional materials 18 (16), 2428-2435, 2008
4042008
Effect of chemical structure and crosslinking density on the thermo-mechanical properties and toughness of (meth) acrylate shape memory polymer networks
DL Safranski, K Gall
Polymer 49 (20), 4446-4455, 2008
2902008
High-strength, surface-porous polyether-ether-ketone for load-bearing orthopedic implants
NT Evans, FB Torstrick, CSD Lee, KM Dupont, DL Safranski, WA Chang, ...
Acta biomaterialia 13, 159-167, 2015
1992015
Fatigue behavior of As-built selective laser melted titanium scaffolds with sheet-based gyroid microarchitecture for bone tissue engineering
CN Kelly, J Francovich, S Julmi, D Safranski, RE Guldberg, HJ Maier, ...
Acta biomaterialia 94, 610-626, 2019
1982019
Porous PEEK improves the bone-implant interface compared to plasma-sprayed titanium coating on PEEK
FB Torstrick, ASP Lin, D Potter, DL Safranski, TA Sulchek, K Gall, ...
Biomaterials 185, 106-116, 2018
1862018
Effect of porous orthopaedic implant material and structure on load sharing with simulated bone ingrowth: A finite element analysis comparing titanium and PEEK.
RD Carpenter, BS Klosterhoff, FB Torstrick, KT Foley, JK Burkus, CSD Lee, ...
Journal of the mechanical behavior of biomedical materials 80, 68-76, 2018
1102018
The effect of surface topography and porosity on the tensile fatigue of 3D printed Ti-6Al-4V fabricated by selective laser melting
CN Kelly, NT Evans, CW Irvin, SC Chapman, K Gall, DL Safranski
Materials Science and Engineering: C 98, 726-736, 2019
972019
Solvent-driven temperature memory and multiple shape memory effects
R Xiao, J Guo, DL Safranski, TD Nguyen
Soft matter 11 (20), 3977-3985, 2015
902015
Getting PEEK to Stick to Bone: The Development of Porous PEEK for Interbody Fusion Devices
FB Torstrick, DL Safranski, JK Burkus, JL Chappuis, CSD Lee, ...
Techniques in Orthopaedics 32 (3), 158-166, 2017
802017
Fatigue of injection molded and 3D printed polycarbonate urethane in solution
AT Miller, DL Safranski, KE Smith, DG Sycks, RE Guldberg, K Gall
Polymer 108, 121-134, 2017
772017
Impaction durability of porous polyether-ether-ketone (PEEK) and titanium-coated PEEK interbody fusion devices
FB Torstrick, BS Klosterhoff, LE Westerlund, KT Foley, J Gochuico, ...
The Spine Journal 18 (5), 857-865, 2018
632018
Deformation and fatigue of tough 3D printed elastomer scaffolds processed by fused deposition modeling and continuous liquid interface production
AT Miller, DL Safranski, C Wood, RE Guldberg, K Gall
Journal of the Mechanical Behavior of Biomedical Materials 75, 1-13, 2017
632017
Mechanical Requirements of Shape-Memory Polymers in Biomedical Devices
DL Safranski, KE Smith, K Gall
Polymer Reviews 53 (1), 76-91, 2013
632013
Designing Biodegradable Shape Memory Polymers for Tissue Repair
H Ramaraju, RE Akman, DL Safranski, SJ Hollister
Advanced Functional Materials 30 (44), 2002014, 2020
562020
Impact of surface porosity and topography on the mechanical behavior of high strength biomedical polymers
NT Evans, CW Irvin, DL Safranski, K Gall
Journal of the Mechanical Behavior of Biomedical Materials 59, 459-473, 2016
512016
Shape-Memory Polymer Device Design
DL Safranski, JC Griffis
Elsevier, 2017
482017
Use of 3D Printed Bone Plate in Novel Technique to Surgically Correct Hallux Valgus Deformities
KE Smith, KM Dupont, DL Safranski, JW Blair, DR Buratti, V Zeetser, ...
Techniques in Orthopaedics 31 (3), 181-189, 2016
402016
Effects of Surface Topography and Chemistry on Polyether-Ether-Ketone (PEEK) and Titanium Osseointegration
FB Torstrick, ASP Lin, DL Safranski, D Potter, T Sulchek, CSD Lee, K Gall, ...
Spine 45 (8), E417-E424, 2020
372020
Pseudoelastic NiTiNOL in Orthopaedic Applications
D Safranski, K Dupont, K Gall
Shape Memory and Superelasticity, 2020
372020
Extendable self-supporting material composites and manufacture thereof
DA Gray, RM Hume, DL Safranski
US Patent 9,427,945, 2016
372016
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