The Use of Non-Degradable Polymer (Polyetheretherketone) in Personalized Orthopedics-Review Article. [PDF]
Wielgus G, Kajzer W, Kajzer A.
europepmc +1 more source
The Effect of Heat Treatment and Soaking in PBS Solution on the Strength Properties of PEEK Intended for Use in Orthopedics. [PDF]
Wielgus G +5 more
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Surface Modification of Polyetheretherketone (PEEK) via Femtosecond Laser Microprocessing for Enhanced Bioactivity: A Preliminary Study. [PDF]
Angelova L +3 more
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Comparative Study of Computer-Aided Designed PEEK Implants Versus Autologous Bone Flap in Cranioplasty: Clinical Efficacy and Medical Economics Analysis. [PDF]
Sun X, Ma C, Zhan M, Zhang Z, Zhan R.
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Retentive Value and Cyclic Fatigue Resistance of Polyetheretherketone Clasps as an Alternative to Cobalt-Chrome Clasps for Removable Partial Dentures: A Systematic Review. [PDF]
Al-Banyahyati I +4 more
europepmc +1 more source
Biomechanical effect of implant thickness and screw diameter on CFR-PEEK subperiosteal implants: a three-dimensional finite element analysis. [PDF]
Etik E, Keskin Yalcin B.
europepmc +1 more source
Optimizing resin bonding to saliva-contaminated polyetheretherketone: comparative efficacy of cleaning methods. [PDF]
Lu ZC +5 more
europepmc +1 more source
Use of Double Cages for Biportal Endoscopic Transforaminal Lumbar Interbody Fusion: A Comparison of 3-Dimensional-Printed Titanium and Polyetheretherketone Cages. [PDF]
Lee DH +9 more
europepmc +1 more source
Related searches:
Polyetheretherketone (PEEK) and carbon-fiber-reinforced PEEK (CFR-PEEK) have been successfully used in the field of orthopedic implants. The polymers PEEK and CFR-PEEK are resistant to fatigue strain and radiologically transparent. These have mechanical properties and are therefore suitable for a range of orthopedic applications.
Yong-Gon Koh +2 more
exaly +3 more sources

