Micromachines · 2019 · 36 citations · 21 references
EngineeringBiomimetic MaterialsPangolin ScalesMechanical EngineeringBiofabricationBiomedical EngineeringLong-pulse Laser InspiredStainless Steel 316LMaterials ScienceLaser Processing TechnologySurface TreatmentLaser-assisted DepositionAdvanced Laser ProcessingMicrofabricationElectrosurgical BladeAdhesive MaterialWound HealingLaser-surface InteractionsStructural Adhesive
The electrosurgical blade is the most common invasive surgical instrument in a cutting and hemostasis process; however, the blade easily leads to the adhesion of overheated soft tissues on the blades and induces a potential danger for the patients. To minimize the adhesive tissues, we proposed the one-step surface texturing method to fabricate anti-adhesive biomimetic scales on stainless steel 316L rapidly based on the self-organized surface microstructures induced by the long-pulse fiber laser, which was inspired by the excellent performances of anti-adhesion and anti-friction in the pangolin scales. The optimal formation parameters, chemical components, and crystal structures of the laser-induced self-organized surface microstructures were investigated in the experiments. Moreover, the underlying formation mechanism was revealed. The electrosurgical blades with biomimetic scales have hydrophobicity and a smaller frictional coefficient, which effectively reduced the adhesion of soft tissue.
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Contemporary Implant Dentistry
Carl E. Misch · Implant Dentistry · 1999 · 453 citations
Controlled nanostructrures formation by ultra fast laser pulses for color marking
Benjamin Dusser, Z. Sagan, H. Soder et al. · Optics Express · 2010 · 385 citations · Full text