Featured Publications
Biocompatibility of platinum-based bulk metallic glass in orthopedic applications
Loye AM, Kwon HK, Dellal D, Ojeda R, Lee S, Davis R, Nagle N, Doukas PG, Schroers J, Lee FY, Kyriakides TR. Biocompatibility of platinum-based bulk metallic glass in orthopedic applications. Biomedical Materials 2021, 16: 045018. PMID: 33873168, DOI: 10.1088/1748-605x/abf981.Peer-Reviewed Original ResearchConceptsBulk metallic glassPt-BMGPlatinum-based bulk metallic glassMetallic glassesConventional metallic implantsCorrosion resistanceHigh strengthMechanical testingOrthopedic applicationsBone applicationsMetallic implantsMicro-computed tomographyAmorphous metalsTitaniumWearBiocompatibilitySimilar biocompatibilityFurther processingGlassDuctilityNanopatternsNanoscaleApplicationsMesenchymal stem cellsStrength
2017
Additive manufacturing of hydrogel-based materials for next-generation implantable medical devices
Yin Chin S, Cheung Poh Y, Kohler AC, Compton JT, Hsu LL, Lau KM, Kim S, Lee BW, Lee FY, Sia SK. Additive manufacturing of hydrogel-based materials for next-generation implantable medical devices. Science Robotics 2017, 2 PMID: 31289767, PMCID: PMC6615760, DOI: 10.1126/scirobotics.aah6451.Peer-Reviewed Original ResearchNext-generation implantable medical devicesFast manufacturing methodSustained power supplyImplantable microdevicesImplantable medical devicesUnique mechanical propertiesTens of micronsAdditive manufacturingPrecise actuationMechanical propertiesPower supplyManufacturing methodsHydrogel componentsBiocompatible materialsLimited biocompatibilityMicrodevicesMedical devicesDiffusive propertiesDelivery of payloadsWide rangeBiocompatibilityLocking mechanismDevicesStatic componentMaterials