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A. James Clark School of Engineering, University of Maryland
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TR&D 1: 3D Printed Bioreactors for Cell Culture
TR&D 2: Bioprinting Patterning for Cell-Laden Constructs
TR&D 3: Bioprinting for Complex Scaffold Fabrication
Collaborative Projects
Apply to be a CP
CP1: Joint Organ Engineering
CP2: Stereolithographic Tissue Fabrication
CP3: Multi-Material Bioprinting
CP4: Emulsion-Templated Scaffolds
CP5: 3D Printed Tooth Buds
CP6: Library of 3D Printable Multi-Functional Polyesters
CP7: Perfusable Cardiac Chamber Models
CP8: MSC Differentiation in Segmented Scaffolds
CP9: Scaffolds for EV production
CP10: Bioink Rheological Additives
CP11: Melt-Electrospinning for Heart Valves
CP12: Automation in Bioink Printability
CP13: Scaffolds for Drug Delivery
CP14: Disease Modeling of Progeria
CP15: Bioinks for Non-Invasive Monitoring
Service Projects
Apply to be an SP
SP1: Cartilage Repair Constructs
SP2: Miniaturized Tissue-Engineered Bone
SP3: Extracellular Vesicle Bioproduction
SP4: Endothelial Dysfunction in Progeria
SP5: Osteochondral Interfaces
SP6: Bioresorbable Metallic Implants
SP7: Bioreactors for Osteoblastic Maturation
SP8: Microengineered Osteons
SP9: Muscle and Nerve Regeneration
SP10: Scaffold Bioprinting
SP11: Bioprinted Human Skin
SP12: Oxygen Enhancing Microgels
SP13: Ultrasound-assisted Bioprinting
SP14: Bioreactors for Cell-Material Interactions
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