1062_INTRODUCTION TO TISSUE ENGINEERING
Course Period:FromNow ~ Any Time
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Course Intro

Course Plan

  • Tissue engineering-1 (2018-3-5)
  • Tissue engineering-2 (2018-3-12)
  • Tissue engineering-3 (2016-3-27)
  • Tissue engineering-4 (2018-4-2)
  • Tissue engineering-5 (2018-4-9)
  • A Novel Macroporous Polyvinyl Alcohol Scaffold Promotes Chondrocyte Migration and Interface Formation in an In Vitro Cartilage Defect Model
  • Adipose-Derived Stem Cells Promote Angiogenesis and Tissue Formation for In Vivo Tissue Engineering
  • Bone Regeneration in a Rabbit Critical-Sized Calvarial Model Using Tyrosine-Derived Polycarbonate Scaffolds
  • Braided Nanofibrous Scaffold for Tendon and Ligament Tissue Engineering
  • Characterization of Adipose-Derived Mesenchymal Stem Cell Combinations for Vascularized Bone Engineering
  • Chondrocyte Culture in Three Dimensional Alginate Sulfate Hydrogels Promotes Proliferation While Maintaining Expression of Chondrogenic Markers
  • Development and Characterization of Acellular Allogeneic Arterial Matrices
  • Direct Human Cartilage Repair Using Three-Dimensional Bioprinting Technology
  • Fibrin-Based Model for Cartilage Regeneration- Tissue Maturation from In Vitro to In Vivo
  • Heparin microparticle effects on presentation and bioactivity of bone morphogenetic protein-2
  • Incorporation of Aggrecan in Interpenetrating Network Hydrogels to Improve Cellular Performance for Cartilage Tissue Engineering
  • Mechanisms of Vascular Endothelial Growth Factor-Induced Pathfinding by Endothelial Sprouts in Biomaterials
  • Photofunctionalization of Alginate Hydrogels to Promote Adhesion and Proliferation of Human Mesenchymal Stem Cells
  • Restoration of Critical-Size Defects in the Rabbit Mandible Using Porous Nanohydroxyapatite-Polyamide Scaffolds
  • The promotion of functional urinary bladder regeneration using anti-inflammatory nanofibers
  • Three Different Strategies to Obtain Porous Calcium Phosphate Cements- Comparison of Performance in a Rat Skull Bone Augmentation Model
  • Ultrashort peptide nanofibrous hydrogels for the acceleration of healing of burn wounds
  • Tissue engineering-6 (2018-4-23)
  • Tissue engineering-7 (2018-4-30)
  • Tissue engineering-8 (2018-5-7)
Co-Instructor(s)
陳俊霖

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