Yongdoo Park

Yongdoo Park

Department of Biomedical Sciences, Korea University

Affiliated withKorea UniversityKorea University

Research Area

Biography

Yongdoo Park has not added Biography.
If you are Yongdoo Park and would like to personalize this page please email our Author Liaison for assistance.

JoVE Journal Publications

ArticleTotal : 1
Year
Traction Microscopy Integrated with Microfluidics for Chemotactic Collective Migration
Publication title

Cited by 3

2019

Other Publications

Article
Year
Photopolymerized check valve and its integration into a pneumatic pumping system for biocompatible sample delivery.

Lab on a chip| PubMed ID: 16874384

2006
2007
2009
2008
Microfluidic chip-based fabrication of PLGA microfiber scaffolds for tissue engineering.

Langmuir : the ACS journal of surfaces and colloids| PubMed ID: 18512874

2008
Hydrophilic electrospun polyurethane nanofiber matrices for hMSC culture in a microfluidic cell chip.

Journal of biomedical materials research. Part A| PubMed ID: 18546183

2009
2009
Regeneration of ischemic heart using hyaluronic acid-based injectable hydrogel.

Journal of biomedical materials research. Part B, Applied biomaterials| PubMed ID: 19399850

2009
2010
2010
2010
2010
2010
2010
2011
2011
2013
2014
2014
2014
Effect of bone marrow-derived stem cells and bone morphogenetic protein-2 on treatment of osteoradionecrosis in a rat model.

Journal of cranio-maxillo-facial surgery : official publication of the European Association for Cranio-Maxillo-Facial Surgery| PubMed ID: 26220883

2015
2016
2016
2017
2016
2017
2017
Rabbit Calvarial Defect Model for Customized 3D-Printed Bone Grafts.

Tissue engineering. Part C, Methods| PubMed ID: 29466922

2018
2018
2016
Fabrication of Microchannels and Evaluation of Guided Vascularization in Biomimetic Hydrogels.

Tissue engineering and regenerative medicine| PubMed ID: 30603564

2018
2018
Development and Evaluation of Hyaluronic Acid-Based Hybrid Bio-Ink for Tissue Regeneration.

Tissue engineering and regenerative medicine| PubMed ID: 30603594

2018
Evaluation of mechanical strength and bone regeneration ability of 3D printed kagome-structure scaffold using rabbit calvarial defect model.

Materials science & engineering. C, Materials for biological applications| PubMed ID: 30813102

2019
2019
2019