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Bio-Medical Materials and Engineering|January 15, 2015
Biologic properties of nano-hydroxyapatite: An in vivo study of calvarial defects, ectopic bone formation and bone implantationKang-Mi Pang, Jeong-Keun Lee, Young-Kwon Seo, et al.Biomaterials|December 11, 2013
The effect of dose on rhBMP-2 signaling, delivered via collagen sponge, on osteoclast activation and in vivo bone resorptionRi Youn Kim, Ji Hye Oh, Beom Seok Lee, et al.Journal of Dermatological Science|October 20, 2010
Application of mesenchymal stem cells derived from bone marrow and umbilical cord in human hair multiplicationBo-Young Yoo, Youn-Ho Shin, Hee-Hoon Yoon, et al.International Journal of Molecular Sciences|January 30, 2020
Extremely Low-Frequency Electromagnetic Fields Increase the Expression of Anagen-Related Molecules in Human Dermal Papilla Cells via GSK-3β/ERK/Akt Signaling PathwayGa-Eun Ki, Yu-Mi Kim, Han-Moi Lim, et al.Applied Biochemistry and Biotechnology|July 16, 2015
Overexpressed Calponin3 by Subsonic Vibration Induces Neural Differentiation of hUC-MSCs by Regulating the Ionotropic Glutamate ReceptorHyun-Jung Kim, Jin-Hee Kim, Yeo-Ju Song, et al.Biotechnology Progress|August 1, 2012
Neural stimulation on human bone marrow-derived mesenchymal stem cells by extremely low frequency electromagnetic fieldsHyunjin Cho, Young-Kwon Seo, Hee-Hoon Yoon, et al.Bioelectromagnetics|March 19, 2016
Schwann-like cells differentiated from human dental pulp stem cells combined with a pulsed electromagnetic field can improve peripheral nerve regenerationWei-Hong Hei, Soochan Kim, Joo-Cheol Park, et al.The International Journal of Neuroscience|October 2, 2014
Co-treatment effect of pulsed electromagnetic field (PEMF) with human dental pulp stromal cells and FK506 on the regeneration of crush injured rat sciatic nerveYoon-Tae Kim, Wei-Hong Hei, Soochan Kim, et al.Journal of Bone and Mineral Metabolism|October 22, 2016
Local delivery of recombinant human FGF7 enhances bone formation in rat mandible defectsSher Bahadur Poudel, Govinda Bhattarai, Jae-Hwan Kim, et al.Bone|September 11, 2016
COMP-Ang1 prevents periodontitic damages and enhances mandible bone growth in an experimental animal modelGovinda Bhattarai, Sung-Ho Kook, Jae-Hwan Kim, et al.Pageof 9