ECHO, the executable CHOndrocyte: A computational model to study articular chondrocytes in health and disease
Stefano Schivo(University of Twente), Janine N. Post(University of Twente), Rom Langerak(University of Twente), Leilei Zhong(University of Pennsylvania), Jetse Scholma(University of Twente), Liesbet Geris(Prometheus Research (United States)), Xiaobin Huang(Beijing University of Chinese Medicine), Sakshi Khurana(University of Twente), Kannan Govindaraj(University of Twente), Johan Kerkhofs(University of Liège), André J. van Wijnen(University of Vermont), Marcel Karperien(University of Twente), Jaco van de Pol(University of Twente)
Cited by 18
Related Papers
Quantum dot ligands provide new insights into erbB/HER receptor–mediated signal transduction
|Nature Biotechnology|2004|834
The ‘Digital Twin’ to enable the vision of precision cardiology
|European Heart Journal|2020|811
Trophic Effects of Mesenchymal Stem Cells Increase Chondrocyte Proliferation and Matrix Formation
|Tissue Engineering Part A|2011|266
The Bone-specific Expression of Runx2 Oscillates during the Cell Cycle to Support a G1-related Antiproliferative Function in Osteoblasts
|Journal of Biological Chemistry|2005|243
Gene expression profiling of dedifferentiated human articular chondrocytes in monolayer culture
|Osteoarthritis and Cartilage|2013|192