Human adipose–derived mesenchymal stem cell–based medical microrobot system for knee cartilage regeneration in vivo

G Go, SG Jeong, A Yoo, J Han, B Kang, S Kim… - Science Robotics, 2020 - science.org
Targeted cell delivery by a magnetically actuated microrobot with a porous structure is a
promising technique to enhance the low targeting efficiency of mesenchymal stem cell …

[PDF][PDF] Human adipose–derived mesenchymal stem cell–based medical microrobot system for knee cartilage regeneration in vivo

G Go, SG Jeong, A Yoo, J Han, B Kang, S Kim… - 2020 - researchgate.net
Targeted cell delivery by a magnetically actuated microrobot with a porous structure is a
promising technique to enhance the low targeting efficiency of mesenchymal stem cell …

Human adipose-derived mesenchymal stem cell-based medical microrobot system for knee cartilage regeneration in vivo.

G Go, SG Jeong, A Yoo, J Han, B Kang, S Kim… - Science …, 2020 - europepmc.org
Targeted cell delivery by a magnetically actuated microrobot with a porous structure is a
promising technique to enhance the low targeting efficiency of mesenchymal stem cell …

Human adipose-derived mesenchymal stem cell-based medical microrobot system for knee cartilage regeneration in vivo

G Go, SG Jeong, A Yoo, J Han, B Kang… - Science …, 2020 - pubmed.ncbi.nlm.nih.gov
Targeted cell delivery by a magnetically actuated microrobot with a porous structure is a
promising technique to enhance the low targeting efficiency of mesenchymal stem cell …

Human adipose–derived mesenchymal stem cell–based medical microrobot system for knee cartilage regeneration in vivo.

G Go, SG Jeong, A Yoo, J Han, B Kang… - Science …, 2020 - search.ebscohost.com
Targeted cell delivery by a magnetically actuated microrobot with a porous structure is a
promising technique to enhance the low targeting efficiency of mesenchymal stem cell …