[HTML][HTML] Ex vivo MRI cell tracking of autologous mesenchymal stromal cells in an ovine osteochondral defect model

H Markides, KJ Newell, H Rudorf, LB Ferreras… - Stem cell research & …, 2019 - Springer
Background Osteochondral injuries represent a significant clinical problem requiring novel
cell-based therapies to restore function of the damaged joint with the use of mesenchymal …

Ex vivo MRI cell tracking of autologous mesenchymal stromal cells in an ovine osteochondral defect model.

H Markides, KJ Newell, H Rudorf, LB Ferreras… - Stem Cell Research & …, 2019 - go.gale.com
Background Osteochondral injuries represent a significant clinical problem requiring novel
cell-based therapies to restore function of the damaged joint with the use of mesenchymal …

[引用][C] Ex vivo MRI cell tracking of autologous mesenchymal stromal cells in an ovine osteochondral defect model

H Markides, KJ Newell, H Rudorf… - Stem Cell Research & …, 2019 - jglobal.jst.go.jp
Ex vivo MRI cell tracking of autologous mesenchymal stromal cells in an ovine
osteochondral defect model | Article Information | J-GLOBAL Art J-GLOBAL ID:202102214304611867 …

[HTML][HTML] Ex vivo MRI cell tracking of autologous mesenchymal stromal cells in an ovine osteochondral defect model

H Markides, KJ Newell, H Rudorf… - … Cell Research & …, 2019 - stemcellres.biomedcentral.com
Osteochondral injuries represent a significant clinical problem requiring novel cell-based
therapies to restore function of the damaged joint with the use of mesenchymal stromal cells …

[HTML][HTML] Ex vivo MRI cell tracking of autologous mesenchymal stromal cells in an ovine osteochondral defect model

H Markides, KJ Newell, H Rudorf… - Stem Cell Research & …, 2019 - ncbi.nlm.nih.gov
Background Osteochondral injuries represent a significant clinical problem requiring novel
cell-based therapies to restore function of the damaged joint with the use of mesenchymal …

Ex vivo MRI cell tracking of autologous mesenchymal stromal cells in an ovine osteochondral defect model

H Markides, KJ Newell, H Rudorf… - Stem Cell Research & …, 2019 - sciprofiles.com
Osteochondral injuries represent a significant clinical problem requiring novel cell-based
therapies to restore function of the damaged joint with the use of mesenchymal stromal cells …

[PDF][PDF] Ex vivo MRI cell tracking of autologous mesenchymal stromal cells in an ovine osteochondral defect model

H Markides, KJ Newell, H Rudorf, LB Ferreras… - 2019 - core.ac.uk
Background: Osteochondral injuries represent a significant clinical problem requiring novel
cell-based therapies to restore function of the damaged joint with the use of mesenchymal …

[PDF][PDF] Ex vivo MRI cell tracking of autologous mesenchymal stromal cells in an ovine osteochondral defect model

H Markides, KJ Newell, H Rudorf, LB Ferreras… - 2019 - keele-repository.worktribe.com

Ex vivo MRI cell tracking of autologous mesenchymal stromal cells in an ovine osteochondral defect model

H Markides, KJ Newell, H Rudorf… - Stem cell research …, 2019 - pubmed.ncbi.nlm.nih.gov
Background Osteochondral injuries represent a significant clinical problem requiring novel
cell-based therapies to restore function of the damaged joint with the use of mesenchymal …

Ex vivo MRI cell tracking of autologous mesenchymal stromal cells in an ovine osteochondral defect model.

H Markides, KJ Newell, H Rudorf, LB Ferreras… - 2019 - repository.cam.ac.uk
BACKGROUND: Osteochondral injuries represent a significant clinical problem requiring
novel cell-based therapies to restore function of the damaged joint with the use of …