Electrical stimulation modulates osteoblast proliferation and bone protein production through heparin‐bioactivated conductive scaffolds

S Meng, M Rouabhia, Z Zhang - Bioelectromagnetics, 2013 - Wiley Online Library
Electrical fields are known to interact with human cells. This principle has been explored to
regulate cellular activities for bone tissue regeneration. In this work, Saos‐2 cells were …

Electrical stimulation modulates osteoblast proliferation and bone protein production through heparin-bioactivated conductive scaffolds

S Meng, M Rouabhia, Z Zhang - Bioelectromagnetics, 2013 - pubmed.ncbi.nlm.nih.gov
Electrical fields are known to interact with human cells. This principle has been explored to
regulate cellular activities for bone tissue regeneration. In this work, Saos-2 cells were …

Electrical stimulation modulates osteoblast proliferation and bone protein production through heparin‐bioactivated conductive scaffolds

S Meng, M Rouabhia, Z Zhang - Bioelectromagnetics, 2013 - infona.pl
Electrical fields are known to interact with human cells. This principle has been explored to
regulate cellular activities for bone tissue regeneration. In this work, Saos‐2 cells were …

Electrical stimulation modulates osteoblast proliferation and bone protein production through heparin-bioactivated conductive scaffolds.

S Meng, M Rouabhia, Z Zhang - Bioelectromagnetics, 2012 - europepmc.org
Electrical fields are known to interact with human cells. This principle has been explored to
regulate cellular activities for bone tissue regeneration. In this work, Saos-2 cells were …

[引用][C] Electrical stimulation modulates osteoblast proliferation and bone protein production through heparin-bioactivated conductive scaffolds

S Meng, M Rouabhia, Z Zhang - Bioelectromagnetics, 2012 - cir.nii.ac.jp
Electrical stimulation modulates osteoblast proliferation and bone protein production through
heparin-bioactivated conductive scaffolds | CiNii Research CiNii 国立情報学研究所 学術情報 …