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3D cellular alignment and biomimetic mechanical stimulation enhance human adipose-derived stem cell myogenesis
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E. Ergene Et Al. , "3D cellular alignment and biomimetic mechanical stimulation enhance human adipose-derived stem cell myogenesis," BIOMEDICAL MATERIALS , vol.15, no.5, 2020

Ergene, E. Et Al. 2020. 3D cellular alignment and biomimetic mechanical stimulation enhance human adipose-derived stem cell myogenesis. BIOMEDICAL MATERIALS , vol.15, no.5 .

Ergene, E., Bilecen, D. S., KAYA, B., HURİ, P., & HASIRCI, V. N., (2020). 3D cellular alignment and biomimetic mechanical stimulation enhance human adipose-derived stem cell myogenesis. BIOMEDICAL MATERIALS , vol.15, no.5.

Ergene, Emre Et Al. "3D cellular alignment and biomimetic mechanical stimulation enhance human adipose-derived stem cell myogenesis," BIOMEDICAL MATERIALS , vol.15, no.5, 2020

Ergene, Emre Et Al. "3D cellular alignment and biomimetic mechanical stimulation enhance human adipose-derived stem cell myogenesis." BIOMEDICAL MATERIALS , vol.15, no.5, 2020

Ergene, E. Et Al. (2020) . "3D cellular alignment and biomimetic mechanical stimulation enhance human adipose-derived stem cell myogenesis." BIOMEDICAL MATERIALS , vol.15, no.5.

@article{article, author={Emre Ergene Et Al. }, title={3D cellular alignment and biomimetic mechanical stimulation enhance human adipose-derived stem cell myogenesis}, journal={BIOMEDICAL MATERIALS}, year=2020}