3D-printed pHEMA materials for topographical and biochemical modulation of dorsal root ganglion cell response

A Badea, JM McCracken, EG Tillmaand… - … applied materials & …, 2017 - ACS Publications
Understanding and controlling the interactions occurring between cells and engineered
materials are central challenges toward progress in the development of biomedical devices …

[PDF][PDF] 3D-Printed pHEMA Materials for Topographical and Biochemical Modulation of Dorsal Root Ganglion Cell Response

A Badea, JM McCracken, EG Tillmaand… - ACS Applied Materials …, 2017 - par.nsf.gov
Understanding and controlling the interactions occurring between cells and engineered
materials are central challenges towards progress in the development of biomedical …

3D-Printed pHEMA Materials for Topographical and Biochemical Modulation of Dorsal Root Ganglion Cell Response.

A Badea, JM McCracken, EG Tillmaand… - … Applied Materials & …, 2017 - europepmc.org
Understanding and controlling the interactions occurring between cells and engineered
materials are central challenges towards progress in the development of biomedical …

[引用][C] 3D-Printed pHEMA Materials for Topographical and Biochemical Modulation of Dorsal Root Ganglion Cell Response

A Badea, JM McCracken, EG Tillmaand… - ACS Applied Materials …, 2017 - cir.nii.ac.jp
3D-Printed pHEMA Materials for Topographical and Biochemical Modulation of Dorsal Root
Ganglion Cell Response | CiNii Research CiNii 国立情報学研究所 学術情報ナビゲータ[サイニィ] …

3D-Printed pHEMA Materials for Topographical and Biochemical Modulation of Dorsal Root Ganglion Cell Response

A Badea, JM McCracken, EG Tillmaand… - ACS Applied …, 2017 - experts.illinois.edu
Understanding and controlling the interactions occurring between cells and engineered
materials are central challenges toward progress in the development of biomedical devices …

3D-Printed pHEMA Materials for Topographical and Biochemical Modulation of Dorsal Root Ganglion Cell Response

A Badea, JM McCracken, EG Tillmaand… - ACS Applied Materials …, 2017 - osti.gov
Understanding and controlling the interactions occurring between cells and engineered
materials are central challenges toward progress in the development of biomedical devices …

[PDF][PDF] 3D-Printed pHEMA Materials for Topographical and Biochemical Modulation of Dorsal Root Ganglion Cell Response

A Badea, JM McCracken, EG Tillmaand, ME Kandel… - 2017 - phioptics.com
Understanding and controlling the interactions occurring between cells and engineered
materials are central challenges toward progress in the development of biomedical devices …

[HTML][HTML] 3D-Printed pHEMA Materials for Topographical and Biochemical Modulation of Dorsal Root Ganglion Cell Response

A Badea, JM McCracken, EG Tillmaand… - … applied materials & …, 2017 - ncbi.nlm.nih.gov
Understanding and controlling the interactions occurring between cells and engineered
materials are central challenges towards progress in the development of biomedical …

3D-Printed pHEMA Materials for Topographical and Biochemical Modulation of Dorsal Root Ganglion Cell Response

A Badea, JM McCracken… - … applied materials & …, 2017 - pubmed.ncbi.nlm.nih.gov
Understanding and controlling the interactions occurring between cells and engineered
materials are central challenges toward progress in the development of biomedical devices …

[引用][C] 3D-Printed pHEMA Materials for Topographical and Biochemical Modulation of Dorsal Root Ganglion Cell Response

A Badea, JM McCracken, EG Tillmaand… - ACS Applied Materials …, 2017 - diva-portal.org