Opportunities and challenges of translational 3D bioprinting

SV Murphy, P De Coppi, A Atala - Nature biomedical engineering, 2020 - nature.com
Abstract 3D-printed orthopaedic devices and surgical tools, printed maxillofacial implants
and other printed acellular devices have been used in patients. By contrast, bioprinted living …

Opportunities and challenges of translational 3D bioprinting

SV Murphy, P De Coppi, A Atala - Nature biomedical …, 2020 - pubmed.ncbi.nlm.nih.gov
3D-printed orthopaedic devices and surgical tools, printed maxillofacial implants and other
printed acellular devices have been used in patients. By contrast, bioprinted living cellular …

Opportunities and challenges of translational 3D bioprinting.

SV Murphy, P De Coppi, A Atala - Nature Biomedical Engineering, 2019 - europepmc.org
3D-printed orthopaedic devices and surgical tools, printed maxillofacial implants and other
printed acellular devices have been used in patients. By contrast, bioprinted living cellular …

[引用][C] Opportunities and challenges of translational 3D bioprinting

SV Murphy, P De Coppi, A Atala - Nature Biomedical Engineering, 2019 - cir.nii.ac.jp
Opportunities and challenges of translational 3D bioprinting | CiNii Research CiNii 国立情報学
研究所 学術情報ナビゲ恁縖サイニィ] 詳細へ移動 検索フォ恁啶匾動 論文·デ恁郡颏丹す 大学 …

[PDF][PDF] Opportunities and challenges of translational 3D bioprinting

SV Murphy, P De Coppi, A Atala - Nature biomedical engineering, 2020 - drive.google.com
Three-dimensional printing—a type of additive manufacturing—creates 3D objects through
the digitally controlled deposition of successive layers of material. The United States Food …

Opportunities and challenges of translational 3D bioprinting

SV Murphy, A Atala - Nature Biomedical Engineering, 2020 - search.proquest.com
Abstract 3D-printed orthopaedic devices and surgical tools, printed maxillofacial implants
and other printed acellular devices have been used in patients. By contrast, bioprinted living …