D65. Optimizing the Design of Biodegradable 3D-printed Scaffolds for Tissue Engineering Nipples with Lasting Projection and Biosimilar Stiffness

Bibliographic Details
Main Authors: Xue Dong, MD, PhD, Timothy Butler, BS, George Corpuz, BS, Gillian O’Connell, AB, Hector Salazar, BS, Skander Limem, PhD, Jason Spector, MD
Format: Article
Language:English
Published: Wolters Kluwer 2023-04-01
Series:Plastic and Reconstructive Surgery, Global Open
Online Access:http://journals.lww.com/prsgo/fulltext/10.1097/01.GOX.0000934864.65752.ee
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author Xue Dong, MD, PhD
Timothy Butler, BS
George Corpuz, BS
Gillian O’Connell, AB
Hector Salazar, BS
Skander Limem, PhD
Jason Spector, MD
author_facet Xue Dong, MD, PhD
Timothy Butler, BS
George Corpuz, BS
Gillian O’Connell, AB
Hector Salazar, BS
Skander Limem, PhD
Jason Spector, MD
author_sort Xue Dong, MD, PhD
collection DOAJ
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language English
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series Plastic and Reconstructive Surgery, Global Open
spelling doaj.art-20bcbf1a01554e75aa35b14784bfbd4d2023-06-30T01:48:41ZengWolters KluwerPlastic and Reconstructive Surgery, Global Open2169-75742023-04-01114S939410.1097/01.GOX.0000934864.65752.ee202304001-00186D65. Optimizing the Design of Biodegradable 3D-printed Scaffolds for Tissue Engineering Nipples with Lasting Projection and Biosimilar StiffnessXue Dong, MD, PhD0Timothy Butler, BS1George Corpuz, BS2Gillian O’Connell, AB3Hector Salazar, BS4Skander Limem, PhD5Jason Spector, MD61 Weill Cornell Medical College, New York, NY, USA2 BD, Lexington, MA, USA.1 Weill Cornell Medical College, New York, NY, USA1 Weill Cornell Medical College, New York, NY, USA1 Weill Cornell Medical College, New York, NY, USA2 BD, Lexington, MA, USA.1 Weill Cornell Medical College, New York, NY, USAhttp://journals.lww.com/prsgo/fulltext/10.1097/01.GOX.0000934864.65752.ee
spellingShingle Xue Dong, MD, PhD
Timothy Butler, BS
George Corpuz, BS
Gillian O’Connell, AB
Hector Salazar, BS
Skander Limem, PhD
Jason Spector, MD
D65. Optimizing the Design of Biodegradable 3D-printed Scaffolds for Tissue Engineering Nipples with Lasting Projection and Biosimilar Stiffness
Plastic and Reconstructive Surgery, Global Open
title D65. Optimizing the Design of Biodegradable 3D-printed Scaffolds for Tissue Engineering Nipples with Lasting Projection and Biosimilar Stiffness
title_full D65. Optimizing the Design of Biodegradable 3D-printed Scaffolds for Tissue Engineering Nipples with Lasting Projection and Biosimilar Stiffness
title_fullStr D65. Optimizing the Design of Biodegradable 3D-printed Scaffolds for Tissue Engineering Nipples with Lasting Projection and Biosimilar Stiffness
title_full_unstemmed D65. Optimizing the Design of Biodegradable 3D-printed Scaffolds for Tissue Engineering Nipples with Lasting Projection and Biosimilar Stiffness
title_short D65. Optimizing the Design of Biodegradable 3D-printed Scaffolds for Tissue Engineering Nipples with Lasting Projection and Biosimilar Stiffness
title_sort d65 optimizing the design of biodegradable 3d printed scaffolds for tissue engineering nipples with lasting projection and biosimilar stiffness
url http://journals.lww.com/prsgo/fulltext/10.1097/01.GOX.0000934864.65752.ee
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