Zobrazeno 1 - 9
of 9
pro vyhledávání: '"Jeffrey T. Krawiec"'
Autor:
Aneesh K. Ramaswamy, Rubin Jp, Jeffrey T. Krawiec, Josowitz Ad, William R. Wagner, Liao Ht, Justin S. Weinbaum, David A. Vorp, Antonio D'Amore, Pezzone Dj
Many preclinical evaluations of autologous small-diameter tissue-engineered vascular grafts (TEVGs) utilize cells from healthy humans or animals. However, these models hold minimal relevance for clinical translation, as the main targeted demographic
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::77c6bb409bbd5122ecc3e5bd9c2cfe52
https://europepmc.org/articles/PMC4876541/
https://europepmc.org/articles/PMC4876541/
Autor:
David A. Vorp, Justin S. Weinbaum, J. Peter Rubin, Jeffrey T. Krawiec, Antonio D'Amore, LaiYee Lily Kwan, William R. Wagner, Han-Tsung Liao
Objective One of the rate-limiting barriers within the field of vascular tissue engineering is the lengthy fabrication time associated with expanding appropriate cell types in culture. One particularly attractive cell type for this purpose is the adi
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::c9e006d3a6ee9d231ccad846ec7d26ba
http://hdl.handle.net/10447/222127
http://hdl.handle.net/10447/222127
Autor:
Syeda H. Afroze, Gianfranco Alpini, Eric C. Anderson, Anthony Atala, Stephen F. Badylak, Silvia Baiguera, Leonardo Baiocchi, Pedro M. Baptista, Lorena Bejarano-Pineda, Enrico Benedetti, Rosanna Beraldi, Alexandra Berdichevski, Mohammod Bhuyan, Alex G. Bishop, Khalil N. Bitar, Kory J. Blose, Lauren Brasile, Faouzi Braza, Christopher K. Breuer, Sophie Brouard, Bryan N. Brown, George W. Burke, Peter E. Butler, Colin R. Butler, Damelys Calderon, Ranieri Cancedda, Susana Cantero Peral, Marco Carbone, Diego Castanares-Zapatero, Edward Castro Santa, Lucienne Chatenoud, Reema Chawla, Linda Chen, Valeria Chiono, Gaetano Ciancio, Gianluca Ciardelli, Olga Ciccarelli, Christine Collienne, Francesca Corradini, Joaquin Cortiella, Paolo Cravedi, Marcelo Cypel, Stefano Da Sacco, Hiroshi Date, Paige S. Davies, Paolo De Coppi, Michele De Luca, Ethan W. Dean, Nicolas Degauque, Juan Domínguez-Bendala, Jean Michel Dubernard, Rania M. ElBackly, Karen English, Fred Fändrich, Alan C. Farney, Denver M. Faulk, José E. García-Arrarás, Pierre Gianello, Adam Giangreco, Shannon S. Glaser, Ryan Gobble, Aaron S. Goldstein, Christa N. Grant, Tracy C. Grikscheit, Angelika C. Gruessner, Rainer W.G. Gruessner, Pascale V. Guillot, Nicholas Hamilton, Philippe Hantson, Sij Hemal, Peiman Hematti, Robert E. Hynds, Luca Inverardi, Luc M. Jacquet, Sam M. Janes, Gavin Jell, Kendal Jensen, Ina Jochmans, Nobuo Kanai, Ravi Katari, Shaf Keshavjee, Jaehyup Kim, Yeonhee Kim, Nancy M.P. King, Eiji Kobayashi, Takaaki Koshiba, Jeffrey T. Krawiec, Hirotsugu Kurobe, Quirino Lai, Giacomo Lanzoni, Pierre-François Laterre, Jan P. Lerut, Toni Lerut, Ou Li, Paolo Macchiarini, Panagiotis Maghsoudlou, Nizam Mamode, Tommaso M. Manzia, Almudena Martinez-Fernandez, Gleb Martovetsky, Maddalena Mastrogiacomo, Shigeo Masuda, John P. McQuilling, Mandeep R. Mehra, Philippe Menasché, Fanyin Meng, Iris Mironi-Harpaz, Majid Mirzazadeh, Naiem S. Moiemen, Emma Moran, Paolo Muiesan, Tiziana Nardo, Timothy J Nelson, Paolo A. Netti, James M. Neuberger, Sanjay K. Nigam, Hidenori Ohe, Teruo Okano, Emmanuel C. Opara, Dennis P. Orgill, Jean-Bernard Otte, Sinan Ozer, Rajesh A. Pareta, Timil Patel, Graziella Pellegrini, Andrea Peloso, Laura Perin, Palmina Petruzzo, Rafael S. Pinheiro, Jacques Pirenne, Lauren K. Poindexter, Michel Pucéat, Alberto Pugliese, Shreya Raghavan, Kinan Rahal, Paolo Rama, Andrea Remuzzi, Giuseppe Remuzzi, Daniel Reyna-Soriano, Juan M. Rico Juri, Camillo Ricordi, Keith J. Roberts, Kevin A. Rocco, Jorge I. Rodriguez-Devora, Jeffrey Rogers, David A. Rudnick, Piero Ruggenenti, Junichiro Sageshima, Marcus Salvatori, Satyavrata Samavedi, Alessandro Sannino, Irene Scalera, Tina Sedaghati, Sargis Sedrakyan, Alexander M. Seifalian, Amelia Seifalian, Dror Seliktar, Gennaro Selvaggi, Keren Shapira-Schweitzer, Toshiharu Shinoka, Thomas Shupe, Nicholas R. Smith, Jean-Paul Soulillou, Valentina Spinelli, David E.R. Sutherland, Shuhei Tara, Takumi Teratani, Andre Terzic, Sunu S. Thomas, Giuseppe Tisone, Giorgia Totonelli, Andreas Tzakis, Ivo G. Tzvetanov, Brooks V. Udelsman, Basak E. Uygun, Joseph P. Vacanti, Olivier Van Caenegem, Mark Van Dyke, Dirk E. Van Raemdonck, David A. Vorp, Dipen Vyas, Kun Wang, Justin S. Weinbaum, Jason A. Wertheim, David F. Williams, Xavier Wittebole, Melissa H. Wong, Kathryn J. Wood, Tao Xu, Masayuki Yamato, Sylvaine You, Yuyu Yuan, Joao Paulo Zambon, Michela Zattoni, Lei Zhu
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::fd5d280e20da5624f9b8cb4c4c9d0427
https://doi.org/10.1016/b978-0-12-398523-1.00081-1
https://doi.org/10.1016/b978-0-12-398523-1.00081-1
Bioreactors are a tool used in tissue engineering to mature and guide the development of tissue engineered constructs. Bioreactors are in vitro culture systems that have been designed to alter the following basic physiological phenomena: cell surviva
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::9757ee6b7a6776ab60ce5e4cb23980c5
https://doi.org/10.1016/b978-0-12-398523-1.00013-6
https://doi.org/10.1016/b978-0-12-398523-1.00013-6
Autor:
Julie A. Phillippi, Thomas G. Gleason, Antonio D'Amore, Alkiviadis Tsamis, Simon C. Watkins, David A. Vorp, Ryan G. Koch, William R. Wagner, Jeffrey T. Krawiec
Publikováno v:
Volume 1A: Abdominal Aortic Aneurysms; Active and Reactive Soft Matter; Atherosclerosis; BioFluid Mechanics; Education; Biotransport Phenomena; Bone, Joint and Spine Mechanics; Brain Injury; Cardiac Mechanics; Cardiovascular Devices, Fluids and Imaging; Cartilage and Disc Mechanics; Cell and Tissue Engineering; Cerebral Aneurysms; Computational Biofluid Dynamics; Device Design, Human Dynamics, and Rehabilitation; Drug Delivery and Disease Treatment; Engineered Cellular Environments.
Aortic dissection is a life-threatening cardiovascular emergency with a high potential for death. It usually begins with an intimal tear which permits blood to enter the wall, split the media and create a false lumen, which can reenter the true lumen
Autor:
J. Peter Rubin, Simon C. Watkins, Claudette M. St. Croix, Yi Hong, Julie A. Phillippi, William R. Wagner, Thomas G. Gleason, Jeffrey T. Krawiec, David A. Vorp, Brian J. Philips
Publikováno v:
Volume 1B: Extremity; Fluid Mechanics; Gait; Growth, Remodeling, and Repair; Heart Valves; Injury Biomechanics; Mechanotransduction and Sub-Cellular Biophysics; MultiScale Biotransport; Muscle, Tendon and Ligament; Musculoskeletal Devices; Multiscale Mechanics; Thermal Medicine; Ocular Biomechanics; Pediatric Hemodynamics; Pericellular Phenomena; Tissue Mechanics; Biotransport Design and Devices; Spine; Stent Device Hemodynamics; Vascular Solid Mechanics; Student Paper and Design Competitions.
Tissue engineering, the use of a biodegradable scaffold with incorporation of a cellular source, particularly with mesenchymal stem cells (MSCs) has shown great promise in developing blood vessel grafts 1. Vascular tissue engineering not only combats
Autor:
Jeffrey T. Krawiec, Ryan G. Koch, David A. Vorp, Patrick G. Chan, Simon C. Watkins, Thomas G. Gleason, Alkiviadis Tsamis, Antonio D'Amore, William R. Wagner, Julie A. Phillippi
Publikováno v:
The Journal of thoracic and cardiovascular surgery
Objective Ascending thoracic aortic aneurysm (ATAA) in patients with bicuspid aortic valve (BAV) commonly dilate asymmetrically compared with patients with tricuspid aortic valve (TAV). This discrepancy in aneurysm geometry led us to hypothesize that
Autor:
Jeffrey T. Krawiec, David A. Vorp
Publikováno v:
Biomaterials. 33(12)
With the high occurrence of cardiovascular disease and increasing numbers of patients requiring vascular access, there is a significant need for a small-diameter (
Publikováno v:
Journal of the Royal Society Interface
Aortic disease is a significant cause of death in developed countries. The most common forms of aortic disease are aneurysm, dissection, atherosclerotic occlusion and ageing-induced stiffening. The microstructure of the aortic tissue has been studied