In-body tissue-engineered aortic valve (Biovalve type VII) architecture based on 3D printer molding

Author:

Nakayama Yasuhide1,Takewa Yoshiaki2,Sumikura Hirohito2,Yamanami Masashi13,Matsui Yuichi14,Oie Tomonori1,Kishimoto Yuichiro2,Arakawa Mamoru2,Ohmuma Kentaro2,Tajikawa Tsutomu4,Kanda Keiichi3,Tatsumi Eisuke2

Affiliation:

1. Division of Medical Engineering and Materials; National Cerebral and Cardiovascular Center Research Institute; Osaka Japan

2. Department of Artificial Organs; National Cerebral and Cardiovascular Center Research Institute; Osaka Japan

3. Department of Cardiovascular Surgery; Kyoto Prefectural University of Medicine; Kyoto Japan

4. Department of Mechanical and Systems Engineering; Kansai University; Osaka Japan

Funder

Ministry of Education, Culture, Sports, Science, and Technology of Japan

Publisher

Wiley

Subject

Biomedical Engineering,Biomaterials

Reference25 articles.

1. Mid-term comparative follow-up after aortic valve replacement with Carpentier-Edwards and Pericarbon pericardial prostheses;Tourneau;Circulation,1999

2. Cells, scaffolds and bioreactors for tissue-engineered heart valves: A journey from basic concepts to contemporary developmental innovations;Gandaglia;Eur J Cardiothorac Surg,2011

3. Bioreactors for development of tissue engineered heart valves;Berry;Ann Biomed Eng,2010

4. A review of rapid prototyping (RP) techniques in the medical and biomedical sector;Webb;J Med Eng Technol,2000

5. Design and fabrication of cast orthopedic implants with freeform surface textures from 3-D printed ceramic shell;Curodeau;J Biomed Mater Res,2000

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