USPIO-labeled textile materials for non-invasive MR imaging of tissue-engineered vascular grafts.
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Volkmar Schulz | Fabian Kiessling | Jakob Wehner | Felix Gremse | Petra Mela | Twan Lammers | Stefan Jockenhoevel | Julia Frese | Lisanne Rongen | Sabine Koch | Philipp Schuster | Frederic Wolf | V. Schulz | M. V. van Zandvoort | F. Kiessling | S. Jockenhoevel | T. Lammers | J. Wehner | S. Koch | F. Gremse | P. Mela | L. Rongen | Marc van Zandvoort | V. Gesché | J. Frese | Zhuojun Wu | M. Mertens | Zhuojun Wu | Marianne E. Mertens | Valentine N. Gesché | P. Schuster | Frederic Wolf
[1] V. Shastri. In vivo Engineering of Tissues: Biological Considerations, Challenges, Strategies, and Future Directions , 2009, Advanced materials.
[2] Shadi F Othman,et al. Monitoring tissue engineering using magnetic resonance imaging. , 2008, Journal of bioscience and bioengineering.
[3] Frederick J. Schoen,et al. Functional Growth in Tissue-Engineered Living, Vascular Grafts: Follow-Up at 100 Weeks in a Large Animal Model , 2006, Circulation.
[4] S. Hollister. Scaffold Design and Manufacturing: From Concept to Clinic , 2009, Advanced materials.
[5] Ajay Kumar Gupta,et al. Synthesis and surface engineering of iron oxide nanoparticles for biomedical applications. , 2005, Biomaterials.
[6] Mark A Anastasio,et al. Imaging challenges in biomaterials and tissue engineering. , 2013, Biomaterials.
[7] Benedikt Weber,et al. Transcatheter implantation of homologous "off-the-shelf" tissue-engineered heart valves with self-repair capacity: long-term functionality and rapid in vivo remodeling in sheep. , 2014, Journal of the American College of Cardiology.
[8] C P Neu,et al. Characterization of engineered tissue construct mechanical function by magnetic resonance imaging , 2009, Journal of tissue engineering and regenerative medicine.
[9] Florea Lupu,et al. Molecular magnetic resonance imaging approaches used to aid in the understanding of angiogenesis in vivo: implications for tissue engineering. , 2010, Tissue engineering. Part A.
[10] Ville Ellä,et al. Fibrin-polylactide-based tissue-engineered vascular graft in the arterial circulation. , 2010, Biomaterials.
[11] A Haverich,et al. Tissue Engineering of Pulmonary Heart Valves on Allogenic Acellular Matrix Conduits: In Vivo Restoration of Valve Tissue , 2000, Circulation.
[12] Jean-Christophe Ginefri,et al. High-resolution 1.5-Tesla magnetic resonance imaging for tissue-engineered constructs: a noninvasive tool to assess three-dimensional scaffold architecture and cell seeding. , 2010, Tissue engineering. Part C, Methods.
[13] Silviu Itescu,et al. Cardiac Tissue Engineering in an In Vivo Vascularized Chamber , 2007, Circulation.
[14] C. Breuer,et al. Vascular tissue engineering: the next generation. , 2012, Trends in molecular medicine.
[15] Deniz A. Bölükbas,et al. FMN-Coated Fluorescent USPIO for Cell Labeling and Non-Invasive MR Imaging in Tissue Engineering , 2014, Theranostics.
[16] S. Primack,et al. High-resolution CT: normal anatomy, techniques, and pitfalls. , 2001, Radiologic clinics of North America.
[17] Simon P. Hoerstrup,et al. Tissue Engineering of Functional Trileaflet Heart Valves From Human Marrow Stromal Cells , 2002, Circulation.
[18] Molly M. Stevens,et al. Designing Regenerative Biomaterial Therapies for the Clinic , 2012, Science Translational Medicine.
[19] Fabian Kiessling,et al. Iron Oxide‐Labeled Collagen Scaffolds for Non‐Invasive MR Imaging in Tissue Engineering , 2014, Advanced functional materials.
[20] J. Vacanti,et al. Tissue engineering: the challenges ahead. , 1999, Scientific American.
[21] Robert Langer,et al. Biodegradable Polymer Scaffolds for Tissue Engineering , 1994, Bio/Technology.
[22] C. Robic,et al. Magnetic iron oxide nanoparticles: synthesis, stabilization, vectorization, physicochemical characterizations, and biological applications. , 2008, Chemical reviews.
[23] G Tellides,et al. Initial evaluation of the use of USPIO cell labeling and noninvasive MR monitoring of human tissue‐engineered vascular grafts in vivo , 2008, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[24] Mitsuo Umezu,et al. In vitro fabrication of functional three-dimensional tissues with perfusable blood vessels , 2013, Nature Communications.
[25] R. Bashir,et al. Enabling microscale and nanoscale approaches for bioengineered cardiac tissue. , 2013, ACS nano.