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1 |
Material Type: Article
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Sustained viral gene delivery from a micro-fibrous, elastomeric cardiac patch to the ischemic rat heartGu, Xinzhu et al.Biomaterials. Volume 133 (2017); pp 132-143 -- ElsevierOnline access |
2 |
Material Type: Article
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Intramyocardial injection of a fully synthetic hydrogel attenuates left ventricular remodeling post myocardial infarctionMatsumura, Yasumoto et al.Biomaterials. Volume 217: (2019, October) -- ElsevierOnline access |
3 |
Material Type: Article
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Intramyocardial injection of a fully synthetic hydrogel attenuates left ventricular remodeling post myocardial infarctionMatsumura, Yasumoto et al.Biomaterials. Volume 217 (2019) -- ElsevierOnline access |
4 |
Material Type: Article
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Sustained viral gene delivery from a micro-fibrous, elastomeric cardiac patch to the ischemic rat heartGu, Xinzhu et al.Biomaterials. Volume 133 (2017); pp 132-143 -- ElsevierOnline access |
5 |
Material Type: Article
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Injectable, porous, biohybrid hydrogels incorporating decellularized tissue components for soft tissue applicationsZhu, Yang et al.Acta biomaterialia. Volume 73 (2018); pp 112-126 -- ElsevierOnline access |
6 |
Material Type: Article
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Injectable, porous, biohybrid hydrogels incorporating decellularized tissue components for soft tissue applicationsZhu, Yang et al.Acta biomaterialia. Volume 73: (2018, June); pp 112-126 -- ElsevierOnline access |
7 |
Material Type: Article
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Ventricular wall biomaterial injection therapy after myocardial infarction: Advances in material design, mechanistic insight and early clinical experiencesZhu, Yang; Matsumura, Yasumoto; Wagner, William R.Biomaterials. Volume 129 (2017); pp 37-53 -- ElsevierOnline access |
8 |
Material Type: Article
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Ventricular wall biomaterial injection therapy after myocardial infarction: Advances in material design, mechanistic insight and early clinical experiencesZhu, Yang; Matsumura, Yasumoto; Wagner, William R.Biomaterials. Volume 129 (2017); pp 37-53 -- ElsevierOnline access |
9 |
Material Type: Article
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Reactive oxygen species scavenging with a biodegradable, thermally responsive hydrogel compatible with soft tissue injectionZhu, Yang et al.Biomaterials. Volume 177 (2018); pp 98-112 -- ElsevierOnline access |
10 |
Material Type: Article
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Reactive oxygen species scavenging with a biodegradable, thermally responsive hydrogel compatible with soft tissue injectionZhu, Yang et al.Biomaterials. Volume 177: (2018, September); pp 98-112 -- ElsevierOnline access |