首页> 外文会议>ASME summer bioengineering conference;SBC2010 >THREE-DIMENSIONAL HIGH RESOLUTION SCAFFOLD FIBER ARCHICTURE AND MORPHOLOGY IN TISSUE ENGINEERED HEART VALVE TISSUE
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THREE-DIMENSIONAL HIGH RESOLUTION SCAFFOLD FIBER ARCHICTURE AND MORPHOLOGY IN TISSUE ENGINEERED HEART VALVE TISSUE

机译:组织工程化心脏瓣膜组织的三维高分辨率脚手架纤维结构和形态

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Engineered heart valve tissue (EHVT) has received much attention as a potential pediatric valve replacement therapy, offering prospective long-term functional improvements over current options. A significant gap in the literature exists, however, regarding estimating tissue mechanical properties from tissue-scaffold composites. Detailed three-dimensional structural information prior to implantation (in vitro) and after implantation in (in vivo) is needed for improved modeling of tissue properties. As such, a novel high-resolution imaging technique will be employed to obtain three-dimensional microstructural information. Analysis techniques will be used to fully quantify constituents of interest including scaffold, collagen, and cellular information and to develop appropriate two-dimensional sectioning sampling protocols. It is the intent of this work to guide modeling efforts to better elucidate EHVT tissue-specific mechanical properties.
机译:工程心脏瓣膜组织(EHVT)作为一种潜在的儿科瓣膜替代疗法受到了广泛的关注,与目前的选择相比,可提供长期的预期功能改进。然而,关于估计组织-支架复合材料的组织机械性能,文献中存在重大空白。为了改善组织特性的建模,需要在植入之前(体外)和植入之后(体内)的详细三维结构信息。这样,将采用新颖的高分辨率成像技术来获得三维显微结构信息。分析技术将用于完全量化包括支架,胶原蛋白和细胞信息在内的目标成分,并开发适当的二维切片采样方案。这项工作的目的是指导建模工作,以便更好地阐明EHVT组织特定的机械性能。

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