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Modeling of multifunctional deformable porous scaffolds for soft tissue engineering

机译:用于软组织工程的多功能可变形多孔支架的建模

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摘要

Porous membranes/scaffolds such as guided tissue regeneration (GTR) membranes, cell sheets, tissue matrices or polymeric meshes are being widely used in soft tissue engineering to regenerate damaged, diseased tissue or wound. These membranes are mostly regular porous structures with repeating internal architecture. When they are applied onto wound area, various forces caused by bandage, contraction and self weight might cause deformation. As a result, the geometry and the designed porosity changes which eventually alters the desired choreographed functionality. To avoid the negative effect cause by such deformation and its associated consequences, a novel design methodology has been proposed to determine and include the resultant deformation. The proposed design will minimize the variation in effective porosity while ensuring its surface conformity. Thus the proposed design will provide a better functionality by providing both structural integrity and proper biological properties. The proposed methodology has been implemented and results will be shown with illustrative examples. Also a comparison study showing effective porosity for both the proposed method and conventional regular porosity will be presented for a free-form surface mimicking a wound.
机译:多孔膜/支架,例如引导组织再生(GTR)膜,细胞片,组织基质或聚合物网,已广泛用于软组织工程中,以再生受损,患病的组织或伤口。这些膜大多是具有重复内部结构的规则多孔结构。当将它们施加到伤口区域时,由绷带,收缩和自重引起的各种力可能导致变形。结果,几何形状和设计的孔隙率发生变化,最终改变了所需的编排功能。为了避免由这种变形引起的负面影响及其相关后果,已经提出了一种新颖的设计方法来确定并包括所产生的变形。所提出的设计将在确保其表面一致性的同时将有效孔隙率的变化降至最低。因此,通过提供结构完整性和适当的生物学特性,提出的设计将提供更好的功能。所提出的方法已得到实施,结果将通过说明性示例显示。还将对模拟伤口的自由形式表面进行对比研究,该研究显示出所提出方法和常规规则孔隙率的有效孔隙率。

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