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首页> 外文期刊>Journal of Materials Science >Fabrication of soft tissue engineering scaffolds by means of rapid prototyping techniques
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Fabrication of soft tissue engineering scaffolds by means of rapid prototyping techniques

机译:通过快速成型技术制造软组织工程支架

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摘要

Scaffolds are of great importance for tissue engineering because they enable the production of functional living implants out of cells obtained from cell culture. These scaffolds require individual external shape and well defined internal structure with interconnected porosity. The problem of the fabrication of prototypes from computer assisted design (CAD) data is well known in automotive industry. Rapid prototyping (RP) techniques are able to produce such parts. Some RP techniques exist for hard tissue implants. Soft tissue scaffolds need a hydrogel material. No biofunctional and cell compatible processing for hydrogels exists in the area of RP. Therefore, a new rapid prototyping (RP) technology was developed at the Freiburg Materials Research Center to meet the demands for desktop fabrication of hydrogels. A key feature of this RP technology is the three-dimensional dispensing of liquids and pastes in liquid media. The porosity of the scaffold is calculated and an example of the data conversion from a volume model to the plotting path control is demonstrated. The versatile applications of the new hydrogel scaffolds are discussed, including especially its potential for tissue engineering. (C) 2002 Kluwer Academic Publishers. [References: 9]
机译:支架对于组织工程非常重要,因为它们能够从细胞培养获得的细胞中生产功能性活体植入物。这些支架需要单独的外部形状和具有相互连通的孔隙率的明确定义的内部结构。从计算机辅助设计(CAD)数据制造原型的问题在汽车工业中是众所周知的。快速原型制作(RP)技术能够生产此类零件。存在一些用于硬组织植入物的RP技术。软组织支架需要水凝胶材料。在RP领域不存在水凝胶的生物功能和细胞相容性工艺。因此,弗赖堡材料研究中心开发了一种新的快速成型(RP)技术,以满足桌面水凝胶制造的需求。 RP技术的关键特征是在液体介质中对液体和糊状物进行三维分配。计算了支架的孔隙率,并举例说明了从体积模型到绘图路径控制的数据转换。讨论了新型水凝胶支架的多种用途,特别是其在组织工程中的潜力。 (C)2002 Kluwer学术出版社。 [参考:9]

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