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三维打印在大鼠脊髓仿生支架制造中的应用

[APPLICATION OF THREE DIMENSIONAL PRINTING ON MANUFACTURING BIONIC SCAFFOLDS OF SPINAL CORD IN RATS].

作者信息

Chen Yisheng, Wang Jingjing, Chen Xuyi, Chen Chong, Tu Yue, Zhang Sai, Li Xiaohong

出版信息

Zhongguo Xiu Fu Chong Jian Wai Ke Za Zhi. 2015 Mar;29(3):364-7.

Abstract

OBJECTIVE

To fabricate the bionic scaffolds of rat spinal cord by combining three dimensional (3D) printer and 3D software, so as to lay the foundation of theory and technology for the manufacture of scaffolds by using biomaterials.

METHODS

Three female Sprague Dawley rats were scanned by 7.0T MRI to obtain the shape and position data of the cross section and gray matter of T8 to T10 spinal cord. Combined with data of position and shape of nerve conduction beam, the relevant data were obtained via Getdata software. Then the 3D graphics were made and converted to stereolithography (STL) format by using SolidWorks software. Photosensitive resin was used as the materials of spinal cord scaffolds. The bionic scaffolds were fabricated by 3D printer.

RESULTS

MRI showed that the section shape of T8 to T10 segments of the spinal cord were approximately oval with a relatively long sagittal diameter of (2.20 ± 0.52) mm and short transverse diameter of (2.05 ± 0.24) mm, and the data of nerve conduction bundle were featured in the STL format. The spinal cord bionic scaffolds of the target segments made by 3D printer were similar to the spinal cord of rat in the morphology and size, and the position of pores simulated normal nerve conduction of rat spinal cord.

CONCLUSION

Spinal cord scaffolds produced by 3D printer which have similar shape and size of normal rat spinal cord are more bionic, and the procedure is simple. This technology combined with biomaterials is also promising in spinal cord repairing after spinal cord injury.

摘要

目的

通过三维(3D)打印机与3D软件相结合制作大鼠脊髓仿生支架,为利用生物材料制造支架奠定理论和技术基础。

方法

对3只雌性Sprague Dawley大鼠进行7.0T磁共振成像(MRI)扫描,获取T8至T10脊髓横断面及灰质的形态和位置数据。结合神经传导束的位置和形态数据,通过Getdata软件获取相关数据。然后利用SolidWorks软件制作3D图形并转换为立体光刻(STL)格式。以光敏树脂作为脊髓支架材料,通过3D打印机制造仿生支架。

结果

MRI显示,脊髓T8至T10节段的断面形状近似椭圆形,矢状径较长,为(2.20±0.52)mm,横径较短,为(2.05±0.24)mm,神经传导束数据以STL格式呈现。3D打印机制作的目标节段脊髓仿生支架在形态和大小上与大鼠脊髓相似,孔隙位置模拟了大鼠脊髓的正常神经传导。

结论

3D打印机制作的脊髓支架在形状和大小上与正常大鼠脊髓相似,更具仿生学特性,且操作简单。该技术与生物材料相结合在脊髓损伤后的脊髓修复方面也具有广阔前景。

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