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Three-Dimensional Molding Based on Microstereolithography Using Beta-Tricalcium Phosphate Slurry for the Production of Bioceramic Scaffolds

机译:基于微立体光刻技术的三维成型,使用β-磷酸三钙浆液生产生物陶瓷支架

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摘要

We report on a three-dimensional (3D) molding technique of fabricating bioceramic scaffolds. In this method, ceramic slurry is cast into a 3D polymer master mold, which is fabricated via microstereolithography, by a centrifugal casting method. The polymer master mold is thermally decomposed, so that a complex 3D bioceramic scaffold can be produced. In experiments, the decomposition process of the polymer model was optimized by the master decomposition curve theory to reduce harmful cracks in a green body. As a result, we could produce not only precise lattice models but also a sophisticated porous scaffold using beta-tricalcium phosphate (/3-TCP) slurry. This bioceramic 3D molding technique based on microstereolithography will be useful for tailor-made tissue engineering and regeneration medicine.
机译:我们报告制造生物陶瓷支架的三维(3D)成型技术。在此方法中,通过离心铸造方法将陶瓷浆料浇​​铸到通过微立体光刻法制造的3D聚合物主模具中。聚合物母模被热分解,从而可以生产复杂的3D生物陶瓷支架。在实验中,通过主分解曲线理论优化了聚合物模型的分解过程,以减少生坯中的有害裂纹。结果,我们不仅可以使用β-磷酸三钙(/ 3-TCP)浆液生成精确的晶格模型,而且可以生成复杂的多孔支架。这种基于微立体光刻的生物陶瓷3D成型技术将用于量身定制的组织工程和再生医学。

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  • 来源
    《Japanese journal of applied physics》 |2011年第6issue2期|p.06GL15.1-06GL15.5|共5页
  • 作者单位

    Department of Mechanical Engineering, Graduate School of Engineering, Yokohama National University, Yokohama 240-8501, Japan;

    Department of Mechanical Engineering, Graduate School of Engineering, Yokohama National University, Yokohama 240-8501, Japan;

    Department of Mechanical Engineering, Graduate School of Engineering, Yokohama National University, Yokohama 240-8501, Japan;

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