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教师姓名: 孟子捷
电子邮箱:
31db45cb2d185ef280fe0d87a9154b8ce755fa3e311eb6c965b88111d52682c664859f6f80e9b6a0788370a0e2343ae3e6e8eda699b826dd65aa6f5434e325d02bc2cb7bede4e301d28bfe59ed69a4414d164d314ccc2892d71834f22d09962a24e20dd51b0c373b53dca08cfc882889cb6fc2b035333f0e14e37f00a2bb1d44
所在单位: 前沿科学技术研究院
职务: 国家医学攻关产教融合创新平台3D打印可降解植入物评价研究联合实验室副主任
学历: 博士研究生毕业
办公地点: 西安交通大学曲江校区西五楼A415
性别: 男
学位: 博士
职称: 助理教授
在职信息: 在职
主要任职: 三个国际期刊青年编委/客座编辑
其他任职: 中国机械工程学会生物制造分会委员
毕业院校: 西安交通大学
博士生导师: 否
硕士生导师: 是
当前位置:
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科学研究
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论文成果
. Design and additive manufacturing of flexible polycaprolactone scaffolds with highly-tunable mechanical properties for soft tissue engineering , Materials & Design
. In-situ re-melting and re-solidification treatment of selective laser sintered polycaprolactone lattice scaffolds for improved filament quality and mechanical properties , Biofabrication
. Melt-based, solvent-free additive manufacturing of biodegradable polymeric scaffolds with designer microstructures for tailored mechanical/biological properties and clinical applications , Virtual and Physical Prototyping
. Fabrication of microfibrous PCL/MWCNTs scaffolds via melt-based electrohydrodynamic printing , Materials Letters
. Additive manufacturing and large deformation responses of highly-porous polycaprolactone scaffolds with helical architectures for breast tissue engineering , Virtual and Physical Prototyping
. Development of three-dimensional printed biodegradable external airway splints with native-like shape and mechanical properties for tracheomalacia treatment , Materials & Design
. Enhanced attachment and collagen type I deposition of MC3T3-E1 cells via electrohydrodynamic printed sub-microscale fibrous architectures , International Journal of Bioprinting
. Embedded bioprinting for designer 3D tissue constructs with complex structural organization , Acta Biomaterialia
. Micro/nanoscale electrohydrodynamic printing for functional metallic structures , Materials Today Nano
. Bioprinted living tissue constructs with layer-specific, growth factor-loaded microspheres for improved enthesis healing of a rotator cuff , Acta Biomaterialia
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