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3D打印技术在《污废水处理设施运行管理》教学中的应用
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作者 成小英 王姝 +1 位作者 江桥 陈涛 《广州化工》 CAS 2021年第24期115-116,127,共3页
3D打印技术已开始在高校本科生教育中使用。结合环境工程本科生专业课《污废水处理设施运行管理》,可以采用学生自己打印、教师自己打印、教师建模、创建3D打印教学平台这四种方式充分融入3D打印技术,通过快速成型、快速纠错、实物互动... 3D打印技术已开始在高校本科生教育中使用。结合环境工程本科生专业课《污废水处理设施运行管理》,可以采用学生自己打印、教师自己打印、教师建模、创建3D打印教学平台这四种方式充分融入3D打印技术,通过快速成型、快速纠错、实物互动,取得更好的教学效果,同时可以更好的培养大学生的反省、创新和合作精神,非常有助于工程认证,更会对学生的工程师素养和未来的职业发展产生深远的影响。 展开更多
关键词 3D打印技术 学生打印 教师打印 教师建模 教学平台
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A Review on the 3D Printing of Functional Structures for Medical Phantoms and Regenerated Tissue and Organ Applications 被引量:10
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作者 Kan Wang Chia-Che Ho +1 位作者 Chuck Zhang Ben Wang 《Engineering》 SCIE EI 2017年第5期653-662,共10页
Medical models, or "phantoms," have been widely used for medical training and for doctor-patient interactions. They are increasingly used for surgical planning, medical computational models, algorithm verification a... Medical models, or "phantoms," have been widely used for medical training and for doctor-patient interactions. They are increasingly used for surgical planning, medical computational models, algorithm verification and validation, and medical devices development. Such new applications demand high-fidelity, patient-specific, tissue-mimicking medical phantoms that can not only closely emulate the geometric structures of human organs, but also possess the properties and functions of the organ structure. With the rapid advancement of three-dimensional (3D) printing and 3D bioprinting technologies, many researchers have explored the use of these additive manufacturing techniques to fabricate functional medical phantoms for various applications. This paper reviews the applications of these 3D printing and 3D bioprinting technologies for the fabrication of functional medical phantoms and bio-structures. This review specifically discusses the state of the art along with new developments and trends in 3D printed functional medical phantoms (i.e., tissue-mimicking medical phantoms, radiologically relevant medical phantoms, and physiological medical phantoms) and 3D bio-printed structures (i.e., hybrid scaffolding materials, convertible scaffolds, and integrated sensors) for regenerated tissues and organs. 展开更多
关键词 3D printing 3D bioprinting Medical phantom Regenerated tissue/organ SCAFFOLD
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4-Axis printing microfibrous tubular scaffold and tracheal cartilage application 被引量:2
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作者 Dong Lei Bin Luo +12 位作者 Yifan Guo Di Wang Hao Yang Shaofei Wang Huixia Xuan Ao Shen Yi Zhang Zenghe Liu Chuanglong He Feng-Ling Qing Yong Xu Guangdong Zhou Zhengwei You 《Science China Materials》 SCIE EI CSCD 2019年第12期1910-1920,共11页
Long-segment defects remain a major problem in clinical treatment of tubular tissue reconstruction.The design of tubular scaffold with desired structure and functional properties suitable for tubular tissue regenerati... Long-segment defects remain a major problem in clinical treatment of tubular tissue reconstruction.The design of tubular scaffold with desired structure and functional properties suitable for tubular tissue regeneration remains a great challenge in regenerative medicine.Here,we present a reliable method to rapidly fabricate tissueengineered tubular scaffold with hierarchical structure via 4-axis printing system.The fabrication process can be adapted to various biomaterials including hydrogels,thermoplastic materials and thermosetting materials.Using polycaprolactone(PCL)as an example,we successfully fabricated the scaffolds with tunable tubular architecture,controllable mesh structure,radial elasticity,good flexibility,and luminal patency.As a preliminary demonstration of the applications of this technology,we prepared a hybrid tubular scaffold via the combination of the 4-axis printed elastic poly(glycerol sebacate)(PGS)bio-spring and electrospun gelatin nanofibers.The scaffolds seeded with chondrocytes formed tubular mature cartilage-like tissue both via in vitro culture and subcutaneous implantation in the nude mouse,which showed great potential for tracheal cartilage reconstruction. 展开更多
关键词 3D printing tissue engineering tubular scaffold tracheal cartilage
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