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产教融合背景下AIGC赋能研究生智能包装设计课程教学模式的创新实践
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作者 贺林龙 孙雅格 谢溪亭 《上海包装》 2025年第12期259-261,共3页
基于产教融合的战略导向,以“智能包装设计”研究生课程为案例,探索人工智能生成内容(artificial intelligence generated content,AIGC)技术如何赋能研究生设计教学的目标重构、内容重组与方法创新。采用教学实验、问卷调查与作品评估... 基于产教融合的战略导向,以“智能包装设计”研究生课程为案例,探索人工智能生成内容(artificial intelligence generated content,AIGC)技术如何赋能研究生设计教学的目标重构、内容重组与方法创新。采用教学实验、问卷调查与作品评估相结合的实证路径,对比分析AIGC技术介入前后学生创新性、实践能力与产业适配度的变化。结果显示,AIGC的引入显著提升了研究生的创意效率与项目落地能力,促进了教学模式从“作品导向”向“智能共创导向”的转型。提出制度建设、师资培训、课程体系优化与评价体系创新等方面的完善路径,以期为研究生设计教育的智能化转型提供可推广的范式参考。 展开更多
关键词 产教融合 AIGC技术 研究生设计教学 智能包装设计 教学模式创新
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3D printedβ-sheet-reinforced natural polymer hydrogel bilayer tissue engineering scaffold 被引量:5
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作者 ZHAO XinRui NIE XiongFeng +7 位作者 ZHANG XiaoPing sun yage YANG Rong BIAN XinYu ZHANG Qian WANG HongYing XU ZiYang LIU WenGuang 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2024年第4期1170-1184,共15页
It remains a significant challenge to fabricate natural polymer(NP)hydrogels with anti-swelling ability and high strengths in the physiological environment.Herein,theβ-sheet-reinforced NP hydrogel is developed by cop... It remains a significant challenge to fabricate natural polymer(NP)hydrogels with anti-swelling ability and high strengths in the physiological environment.Herein,theβ-sheet-reinforced NP hydrogel is developed by copolymerizing methacrylated gelatin(GelMA)and methacrylated silk fibroin(SFMA)in aqueous solution,followed by ethanol treatment(named GelMA-SFMAAL).Theβ-sheets formed by SFMA can act as a stable physical crosslink to enhance the mechanical properties and prolong the degradation of the GelMA network.Importantly,the chemical crosslinking in the GelMA-SFMA hydrogel prevents excessive aggregation of hydrophobicβ-sheets,thereby avoiding the formation of brittle hydrogel.The obtained GelMA-SFMA-AL hydrogels exhibit considerably enhanced mechanical properties(Young's modulus:0.89–3.68 MPa;tensile strength:0.31–0.96 MPa;toughness:0.09–0.63 MJ/m^(3);compressive modulus:0.78–2.20 MPa;compressive strength:2.65–5.93 MPa)compared with GelMA-SFMA hydrogels(Young's modulus:0.04–0.13 MPa;tensile strength:0.04–0.07 MPa;toughness:0.01–0.02 MJ/m^(3);compressive modulus:0.03–0.09 MPa;compressive strength:0.30–0.64 MPa).A bilayer osteochondral scaffold is constructed via digital light processing(DLP)three-dimensiaonl(3D)printing technology,comprising GelMA-SFMA@diclofenac sodium(DS)-AL as the top layer and GelMA-SFMA@bioactive glass(BG)-AL as the bottom layer.The bilayer hydrogel scaffold is demonstrated to support cell attachment and spreading,and facilitate osteogenic differentiation of rat bone marrow stem cells in vitro.In vivo implantation experiment suggests this bilayer scaffold is promising to be used for osteochondral tissue regeneration. 展开更多
关键词 silk fibroin Β-SHEET high-strength hydrogel natural polymer osteochondral regeneration
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A hyperbranched polymer-based water-resistant adhesive:Durable underwater adhesion and primer for anchoring anti-fouling hydrogel coating 被引量:4
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作者 ZHANG YaHan CUI ChunYan +5 位作者 sun yage ZHANG XiaoPing YANG Rong YANG JianHai XIE Fei LIU WenGuang 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2022年第1期201-213,共13页
Direct deployment of gluing and achieving durable robust adhesion in water is challenging due to difficulty in repelling interface water.This work reports a novel hyperbranched polymer-based water-resistant adhesive(H... Direct deployment of gluing and achieving durable robust adhesion in water is challenging due to difficulty in repelling interface water.This work reports a novel hyperbranched polymer-based water-resistant adhesive(HBPBA)based on Michael addition reaction of multi-vinyl monomers with dopamine and 3-aminophenylboronic acid.Upon encountering water,the HBPBA forms coacervates whose hydrophobic chains aggregate to displace interface water,and meanwhile the catechols exposing outwards contribute to underwater adhesion.The HBPBA can strongly glue diverse substrates including PTFE,PE,PET,ceramic,Ti and stainless steel.The HBPBA can maintain stable adhesion in different environments,such as tap water,simulated sea water,PBS,and a wide range of pH solutions(pH 2 to 10)for 3 months,supposedly due to the complexation of catechol with boronic acid.Intriguingly,HBPBA film can be bonded to the titanium surface as a primer,which firmly anchors the antifouling PNAGAPCBAA hydrogel coating through copolymerization of remaining double bonds in HBPBA and NAGA plus CBAA.The PNAGA-PCBAA hydrogel-modified titanium is biocompatible and shows outstanding antifouling ability both in vitro and in vivo.This work proposes a new strategy for creating underwater deployable and water-resistant adhesives that may find promising applications in engineering and biomedical fields. 展开更多
关键词 hyperbranched polymer ADHESIVE ANTI-FOULING hydrogel underwater adhesion
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