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新工科引领下的高分子化学课程体系重塑:面向生医工需求的医教研深度融合

袁友永, 杨文军   

  1. 华南理工大学生物医学科学与工程学院, 广州国际校区, 广东 广州 511442
  • 收稿日期:2026-03-04 修回日期:2026-04-17
  • 通讯作者: 袁友永 E-mail:yuanyy@scut.edu.cn Youyong Yuan
  • 基金资助:
    国家自然科学基金(52373135,52573158);华南理工大学校级教研教改项目(2024年);华南理工大学校级研究生课程思政示范课程:高分子化学与物理(2024年)。

Reshaping the polymer chemistry curriculum system guided by emerging engineering education:deep integration of medicine,teaching,and research for biomedical engineering needs

Youyong Yuan, Wenjun Yang   

  1. Guangzhou International Campus, School of Biomedical Sciences and Engineering, South China University of Technology, Guangzhou 511442, Guangdong Province, China
  • Received:2026-03-04 Revised:2026-04-17
  • Contact: Youyong Yuan E-mail:yuanyy@scut.edu.cn

摘要: 在“新工科”背景下,培养具备跨学科视野的复合型人才成为生物医学工程专业的首要任务。针对当前“高分子化学”课程中教学内容滞后于医学前沿、学科融合度不高等现状,本研究探索并实施了以“深度交叉”为核心的教学改革。改革立足于课程内涵的结构化重塑,通过整合“基础知识-方法论-临床应用”三大模块,打破传统学科壁垒;同时,引入混合式教学路径,强化学生的主动构建能力,并构建起多维度的综合评价体系。这一改革闭环实现了高分子化学理论与医工实践的同频共振,旨在锻炼学生解决生物医用材料领域实际问题的工程素养。

关键词: 新工科, 生物医学工程, 高分子化学, 医工交叉, 教学改革

Abstract: Under the framework of emerging engineering education, cultivating interdisciplinary talents has become a priority for biomedical engineering programs. To address current challenges in the polymer chemistry curriculum—including outdated teaching materials and insufficient interdisciplinary integration—this study implements an educational reform centered on “deep convergence”. The reform restructures the curriculum by integrating three core modules: “fundamental knowledge-methodologies-clinical applications”, thereby dismantling traditional disciplinary boundaries. Incorporating blended learning approaches enhances students' active learning capabilities, while a multi-dimensional evaluation system provides comprehensive assessment. This reform creates a synergistic relationship between polymer chemistry theory and medical-engineering practice, ultimately developing students’ engineering competencies for solving real-world problems in biomedical materials.

Key words: Emerging engineering education, Biomedical engineering, Polymer chemistry, Medical-engineering integration, Teaching reform