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中国医学机能实验科学二十年发展:基于横断面研究的教师观点

Two decades of development in medical functional experimental science in China: faculty perspectives from a cross-sectional study.

作者信息

He Zonglin, Feng Haixiao, Zhang Jialin, Wang Huadong, Lv Xiuxiu, Wang Yuechun

机构信息

School of Basic Medicine and Public Health, Jinan University, The West of Huangpu Avenue, Guangzhou, Guangdong Province, China.

Department of Orthopedics and Traumatology, The University of Hong Kong, Pokfulam, Hong Kong SAR, China.

出版信息

BMC Med Educ. 2025 Jun 4;25(1):832. doi: 10.1186/s12909-025-07382-6.

Abstract

Medical Functional Experimental Science (MFES) integrates physiology, pathophysiology, and pharmacology laboratory courses into a cohesive laboratory curriculum in China's medical education. However, limited research exists on its implementation and evolution over the past two decades. This cross-sectional study surveyed experienced teachers from China's top 100 medical schools. A total of 89 valid responses were received. A decline in technician numbers was reported by 62.9% of schools, potentially due to equipment automation and resource reallocation. The majority of the schools accommodated fewer than 30 students per laboratory. Over the past 20 years, laboratory sizes increased in 40.5% of the schools. Regarding the ratio of human experiments to animal experiments, of the schools surveyed, 60% reported less than 1 to 6, and 12% showed 1 to 5. The study also highlights the adoption of advanced teaching equipment, such as integrated signal acquisition systems and wireless human experiment systems, which have enhanced laboratory efficiency and student engagement. Furthermore, the integration of innovative and comprehensive experiments has been instrumental in fostering critical thinking and problem-solving skills among students. Despite progress, challenges remain, including technician shortages and uneven regional resource distribution, requiring policy interventions and global benchmarking.

摘要

医学机能实验科学(MFES)将生理学、病理生理学和药理学实验课程整合为中国医学教育中一门连贯的实验课程。然而,关于其在过去二十年中的实施和发展情况的研究有限。这项横断面研究对中国排名前100的医学院校中有经验的教师进行了调查。共收到89份有效回复。62.9%的学校报告称技术人员数量有所下降,这可能是由于设备自动化和资源重新分配所致。大多数学校每个实验室容纳的学生少于30人。在过去20年中,40.5%的学校实验室规模有所扩大。关于人体实验与动物实验的比例,在接受调查的学校中,60%报告该比例小于1比6,12%显示为1比5。该研究还强调了先进教学设备的采用,如集成信号采集系统和无线人体实验系统,这些设备提高了实验室效率和学生参与度。此外,创新和综合实验的整合有助于培养学生的批判性思维和解决问题的能力。尽管取得了进展,但挑战依然存在,包括技术人员短缺和区域资源分配不均,这需要政策干预和全球对标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/72d5/12139115/64b6ec464ed8/12909_2025_7382_Fig1_HTML.jpg

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