中华医学教育杂志 ›› 2026, Vol. 46 ›› Issue (7): 521-526.DOI: 10.3760/cma.j.cn115259-20250802-00875

• 实验教学 • 上一篇    下一篇

基于PTA量表的医学功能学实验报告评价体系构建与实践

冯雪梅, 倪雯雯, 刘燕, 戎伟芳   

  1. 上海交通大学医学院基础医学院基础医学实验教学中心,上海 200025
  • 收稿日期:2025-08-02 出版日期:2026-07-01 发布日期:2026-07-01
  • 通讯作者: 戎伟芳, Email: weifangrong@shsmu.edu.cn
  • 基金资助:
    上海交通大学教学发展基金项目(CTLD23J0104)

Development and implementation of a PTA Scale-based assessment framework for functional medicine laboratory reports

Feng Xuemei, Ni Wenwen, Liu Yan, Rong Weifang   

  1. Basic Medical Experiment Teaching Center, School of Basic Medical Sciences, Shanghai Jiao Tong University School of Medicine, Shanghai 200025, China
  • Received:2025-08-02 Online:2026-07-01 Published:2026-07-01
  • Contact: Rong Weifang, Email: weifangrong@shsmu.edu.cn
  • Supported by:
    Shanghai Jiao Tong University Teaching Development Fund (CTLD23J0104)

摘要: 目的 构建并实践基于基本要素分析(primary trait analysis,PTA)量表的医学功能学实验报告评价体系,为实验教学科学化评价提供参考。方法 通过文献分析初步拟定评价框架,经过23名专家2轮德尔菲法咨询筛选指标,结合层次分析法确定指标权重。以上海交通大学医学院2022级五年制临床医学专业27名学生的实验报告为评价样本,分别采用PTA量表法(PTA组)与传统方法(对照组)评价,比较应用效果。结果 2轮专家咨询的有效问卷回收率均为100.0%,专家权威系数分别为0.86和0.92,Kendall协调系数分别为0.265和0.334(均P<0.001),最终形成包含3个一级指标(基础实验能力、科学思维、学术规范)、8个二级指标和21个三级指标的评价体系。实证研究表明,PTA组实验报告成绩的四分位数间距(interquartile range,IQR)大于对照组,可有效区分不同能力层次的学生,并识别学生的薄弱环节。结论 基于PTA量表的医学功能学实验报告评价体系兼具科学性与实用性,契合形成性评价的教学导向,可以为医学实验教学的精准化评价改革提供范式。

关键词: 德尔菲技术, 实验报告, 基本要素分析, 评价体系, 层次分析法

Abstract: Objective To construct and implement an evaluation system for medical functional experiment reports based on the primary trait analysis (PTA) scale, and to inform the scientific evaluation of experimental teaching. Methods A preliminary evaluation framework was developed through literature analysis. Indicators were screened via two rounds of Delphi expert consultation involving 23 experts, and indicator weights were determined using the Analytic Hierarchy Process. Experimental reports from 27 students enrolled in the 2022 cohort of the five-year clinical medicine program at Shanghai Jiao Tong University School of Medicine were used as the evaluation sample. The reports were assessed using both the PTA scale method (PTA group) and the traditional method (control group), and the application effects were compared. Results The effective questionnaire recovery rate for both rounds of expert consultation was 100.0%. The expert authority coefficients were 0.86 and 0.92, and Kendall's coefficients of concordance were 0.265 and 0.334 (all P<0.001), respectively. The final evaluation system comprised 3 first-level indicators (Basic Experimental Ability, Scientific Thinking, Academic Norms), 8 second-level indicators, and 21 third-level indicators. Empirical research showed that theinterquartile range (IQR) of scores in the PTA group was greater than that in the control group, enabling better differentiation of students' ability levels and identification of their weaknesses. Conclusions The PTA scale-based evaluation system for medical functional experiment reports is both scientific and practical. It aligns with the teaching orientation of formative evaluation and provides a paradigm for the precision evaluation reform of medical experimental teaching.

Key words: Delphi technique, Experimental reports, Primary trait analysis, Evaluation system, Analytic hierarchy process (AHP)

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