Institute of Pathology, Medical Faculty of the RWTH Aachen University, Pauwelsstr. 30, 52074 Aachen, Germany.
Ann Anat. 2010 Dec 20;192(6):383-7. doi: 10.1016/j.aanat.2010.01.008. Epub 2010 Mar 15.
Fundamental knowledge of microscopic anatomy and pathology has always been an essential part in medical education. The traditional didactic concept comprises theoretical and practical lessons using a light microscope and glass slides. High-speed Internet connections and technical improvement in whole-slide digital microscopy (commonly termed "virtual microscopy") provide a new and attractive approach for both teachers and students. High picture quality and unlimited temporal and spatial availability of histology samples from different fields are key advantages of web-based digital microscopy. In this report we discuss the technical requirements, system efficiency, optical resolution and didactic concept. Furthermore, we present a review of the experience gained in the course of one year based on an analysis of student acceptance. Three groups with a total of 192 students between the 3rd and 5th year of medical studies attending the practical courses of general and advanced histopathology had access to both glass-mounted and digitalized slides. Prior to exams, students were asked to answer an anonymous questionnaire. The results of the study reflect the high acceptance and intensive use of the web-based digital histology by students, thus encouraging the development of further Web-based learning strategies for the teaching of histology and pathology.
医学教育中,微观解剖学和病理学的基础知识一直是必不可少的内容。传统的教学理念包括使用光学显微镜和载玻片进行理论和实践课程。高速互联网连接和全玻片数字显微镜技术(通常称为“虚拟显微镜”)的改进为教师和学生提供了一种新颖且极具吸引力的方法。高质量的图像以及来自不同领域的组织学样本在时间和空间上的无限可用性是基于网络的数字显微镜的主要优势。在本报告中,我们讨论了技术要求、系统效率、光学分辨率和教学理念。此外,我们还根据学生接受程度的分析,介绍了在一年的课程中获得的经验。共有三个组,每组 192 名 3 至 5 年级的医学生参加了普通和高级组织病理学的实践课程,他们可以使用玻璃载玻片和数字化载玻片。在考试之前,学生被要求回答一份匿名问卷。研究结果反映了学生对基于网络的数字组织学的高度接受和深入使用,从而鼓励进一步开发基于网络的学习策略,以教授组织学和病理学。