Department of Biological Sciences, Ohio University Zanesville, 1425 Newart Road, Zanesville, OH 43701, USA.
Anat Sci Educ. 2011 Mar-Apr;4(2):78-83. doi: 10.1002/ase.211. Epub 2011 Mar 8.
Histology is one of the main subjects in introductory college-level Human Anatomy and Physiology classes. Institutions are moving toward the replacement of traditional microscope-based histology learning with virtual microscopy learning amid concerns of losing the valuable learning experience of traditional microscopy. This study used live digital imaging (LDI) of microscopic slides on a SMART board to enhance Histology laboratory teaching. The interactive LDI system consists of a digital camera-equipped microscope that projects live images on a wall-mounted SMART board via a computer. This set-up allows real-time illustration of microscopic slides with highlighted key structural components, as well as the ability to provide the students with relevant study and review material. The impact of interactive LDI on student learning of Histology was then measured based on performance in subsequent laboratory tests before and after its implementation. Student grades increased from a mean of 76% (70.3-82.0, 95% CI) before to 92% (88.8-95.3, 95% CI) after integration of LDI indicating highly significant (P < 0.001) enhancement in students' Histology laboratory performance. In addition, student ratings of the impact of the interactive LDI on their Histology learning were strongly positive, suggesting that a majority of students who valued this learning approach also improved learning and understanding of the material as a result. The interactive LDI technique is an innovative, highly efficient and affordable tool to enhance student Histology learning, which is likely to expand knowledge and student perception of the subject and in turn enrich future science careers.
组织学是大学水平人体解剖学和生理学入门课程的主要科目之一。由于担心传统显微镜学习经验的丧失,各机构正在转向虚拟显微镜学习来替代传统的显微镜基础组织学学习。本研究使用 SMART 板上的活数字成像 (LDI) 对显微镜载玻片进行增强组织学实验室教学。交互式 LDI 系统由配备数字摄像头的显微镜组成,该显微镜通过计算机将实时图像投影到壁挂式 SMART 板上。这种设置允许实时说明显微镜载玻片上带有突出关键结构组件的图像,并且能够为学生提供相关的学习和复习材料。然后,根据实施前后的后续实验室测试中的表现来衡量交互式 LDI 对学生组织学学习的影响。学生成绩从实施前的平均 76%(70.3-82.0,95%CI)提高到 92%(88.8-95.3,95%CI),表明学生组织学实验室表现有显著提高(P <0.001)。此外,学生对交互式 LDI 对他们组织学学习的影响的评价非常积极,这表明大多数重视这种学习方法的学生也因此提高了对材料的学习和理解。交互式 LDI 技术是一种创新的、高效的、经济实惠的工具,可以增强学生的组织学学习,这可能会扩大学生对该主题的知识和认知,从而丰富未来的科学职业。