Pedersen Kelly, Wilson Timothy D, De Ribaupierre Sandrine
Department of Anatomy and Cell Biology, Western University, London, Ontario, Canada.
Stud Health Technol Inform. 2013;184:319-23.
Neuroanatomy is a complex sub-discipline of anatomy requiring abstract visualization and strong spatial reasoning. Traditional methods of learning neuroanatomy include investigation using dissection, light microscopy and histology. Often, this pedagogical approach requires students to formulate three-dimensional (3D) mental images from sequential two-dimensional (2D) cross-sections, which can be difficult for many students to conceptualize. The goal of this study is to develop an interactive 3D learning tool of the internal brainstem anatomy and assess its efficacy on student learning against the classical methods of learning neuroanatomy. Results reveal that students the amount of learning was equal between both experimental groups. Qualitative results show that students enjoyed interactive learning and warmly welcomed the 3D program. Future neuroanatomy laboratories may include a 3D component to aid in student conceptualization of internal brainstem anatomy.
神经解剖学是解剖学中一个复杂的子学科,需要抽象的可视化和强大的空间推理能力。传统的神经解剖学学习方法包括使用解剖、光学显微镜和组织学进行研究。通常,这种教学方法要求学生从连续的二维(2D)横截面中构建三维(3D)心理图像,这对许多学生来说可能很难概念化。本研究的目的是开发一种交互式的脑干部位内部解剖结构3D学习工具,并将其与传统的神经解剖学学习方法相比,评估其对学生学习的效果。结果显示,两个实验组的学习量相当。定性结果表明,学生们喜欢交互式学习,并热烈欢迎这个3D程序。未来的神经解剖学实验室可能会纳入一个3D组件,以帮助学生理解脑干部位的内部解剖结构。