Virtual Dissection Table Case Studies for Undergraduate Neuroanatomy Written Assignments.

Joshua Wang, Kate Beecher, Fatemeh Chehrehasa
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Abstract

Neuroanatomy education benefits from cadaveric specimens, yet challenges with access, cost, and health concerns exist. Virtual Dissection Tables (VDTs) offer digital alternatives to traditional cadaveric learning. This article evaluates the pedagogical value of VDTs in undergraduate neuroanatomy education. While VDTs, primarily Anatomage, offer interactive 3D cadaveric images and customization options, research on their impact on neuroanatomy learning outcomes remain limited. Existing studies suggest comparable knowledge retention between VDTs and cadaveric learning, with varying effects on student satisfaction. Investigations of non-exam-based neuroanatomy assessments, however, are scarce. This study presents a case study using VDTs as the basis for a neuroscience assignment report, exploring its construction, and evaluating its strengths, and weaknesses through a student survey. Implemented in an advanced neuroscience course, the assignment involves analyzing 3D reconstructed MRI scans of neuropathological conditions displayed on the VDT. The task requires students to collate, analyze, and predict symptoms based on the pathology observed, aligning their findings with neuroscience literature. This innovative approach aims to enhance research and academic writing skills while expanding the use of VDTs beyond traditional assessment formats in neuroscience education. We found that the case-study format benefited students' neuroanatomy learning and application ability. Further studies should be conducted, however, to understand the effect of VDT use on learning outcomes in case study contexts.

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用于本科生神经解剖学书面作业的虚拟解剖台案例研究。
神经解剖学教育受益于尸体标本,但在获取、成本和健康方面存在挑战。虚拟解剖台(VDT)为传统的尸体学习提供了数字化替代方案。本文评估了虚拟解剖台在本科神经解剖学教育中的教学价值。虽然 VDT(主要是 Anatomage)提供了交互式 3D 尸体图像和定制选项,但有关其对神经解剖学学习成果影响的研究仍然有限。现有研究表明,VDT 和尸体学习的知识保留率相当,但对学生满意度的影响却各不相同。然而,对非考试型神经解剖学评估的调查却很少。本研究介绍了一项以 VDT 为基础的神经科学作业报告案例研究,探讨了 VDT 的构建,并通过学生调查评估了 VDT 的优缺点。该作业在高级神经科学课程中实施,涉及分析 VDT 上显示的神经病理状况的三维重建 MRI 扫描。这项任务要求学生根据所观察到的病理情况整理、分析和预测症状,并将他们的发现与神经科学文献进行比对。这种创新方法旨在提高学生的研究和学术写作能力,同时将 VDT 的使用范围扩大到神经科学教育中传统的评估形式之外。我们发现,案例研究形式有利于学生的神经解剖学学习和应用能力。然而,我们还需要开展进一步的研究,以了解在案例研究情境中使用 VDT 对学习成果的影响。
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