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首页> 外文期刊>Advances in Experimental Medicine and Biology >eLearning and Embryology: Designing an Application to Improve 3D Comprehension of Embryological Structures
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eLearning and Embryology: Designing an Application to Improve 3D Comprehension of Embryological Structures

机译:电子学报和胚胎学:设计应用以改善胚胎结构的3D理解

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摘要

Embryology and histology are subjects that are viewed as particularly challenging by students in higher education. This negative perception is the result of many factors such as restricted access to lab facilities, lack of allocated time to these labs, and the complexity of the subject itself. One main factor that influences this viewpoint is the difficulty of grasping 3D orientation of sectioned tissues, especially regarding embryology. Attempts have been made previously to create alternative teaching methods to help alleviate these issues, but few have explored 3D visualisation. We aimed to address these issues by creating 3D embryological reconstructions from serial histology sections of a sheep embryo. These were deployed in a mobile application that allowed the user to explore the original sections in sequence, alongside the counterpart 3D model. The application was tested against a currently available eHistology programme on a cohort of life sciences graduates (n = 14) through qualitative surveys and quantitative testing through labelling and orientation-based tests. The results suggest that using a 3D modality such as the one described here significantly improves student comprehension of orientation of slides compared to current methods (p = 0.042). Furthermore, the developed application was deemed more interesting, useful, and usable than current eHistology tools (p < 0.05). Modalities such as that developed here could therefore provide a more effective approach to learning these challenging subjects potentially increasing student engagement with embryology and histology.
机译:胚胎学和组织学是受到高等教育学生特别具有挑战性的受试者。这种负面感知是许多因素,例如限制对实验室设施的限制,缺乏对这些实验室的分配时间,以及主题本身的复杂性。影响这一观点的一个主要因素是抓住分段组织的3D取向,特别是关于胚胎的难度。以前在以前创建替代教学方法的尝试,以帮助缓解这些问题,但很少有人探索过3D可视化。我们旨在通过从绵羊胚胎的连续组织学部分产生3D胚胎重建来解决这些问题。这些在移动应用程序中部署,允许用户按顺序探索原始部分,以及对应于3D模型。通过定性调查和定量测试通过标签和基于定向的测试来测试申请对目前可用的eHistology计划进行测试。结果表明,与当前方法相比,使用诸如本文所述的3D模态显着提高了幻灯片的取向的理解(P = 0.042)。此外,开发的应用程序被视为比目前的eHistology工具更有趣,有用和可用(P <0.05)。因此,这里开发的方式可以提供更有效的方法来学习这些具有挑战性的受试者可能增加学生与胚胎学和组织学的参与。

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