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A recommended workflow methodology in the creation of an educational and training application incorporating a digital reconstruction of the cerebral ventricular system and cerebrospinal fluid circulation to aid anatomical understanding

机译:推荐的工作流程方法,用于创建教育和培训应用程序,包括脑室系统和脑脊液循环的数字重建,以帮助解剖学理解

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摘要

Background:\udThe use of computer-aided learning in education can be advantageous, especially when interactive three-dimensional (3D) models are used to aid learning of complex 3D structures. The anatomy of the ventricular system of the brain is difficult to fully understand as it is seldom seen in 3D, as is the flow of cerebrospinal fluid (CSF). This article outlines a workflow for the creation of an interactive training tool for the cerebral ventricular system, an educationally challenging area of anatomy. This outline is based on the use of widely available computer software packages.\ud\udMethods:\udUsing MR images of the cerebral ventricular system and several widely available commercial and free software packages, the techniques of 3D modelling, texturing, sculpting, image editing and animations were combined to create a workflow in the creation of an interactive educational and training tool. This was focussed on cerebral ventricular system anatomy, and the flow of cerebrospinal fluid.\ud\udResults:\udWe have successfully created a robust methodology by using key software packages in the creation of an interactive education and training tool. This has resulted in an application being developed which details the anatomy of the ventricular system, and flow of cerebrospinal fluid using an anatomically accurate 3D model. In addition to this, our established workflow pattern presented here also shows how tutorials, animations and self-assessment tools can also be embedded into the training application.\ud\udConclusions:\udThrough our creation of an established workflow in the generation of educational and training material for demonstrating cerebral ventricular anatomy and flow of cerebrospinal fluid, it has enormous potential to be adopted into student training in this field. With the digital age advancing rapidly, this has the potential to be used as an innovative tool alongside other methodologies for the training of future healthcare practitioners and scientists. This workflow could be used in the creation of other tools, which could be developed for use not only on desktop and laptop computers but also smartphones, tablets and fully immersive stereoscopic environments. It also could form the basis on which to build surgical simulations enhanced with haptic interaction.
机译:背景:在教育中使用计算机辅助学习可能是有利的,特别是在使用交互式三维(3D)模型来帮助学习复杂的3D结构时尤其如此。大脑的心室系统的解剖结构很难完全理解,因为在3D模式中很少见,而脑脊液(CSF)的流动也很少。本文概述了为大脑心室系统(一个具有教育意义的解剖学领域)创建交互式培训工具的工作流程。此概述基于广泛使用的计算机软件包的使用。\ ud \ ud方法:\ ud使用脑室系统的MR图像以及几种广泛可用的商业和免费软件包,3D建模,纹理化,雕刻,图像编辑技术在创建交互式教育和培训工具时,动画和动画被组合在一起以创建工作流。 \ ud \ ud结果:\ ud我们已经通过使用关键软件包成功创建了一个健壮的方法,该软件用于创建交互式教育和培训工具。这导致了正在开发的应用程序,它使用解剖学上精确的3D模型详细描述了心室系统的解剖结构以及脑脊液的流动。除此之外,此处介绍的已建立的工作流程模式还显示了如何将教程,动画和自我评估工具也可以嵌入到培训应用程序中。\ ud \ ud结论:\ ud通过我们在教育和教育的产生中建立已建立的工作流程演示脑室解剖结构和脑脊液流动的培训材料,在该领域的学生培训中具有巨大的潜力。随着数字时代的迅速发展,它有可能与其他方法一起用作创新工具,以培训未来的医疗从业人员和科学家。此工作流程可用于创建其他工具,这些工具不仅可以开发用于台式机和笔记本电脑,还可以用于智能手机,平板电脑和完全身临其境的立体环境。它也可以作为建立通过触觉交互增强的手术模拟的基础。

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