While mastery of neuroanatomy is important for the investigation of the brain, there is an increasing interest in exploring the neural pathways to better understand the roles of neural circuitry in brain functions. To tackle the limitations of traditional 2D-display-based neuronavigation software in intuitively visualizing complex 3D anatomies, several virtual reality (VR) and augmented reality (AR) solutions have been proposed to facilitate neuroanatomical education. However, with the increasing knowledge on brain connectivity and the functioning of the sub-systems, there is still a lack of similar software solutions for the education and exploration of these topics, which demand more elaborate visualization and interaction strategies. To address this gap, we designed the immerSive custOmizable Neuro learnIng plAform (SONIA), a novel user-friendly VR software system with a multi-scale interaction paradigm that allows flexible customization of learning materials. With both quantitative and qualitative evaluations through user studies, the proposed system is shown to have high usability, attractive visual design, and good educational value. As the first immersive system that integrates customizable design and detailed narratives of the brain sub-systems for the education of neuroanatomy and brain connectivity, SONIA showcases new potential directions and provides valuable insights regarding medical learning and exploration in VR.
翻译:虽然神经切除术的掌握对大脑调查很重要,但人们越来越有兴趣探索神经途径,以更好地了解神经电路在大脑功能中的作用。为了解决传统 2D 显示性神经导航软件的局限性,直观地将复杂的 3D 解剖术直观化为2D 显示性神经导航软件,提出了几种虚拟现实和扩大的现实(VR)解决方案,以促进神经剖析教育。然而,随着对大脑连接和子系统功能的了解增加,在教育和探索这些主题方面仍然缺乏类似的软件解决方案,这要求更详尽的视觉化和互动战略。为了消除这一差距,我们设计了隐性2D 显示性神经透析软件软件(SONIA),这是一个新的方便用户的VR软件系统,它具有多种规模的互动模式,可以灵活地调整学习材料。通过用户研究对定量和定性评价,拟议的系统显示出高可用性、有吸引力的视觉设计,以及良好的教育价值。作为将神经诊断性神经透析和大脑可视化的可视化系统(VIA) 和可变性脑系统(IA) 系统,它提供了可变化的可图解化和可图象化的可图象化的可图解的系统。