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Modeling Interaction for Image-Guided Procedures

机译:图像引导程序建模互动

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Compared to conventional interfaces, Image guided surgery (IGS) interfaces contain a richer variety and more complex objects and interaction types. The main interactive characteristic emerging from systems like this is the interaction focus shared between physical space, where the surgeon interacts with the patient using surgical tools, and with the digital world, where the surgeon interacts with the system. This limitation results in two different interfaces likely inconsistent, thereby the interaction discontinuities do break the natural workflow forcing the user to switch between the operation modes. Our work addresses these features by focusing on the model, interaction and ergonomic integrity analysis considering the Augmented Reality paradigm applied to IGS procedures and more specifically applied to the Neurosurgery study case. We followed a methodology according to the model-based approach, including new extensions in order to support interaction technologies and to ensure continuity interaction according to the IGS system requirements. As a result, designers may as soon as possible discover errors in the development process and may perform an efficient interface design coherently integrating constraints favouring continuity instead of discrete interaction with possible inconsistencies.
机译:与传统接口相比,图像引导手术(IGS)接口包含更丰富的品种和更复杂的对象和交互类型。从这样的系统中出现的主要交互特性是物理空间之间共享的交互焦点,外科医生使用外科工具和数字世界与患者与患者相互作用,外科医生与系统相互作用。这种限制导致两个不同的接口可能不一致,从而互动不连续性确实破坏了强迫用户在操作模式之间切换的自然工作流程。我们的工作通过专注于考虑到IGS程序的增强现实范式和更具体地应用于神经外科学习案例的模型,相互作用和符合人体工程学的分析来解决这些特征。我们按照基于模型的方法进行了一种方法,包括新的扩展,以支持交互技术,并根据IGS系统要求确保连续性交互。结果,设计人员可以在开发过程中尽快发现错误,并且可以执行有效的接口设计,该设计是有利于连续性的约束而不是与可能的不一致性相互作用的离散交互。

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