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Mobile 3D augmented-reality system for ultrasound applications

机译:适用于超声应用的移动3D增强现实系统

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Ultrasound imaging is a highly valuable diagnostic tool. It is increasingly portable, provides real-time imaging of complex structures, and is considered safe. Yet, because ultrasound is a highly operator dependent modality the uptake of ultrasound within a broader range of medical contexts has been limited and hasn't made major inroads within the offices of General Practitioners, Midwives, and other non-specialists. Learning to effectively use ultrasound can easily take up to 12 months with direct expert supervision. To facilitate wider adoption of ultrasound technology we are attempting to determine if using augmented-reality can speed up the process of learning to use ultrasound by providing a patient specific correspondence between the ultrasound data acquired in real-time and a sufficiently detailed augmented 3D scene. We have established a tablet-based system for visualizing the heart within a patients body using augmented-reality techniques in conjunction with the streaming data provided by a GE Vivid E9 ultrasound machine. This system gives the operator visual feedback as to the location of the heart within the body, the anatomical features the echo plane is intersecting and if the operator is currently tracking the left-ventricle.
机译:超声成像是非常有价值的诊断工具。它越来越轻便,可以提供复杂结构的实时成像,并且被认为是安全的。但是,由于超声波是高度依赖操作员的方式,因此超声波在更广泛的医学环境中的使用受到了限制,并且并未在全科医生,助产士和其他非专业人员的办公室内取得重大进展。在专家的直接监督下,学习有效使用超声的过程最多可能需要12个月。为了促进超声技术的更广泛采用,我们正在尝试确定增强现实是否可以通过在实时获取的超声数据与足够详细的增强3D场景之间提供患者特定的对应关系来加快学习使用超声的过程。我们已经建立了一个基于平板电脑的系统,结合增强现实技术和GE Vivid E9超声仪提供的流数据,可以可视化患者体内的心脏。该系统为操作员提供有关心脏在体内的位置,回声平面相交的解剖特征以及操作员当前是否在跟踪左心室的视觉反馈。

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