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Navigation Accuracy for an Intracardiac Procedure using Ultrasound Enhanced Virtual Reality

机译:使用超声增强的虚拟现实技术进行心内手术的导航精度

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Minimally invasive techniques for use inside the beating heart, such as mitral valve replacement and septal defect repair, are the focus of this work. Traditional techniques for these procedures require an open chest approach and a cardiopulmonary bypass machine. New techniques using port access and a combined surgical guidance tool that includes an overlaid two-dimensional ultrasound image in a virtual reality environment are being developed. To test this technique, a cardiac phantom was developed to simulate the anatomy. The phantom consists of an acrylic box filled with a 7% glycerol solution with ultrasound properties similar to human tissue. Plate inserts mounted in the box simulate the physical anatomy. An accuracy assessment was completed to evaluate the performance of the system. Using the cardiac phantom, a 2mm diameter glass toroid was attached to a vertical plate as the target location. An elastic material was placed between the target and plate to simulate the target lying on a soft tissue structure. The target was measured using an independent measurement system and was represented as a sphere in the virtual reality system. The goal was to test the ability of a user to probe the target using three guidance methods: (ⅰ) 2D ultrasound only, (ⅱ) virtual reality only and (ⅲ) ultrasound enhanced virtual reality. Three users attempted the task three times each for each method. An independent measurement system was used to validate the measurement. The ultrasound imaging alone was poor in locating the target (5.42 mm RMS) while the other methods proved to be significantly better (1.02 mm RMS and 1.47 mm RMS respectively). The ultrasound enhancement is expected to be more useful in a dynamic environment where the system registration may be disturbed.
机译:在心脏跳动中使用的微创技术,例如二尖瓣置换术和间隔缺损修复术,是这项工作的重点。用于这些程序的传统技术需要开胸方法和体外循环机。正在开发使用端口访问和组合手术指导工具的新技术,该组合手术指导工具包括虚拟现实环境中的叠加二维超声图像。为了测试该技术,开发了一种人体模型来模拟解剖结构。幻影由一个丙烯酸盒组成,里面装有7%的甘油溶液,具有类似于人体组织的超声特性。安装在盒子中的板状插入物可模拟物理解剖结构。完成了准确性评估,以评估系统的性能。使用心脏幻影,将直径2mm的玻璃环连接到垂直板上作为目标位置。将弹性材料置于靶和板之间,以模拟位于软组织结构上的靶。使用独立的测量系统测量目标,并在虚拟现实系统中将其表示为球体。目标是使用三种指导方法测试用户探测目标的能力:(ⅰ)仅2D超声,(ⅱ)仅虚拟现实和(ⅲ)超声增强的虚拟现实。对于每种方法,三个用户分别尝试了三次。使用独立的测量系统来验证测量。单独的超声成像不能很好地定位目标(5.42 mm RMS),而其他方法被证明要好得多(分别为1.02 mm RMS和1.47 mm RMS)。在动态环境中,系统注册可能会受到干扰,因此超声增强功能有望发挥更大的作用。

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