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GPU-based Fast 3D UItrasound-Endoscope Image Fusion for Complex-Shaped Objects

机译:基于GPU的快速3D UI超声内窥镜图像融合技术,用于复杂形状的物体

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This paper describes a fast 3D ultrasound-endoscope image fusion technique for complex-shaped objects using GPU-based image processing and multi-planes projection based images mapping. To overcome the small field of view, the lack of image depth and surrounding information of the endoscope, we develop an extended visualization method with the fusion of endoscopic images with a 3-D ultrasound-image. The mosaiced endoscope images are registered to the surface of the 3-D ultrasound model by using a fast GPU-based image rendering method. The 3-D spatial position of the endoscopic images and the ultrasound image are tracked by a 3-D position tracking device for coordination transfer of the two images. Furthermore, we develop a multi-planes projection method for mapping the image onto the complex-shaped objects, especially for the sharp mapping angle. Experimental results show that the system may provide an improved and efficient way of planning and guidance in endoscope based surgical treatment.
机译:本文介绍了一种复杂的物体的快速3D超声-内窥镜图像融合技术,该技术使用基于GPU的图像处理和基于多平面投影的图像映射。为了克服小视野,缺乏内窥镜图像深度和周围信息的问题,我们开发了一种扩展的可视化方法,将内窥镜图像与3-D超声图像融合在一起。镶嵌的内窥镜图像通过使用基于GPU的快速图像渲染方法配准到3-D超声模型的表面。内窥镜图像和超声图像的3D空间位置由3D位置跟踪设备跟踪,以协调传输两个图像。此外,我们开发了一种多平面投影方法,用于将图像映射到复杂形状的对象上,尤其是对于尖锐的映射角度。实验结果表明,该系统可以在基于内窥镜的外科治疗中提供一种改进的高效计划和指导方式。

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