首页> 外文会议>Medical Imaging 2000: Image Display and Visualization >Mapping of endoscopic images to object surfaces via ray-traced texturemapping for image guidance in neurosurgery,
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Mapping of endoscopic images to object surfaces via ray-traced texturemapping for image guidance in neurosurgery,

机译:通过射线追踪纹理贴图将内窥镜图像映射到对象表面,以在神经外科手术中进行图像引导,

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Abstract: A major limitation of the use of endoscopes in minimally invasive surgery is the lack of relative context between the endoscope and its surroundings. The purpose of this work is to map endoscopic images to surfaces obtained from 3D preoperative MR or CT data, for assistance in surgical planning and guidance. To test our methods, we acquired pre- operative CT images of a standard brain phantom from which object surfaces were extracted. Endoscopic images were acquired using a neuro-endoscope tracked with an optical tracking system, and the optical properties of the endoscope were characterized using a simple calibration procedure. Registration of the phantom and CT images was accomplished using markers that could be identified both on the physical object and in the pre-operative images. The endoscopic images were rectified for radial lens distortion, and then mapped onto the extracted surfaces via a ray-traced texture- mapping algorithm, which explicitly accounts for surface obliquity. The optical tracker has an accuracy of about 0.3 mm, which allows the endoscope tip to be localized to within mm. The mapping operation allows the endoscopic images to be effectively 'painted' onto the surfaces as they are acquired. Panoramic and stereoscopic visualization and navigation of the painted surfaces may then be reformed from arbitrary orientations, that were not necessarily those from which the original endoscopic views were acquired. !18
机译:摘要:在微创外科手术中使用内窥镜的主要限制是内窥镜及其周围环境之间缺乏相对背景。这项工作的目的是将内窥镜图像映射到从3D术前MR或CT数据获得的表面,以帮助进行手术计划和指导。为了测试我们的方法,我们获取了标准脑模的术前CT图像,并从中提取了对象表面。使用通过光学跟踪系统跟踪的神经内窥镜获取内窥镜图像,并使用简单的校准程序对内窥镜的光学特性进行表征。幻影和CT图像的配准是使用可以在物理对象和术前图像中都可以识别的标记完成的。对内窥镜图像进行校正以解决径向透镜畸变,然后通过光线跟踪纹理映射算法将其映射到提取的表面上,该算法明确考虑了表面倾斜度。光学跟踪器的精度约为0.3毫米,这可以使内窥镜尖端定位在毫米范围内。映射操作使内窥镜图像在获取时可以有效地“绘制”在表面上。然后可以从任意方向重新构造喷漆表面的全景和立体可视化以及导航,这些方向不一定是从其获取原始内窥镜视图的方向。 !18

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