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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >An ultrasonic approach to localization of fiducial markers for interactive, image-guided neurosurgery. I. Principles
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An ultrasonic approach to localization of fiducial markers for interactive, image-guided neurosurgery. I. Principles

机译:超声方法定位交互式标记,图像引导的神经外科手术的基准标记。一,原则

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摘要

Fiducial markers are reference points used in the registration of image space(s) with physical (patient) space. As applied to interactive, image-guided surgery, the registration of image space with physical space allows the current location of a surgical tool to be indicated on a computer display of patient-specific preoperative images. This intrasurgical guidance information is particularly valuable in surgery within the brain, where visual feedback is limited. The accuracy of the mapping between physical and image space depends upon the accuracy with which the fiducial markers were located in each coordinate system. To effect accurate space registration for interactive, image-guided neurosurgery, the use of permanent fiducial markers implanted into the surface of the skull is proposed in this paper. These small cylindrical markers are composed of materials that make them visible in the image sets. The challenge lies in locating the subcutaneous markers in physical space. This paper presents an ultrasonic technique for transcutaneously detecting the location of these markers. The technique incorporates an algorithm based on detection of characteristic properties of the reflected A-mode ultrasonic waveform. The results demonstrate that ultrasound is an appropriate technique for accurate transcutaneous marker localization. The companion paper to this article describes an automatic, enhanced implementation of the marker-localization theory described in this article.
机译:基准标记是在将图像空间与物理(患者)空间配准时使用的参考点。当应用于交互式图像引导手术时,通过将图像空间与物理空间配准,可以在患者特定的术前图像的计算机显示器上指示手术工具的当前位置。在视觉反馈受限制的大脑内手术中,这种术中指导信息特别有价值。物理空间和图像空间之间的映射精度取决于基准标记在每个坐标系中的定位精度。为了实现交互式图像引导神经外科手术的准确空间定位,本文提出了将永久基准标记植入颅骨表面的方法。这些小的圆柱形标记由使它们在图像集中可见的材料组成。挑战在于在物理空间中定位皮下标记。本文提出了一种超声技术,用于经皮检测这些标记物的位置。该技术结合了基于检测反射的A模式超声波形特征特性的算法。结果表明,超声是用于精确经皮标记物定位的合适技术。本文的配套文件描述了本文中描述的标记定位理论的自动增强实现。

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