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Implementation of a Novel, Integrative Approach for Optical 3D Positional Tracking towards Accurate Co-registered Imaging Using Hand-Held Optical Imagers

机译:新型,集成方法的实现,用于使用手持式光学成像仪对3D位置进行精确的共同配准成像的光学3D位置跟踪

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Hand-held optical imaging devices are one of the recent developments in the area of near-infrared optical imaging, used to non-invasively image breast cancer. Many of these imagers obtain measurements that can be easily contaminated by motion artifacts. The current work presents the implementation of a novel, custom build and miniaturized tracking system utilized alongside a unique co-registration approach for obtaining accurate NIR optical images using hand-held devices. The tracking system uses two CCD cameras, 4 LED s for the wand and 4 LEDs for the patient markers alongside a custom built algorithm to accurately determine 3D positions of the probe and patient in space. This is all done at fraction of the cost of commercially available trackers with acceptable accuracy, stability and precision. Studies are done using curved surfaces to estimate positional information and co-register images based on such positions onto their true locations. This novel approach shows a unique method for obtaining, co-registering and positioning optical images by synchronizing and integrating multiple independent systems using custom-built tracking methodology toward accurate 3D co-registration and tissue-characteristic 3D reconstructions. This integrative approach shows great promise for the development of a commercial system that can be implemented on multiple types of hand-held imagers.
机译:手持式光学成像设备是近红外光学成像领域的最新进展之一,用于非侵入性成像乳腺癌。这些成像仪中有许多获得的测量值很容易被运动伪影污染。当前的工作提出了一种新颖的,定制的构建和小型化的跟踪系统的实现,该系统与独特的共配准方法一起使用,以使用手持设备获得准确的NIR光学图像。跟踪系统使用两个CCD摄像机,用于棒的4个LED和用于患者标记的4个LED以及定制的算法来精确确定探测器和患者在空间中的3D位置。所有这些都以市售跟踪器成本的一小部分完成,并具有可接受的精度,稳定性和精确度。使用曲面进行研究以估计位置信息,并根据此类位置将图像共同配准到它们的真实位置。这种新颖的方法显示了一种独特的方法,该方法通过使用定制跟踪方法将多个独立系统同步并集成到准确的3D共配准和组织特征3D重建中来获取,共配准和定位光学图像。这种集成方法为开发可在多种类型的手持式成像仪上实现的商业系统显示了广阔的前景。

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