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Pose measurement and tracking system for motion-correction of unrestrained small animal PET/SPECT imaging

机译:用于矫正小动物PET / SPECT影像的运动校正的姿态测量和跟踪系统

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An optical landmark-based pose measurement and tracking system is under development to provide in-scan animal position data for a new SPECT imaging system for unrestrained laboratory animals. The animal position and orientation data provides motion correction during image reconstruction. This paper describes new developments and progress using landmark markers placed on the animal along with strobed infrared lighting with improvements in accuracy for the extraction of head feature positions during motion. A stereo infrared imaging approach acquires images of the markers through a transparent enclosure, segments the markers, corrects for distortion and rejects unwanted reflections. Software estimates intrinsic as well as extrinsic camera calibration parameters and provides a full six degree-of-freedom (DOF) camera-to-camera calibration. A robust stereo point correspondence and 3D measurement calculation based on the fundamental matrix provides the pose at camera frame rates. Experimental testing has been conducted on calibrated fixtures with six DOF measurement capabilities as well as on live laboratory mice. Results show significantly improved accuracy and repeatability of the measurements. The live mouse results have demonstrated that reliable, accurate tracking measurements can be consistently achieved for the full SPECT image acquisition.
机译:正在开发光学地标的姿势测量和跟踪系统,以提供用于无拘无束的实验室动物的新SPECT成像系统的扫描动物位置数据。动物位置和方向数据在图像重建期间提供运动校正。本文介绍了使用放置在动物上的地标标记的新的开发和进展以及闪闪发光的红外照明,在运动期间提取头部特征位置的精度提高。立体声红外成像方法通过透明机箱获取标记的图像,筛分标记,纠正失真并拒绝不需要的反射。软件估计内在的和外在摄像机校准参数,并提供全面的六个自由度(DOF)相机到摄像机校准。基于基础矩阵的强大立体点对应和3D测量计算提供了相机帧速率的姿势。在校准夹具上进行了实验测试,具有六个DOF测量能力以及实时实验室小鼠。结果显示出明显提高了测量的准确性和可重复性。实时鼠标结果已经证明,可以始终如一地实现可靠,准确的跟踪测量,以实现完整的SPECT图像采集。

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