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首页> 外文期刊>Physics in medicine and biology. >Geometrical co-calibration of a tomographic optical system with CT for intrinsically co-registered imaging.
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Geometrical co-calibration of a tomographic optical system with CT for intrinsically co-registered imaging.

机译:层析成像光学系统与CT的几何协同校准,用于固有共配准成像。

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摘要

A mathematical approach for geometric co-calibration of a dual-modal small-animal imaging system is presented. The system comprises an optical imaging setup for in vivo bioluminescence and fluorescence detection, as well as an x-ray CT, both mounted on a common rotatable gantry enabling fully simultaneous imaging at axially overlapping fields-of-view. Geometric co-calibration is performed once by imaging a single cylindrical light-emitting source with both modalities over 360 degrees at two axial positions, respectively. Given the three-dimensional coordinates of the source positions in the reconstructed CT volume data along with their two-dimensional locations projected at the optical detector plane, the following intrinsic system parameters are calculated: (i) the intrinsic geometric parameters of the optical detection system-five parameters for each view and (ii) the relative positional relationship between the optical and CT systems-two parameters for each view. After co-calibration is performed, experimental studies using phantoms demonstrate the high degree of intrinsic positional accuracy between the optical and CT measurements. The most important advantage of this approach is that dual-modal data fusion is accomplished without any post-registration strategies.
机译:提出了一种用于双模式小动物成像系统的几何协同校准的数学方法。该系统包括一个用于体内生物发光和荧光检测的光学成像装置,以及一个X射线CT,两者均安装在一个共同的可旋转机架上,从而能够在轴向重叠的视场内实现完全同时的成像。通过分别在两个轴向位置以360度以上的两种模态对单个圆柱状发光源进行成像,可以执行一次几何协同校准。给定重建的CT体积数据中源位置的三维坐标以及在光学探测器平面投影的二维位置,可以计算以下固有系统参数:(i)光学探测系统的固有几何参数-每个视图五个参数,以及(ii)光学和CT系统之间的相对位置关系-每个视图两个参数。进行共校准后,使用幻像进行的实验研究表明,光学和CT测量之间的固有位置精度很高。这种方法最重要的优点是无需任何后注册策略即可完成双模式数据融合。

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