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Mapping of bioluminescent images onto CT volume surface for dual-modality BLT and CT imaging

机译:将生物发光图像映射到CT体积表面上以进行双模式BLT和CT成像

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We present a method for mapping the two-dimensional (2D) bioluminescent images (BLIs) onto a three-dimensional (3D) body surface derived from the computed tomography (CT) volume data. This mapping includes two closely-related steps, the spatial registration of the 2D BLIs into the coordinate system of the CT volume data and the light flux recovering on the body surface from BLIs. By labeling markers on the body surface, we proposed an effective registration method to achieve the spatial position alignment. The subsequent light flux recovering is presented based on the inverse process of the free-space light transport model and taking the influence of the camera lens diaphragm into account. Incorporating the mapping procedure into the bioluminescence tomography (BLT) reconstruction, we developed a dual-modality BLT and CT imaging framework to provide both optical and anatomical information. The accuracy of the registration and the light flux recovering methods were evaluated via physical phantom experiments. The registration method was found to have a mean error of 0.41 mm and 0.35 mm in horizontal and vertical direction, and the accuracy of the light flux recovering method was below 5%. Furthermore, we evaluated the performance of the dual-modality BLT/CT imaging framework using a mouse phantom. Preliminary results revealed the potential and feasibility of the dual-modality imaging framework.
机译:我们提出了一种方法,用于将二维(2D)生物发光图像(BLI)映射到从计算机断层扫描(CT)体积数据得出的三维(3D)体表上。该映射包括两个密切相关的步骤:将2D BLI在空间上配准到CT体积数据的坐标系中,以及从BLI在体表上恢复的光束。通过在体表上标记标记,我们提出了一种有效的配准方法来实现空间位置对齐。基于自由空间光传输模型的逆过程并考虑了相机镜头光圈的影响,提出了后续的光束恢复方法。将映射过程整合到生物发光层析成像(BLT)重建中,我们开发了一种双模态BLT和CT成像框架,可同时提供光学和解剖学信息。通过物理体模实验评估配准的准确性和光通量恢复方法。发现该配准方法在水平和垂直方向上的平均误差为0.41mm和0.35mm,并且光束恢复方法的精度低于5%。此外,我们评估了使用鼠标体模的双模态BLT / CT成像框架的性能。初步结果揭示了双模态成像框架的潜力和可行性。

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