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Real time tracking of 3D organ surfaces using single MR image and limited optical viewing

机译:使用单个MR图像和有限的光学视图实时跟踪3D器官表面

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This paper presents the first demonstration of real time 3D tracking of organ deformation based on one-sided, limited view needlescopic optical imaging and a single pre-operative MRI/CT scan. The reconstruction is based on the empirical observation that the spherical harmonic coefficients corresponding to distorted surfaces of any given organ lie in lower dimensional spaces that can be learned during training. The paper discusses the details of the selection of the limited optical views and the registration of the real time partial optical images with the single pre-operative MRI/CT scan. Finally, it demonstrates the first experimental 3D reconstruction of ex-vivo kidneys based on a single MRI scan with 1 mm resolution and real time single side optical imagery achieving spatial resolution of better than 2 mm, even on the hidden organ surface, or less than 1.85% relative error.
机译:本文展示了基于单侧有限视野针镜光学成像和术前单次MRI / CT扫描的器官变形实时3D跟踪的首个演示。该重建基于经验观察,即与任何给定器官的变形表面相对应的球谐系数位于可以在训练期间学习的较低维空间中。本文讨论了使用单次术前MRI / CT扫描选择受限光学视图和配准实时局部光学图像的细节。最后,它展示了基于1 mm分辨率的单次MRI扫描和实时单面光学图像进行的离体肾脏的首次实验性3D重建,即使在隐藏的器官表面上,也可以实现优于2 mm的空间分辨率,甚至小于相对误差1.85%。

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