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3D Rigid Registration of Intraoperative Ultrasound and Preoperative MR Brain Images Based on Hyperechogenic Structures

机译:基于超回声结构的术中超声和术前MR脑图像的3D刚性配准

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摘要

The registration of intraoperative ultrasound (US) images with preoperative magnetic resonance (MR) images is a challenging problem due to the difference of information contained in each image modality. To overcome this difficulty, we introduce a new probabilistic function based on the matching of cerebral hyperechogenic structures. In brain imaging, these structures are the liquid interfaces such as the cerebral falx and the sulci, and the lesions when the corresponding tissue is hyperechogenic. The registration procedure is achieved by maximizing the joint probability for a voxel to be included in hyperechogenic structures in both modalities. Experiments were carried out on real datasets acquired during neurosurgical procedures. The proposed validation framework is based on (i) visual assessment, (ii) manual expert estimations , and (iii) a robustness study. Results show that the proposed method (i) is visually efficient, (ii) produces no statistically different registration accuracy compared to manual-based expert registration, and (iii) converges robustly. Finally, the computation time required by our method is compatible with intraoperative use.
机译:由于每个图像模态中包含的信息差异,术中超声(US)图像与术前磁共振(MR)图像的配准是一个具有挑战性的问题。为了克服这个困难,我们引入了一种基于脑高回声结构匹配的新概率函数。在大脑成像中,这些结构是液体界面,例如大脑的福克斯和脑沟,以及当相应组织具有高回声性时的病变。通过最大化两种方式中体素包含在超回声结构中的联合概率来实现配准程序。实验是在神经外科手术过程中获得的真实数据集上进行的。提出的验证框架基于(i)视觉评估,(ii)手动专家估计和(iii)稳健性研究。结果表明,所提出的方法(i)在视觉上是有效的,(ii)与基于手动的专家注册相比,在统计上没有产生差异,并且(iii)稳健地收敛。最后,我们的方法所需的计算时间与术中使用兼容。

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