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Simulated Field Maps: Toward Improved Susceptibility Artefact Correction in Interventional MRI

机译:模拟场图:在介入性MRI中改善磁化率伪影校正

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Intraoperative MRI is a powerful modality for acquiring structural and functional images of the brain to enable precise image-guided neurosurgery. In this paper, we propose a novel method for simulating main magnetic field inhomogeneity maps during intraoperative MRI-guided neurosurgery. Our method relies on an air-tissue segmentation of intraoperative patient specific data, which is used as an input to a subsequent field simulation step. The generated simulation can then be used to enhance the precision of image-guidance. We report results of our method on 12 patient datasets acquired during image-guided neurosurgery for anterior lobe resection for surgical management of focal temporal lobe epilepsy. We find a close agreement between the field inhomogeneity maps acquired as part of the imaging protocol and the simulated field inhomogeneity maps generated by the proposed method.
机译:术中MRI是获取大脑结构和功能图像以进行精确的图像引导神经外科手术的强大方法。在本文中,我们提出了一种在术中MRI引导的神经外科手术过程中模拟主磁场不均匀图的新方法。我们的方法依赖于术中患者特定数据的空气组织分割,该数据被用作后续现场模拟步骤的输入。然后可以使用生成的模拟来增强图像引导的精度。我们在12个患者数据集上报告了我们的方法的结果,该图像数据集在图像指导的神经外科前叶切除术中用于局灶性颞叶癫痫的外科治疗。我们发现作为成像协议的一部分而获得的场不均匀性图与通过所提出的方法生成的模拟场不均匀性图之间存在着密切的一致性。

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