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A novel approach to the visualization of four-dimensional cerebral angiography with cine angiography data measured at several views

机译:用近几种视图测量的二维脑血管造影的可视化的一种新方法

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Intracranial arteriovenous malformation (AVM) has a very complex shape, so it is very difficult to decide the targeted region accurately. Intracranial AVM causes convulsion and cerebral hemorrhage, and is therefore a deadly disease. At the present time, as a treatment for AVM, stereotactic radiosurgery is more useful than surgical treatment or chemotherapy. In this radiation therapy, the accuracy of radiosurgical treatment planning for intracranial AVM relies on requiring accurate information of the three dimensional shape and size of the AVM nidus. In conventional radiosurgical treatment planning for intracranial AVM, irradiation fields are determined with dynamic X-ray CT images or angiography of the brain. However, intracranial AVM is complicated in structure, so it is usually very difficult to determine the AVM nidus accurately. The purpose of this study is to clarify the AVM nidus accurately. In order to clarify its region, we proposed a novel method with a cardio-vascular X-ray system with flat panel detector. Our proposed method uses cine angiography measured at several views, and reconstructs a four- dimensional image with these projection data. Also, we tried to reconstruct images with several iterative reconstruction algorithms for transmission tomography. In this paper, we proposed this novel method and showed the validity of our proposed method with some simulations and fundamental experiments.
机译:颅内动脉畸形(AVM)具有非常复杂的形状,因此非常困难准确地决定目标区域。颅内AVM引起惊厥和脑出血,因此是一种致命的疾病。目前,作为AVM的治疗,立体定向放射牢比外科治疗或化疗更有用。在这种放射治疗中,颅内治疗计划的准确性颅内治疗规划依赖于需要准确信息的三维形状和AVM NIDU的大小。在颅内AVM的传统放射诊断计划中,用动态X射线CT图像或大脑的血管造影确定辐射场。然而,颅内AVM结构复杂,因此通常非常难以准确地确定AVM NIDUS。本研究的目的是准确阐明AVM Nidus。为了澄清其地区,我们提出了一种具有带平板检测器的心动血管X射线系统的新方法。我们所提出的方法使用在几个视图下测量的Cine血管造影,并通过这些投影数据重建四维图像。此外,我们尝试用几种迭代重建算法重建图像,用于传输断层扫描。在本文中,我们提出了这种新方法,并显示了我们提出的方法与一些模拟和基本实验的有效性。

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