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首页> 外文期刊>Journal of digital imaging: the official journal of the Society for Computer Applications in Radiology >A Platform Integrating Acquisition, Reconstruction, Visualization, and Manipulator Control Modules for MRI-Guided Interventions
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A Platform Integrating Acquisition, Reconstruction, Visualization, and Manipulator Control Modules for MRI-Guided Interventions

机译:集成采集,重建,可视化和操纵器控制模块的平台,用于MRI引导干预措施

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摘要

This work presents a platform that integrates a customized MRI data acquisition scheme with reconstruction and three-dimensional (3D) visualization modules along with a module for controlling an MRI-compatible robotic device to facilitate the performance of robot-assisted, MRI-guided interventional procedures. Using dynamically-acquired MRI data, the computational framework of the platform generates and updates a 3D model representing the area of the procedure (AoP). To image structures of interest in the AoP that do not reside inside the same or parallel slices, the MRI acquisition scheme was modified to collect a multi-slice set of intraoblique to each other slices; which are termed composing slices. Moreover, this approach interleaves the collection of the composing slices so the same k-space segments of all slices are collected during similar time instances. This time matching of the k-space segments results in spatial matching of the imaged objects in the individual composing slices. The composing slices were used to generate and update the 3D model of the AoP. The MRI acquisition scheme was evaluated with computer simulations and experimental studies. Computer simulations demonstrated that k-space segmentation and time-matched interleaved acquisition of these segments provide spatial matching of the structures imaged with composing slices. Experimental studies used the platform to image the maneuvering of an MRI-compatible manipulator that carried tubing filled with MRI contrast agent. In vivo experimental studies to image the abdomen and contrast enhanced heart on free-breathing subjects without cardiac triggering demonstrated spatial matching of imaged anatomies in the composing planes. The described interventional MRI framework could assist in performing real-time MRI-guided interventions.
机译:这项工作提供了一个平台,该平台将定制的MRI数据采集方案与重建和三维(3D)可视化模块相结合,以及用于控制MRI兼容的机器人设备的模块,以便于实现机器人辅助的MRI引导介入程序的性能。使用动态获取的MRI数据,平台的计算框架生成并更新表示过程区域(AOP)的3D模型。对不驻留在相同或平行切片内的AOP中的感兴趣的图像结构,修改了MRI采集方案,以收集一个彼此切片的多层介绍intoadblique;哪个被称为组合切片。此外,该方法交织了组合切片的收集,因此在类似的时间表中收集所有切片的相同k空间段。该时间匹配k空间段导致各个组合切片中的成像对象的空间匹配。组合切片用于生成并更新AOP的3D模型。通过计算机模拟和实验研究评估MRI采集方案。计算机仿真证明了这些段的K空间分割和时间匹配的交织获取提供了与构图成像的结构的空间匹配。实验研究使用平台来映像MRI兼容机械手的操纵,该机械手携带管道填充有MRI造影剂。在体内实验研究中,在没有心脏触发的无心脏触发的自由呼吸受试者上对腹部和对比增强心脏的实验研究。所描述的介入MRI框架可以有助于执行实时MRI引导干预措施。

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