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灵活的实时磁共振成像框架

Flexible real-time magnetic resonance imaging framework.

作者信息

Santos Juan M, Wright Graham A, Pauly John M

机构信息

Dept. of Electr. Eng., Stanford Univ., CA, USA.

出版信息

Conf Proc IEEE Eng Med Biol Soc. 2004;2004:1048-51. doi: 10.1109/IEMBS.2004.1403343.

Abstract

The extension of MR imaging to new applications has demonstrated the limitations of the architecture of current real-time systems. Traditional real-time implementations provide continuous acquisition of data and modification of basic sequence parameters on the fly. We have extended the concept of real-time MRI by designing a system that drives the examinations from a real-time localizer and then gets reconfigured for different imaging modes. Upon operator request or automatic feedback the system can immediately generate a new pulse sequence or change fundamental aspects of the acquisition such as gradient waveforms excitation pulses and scan planes. This framework has been implemented by connecting a data processing and control workstation to a conventional clinical scanner. Key components on the design of this framework are the data communication and control mechanisms, reconstruction algorithms optimized for real-time and adaptability, flexible user interface and extensible user interaction. In this paper we describe the various components that comprise this system. Some of the applications implemented in this framework include real-time catheter tracking embedded in high frame rate real-time imaging and immediate switching between real-time localizer and high-resolution volume imaging for coronary angiography applications.

摘要

磁共振成像在新应用领域的拓展揭示了当前实时系统架构的局限性。传统的实时实现方式可实时连续采集数据并修改基本序列参数。我们通过设计一种系统来扩展实时磁共振成像的概念,该系统从实时定位器驱动检查,然后针对不同成像模式进行重新配置。根据操作员的请求或自动反馈,系统可立即生成新的脉冲序列或更改采集的基本方面,如梯度波形、激发脉冲和扫描平面。该框架通过将数据处理和控制工作站连接到传统临床扫描仪来实现。此框架设计中的关键组件包括数据通信和控制机制、针对实时性和适应性优化的重建算法、灵活的用户界面以及可扩展的用户交互。在本文中,我们描述了构成该系统的各个组件。在此框架中实现的一些应用包括嵌入高帧率实时成像中的实时导管跟踪,以及用于冠状动脉造影应用的实时定位器和高分辨率容积成像之间的即时切换。

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