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用于并行传输 MRI 研究的 64 通道发射器。

A 64-channel transmitter for investigating parallel transmit MRI.

机构信息

Department of Electrical and Computer Engineering, Texas A&M University, College Station, TX, USA.

出版信息

IEEE Trans Biomed Eng. 2012 Aug;59(8):2152-60. doi: 10.1109/TBME.2012.2196797. Epub 2012 Apr 27.

DOI:10.1109/TBME.2012.2196797
PMID:22552545
Abstract

Multiple channel radiofrequency (RF) transmitters are being used in magnetic resonance imaging to investigate a number of active research topics, including transmit SENSE and B(1) shimming. Presently, the cost and availability of multiple channel transmitters restricts their use to relatively few sites. This paper describes the development and testing of a relatively inexpensive transmit system that can be easily duplicated by users with a reasonable level of RF hardware design experience. The system described here consists of 64 channels, each with 100 W peak output level. The hardware is modular at the level of four channels, easily accommodating larger or smaller channel counts. Unique aspects of the system include the use of vector modulators to replace more complex IQ direct digital modulators, 100 W MOSFET RF amplifiers with partial microstrip matching networks, and the use of digital potentiometers to replace more complex and costly digital-to-analog converters to control the amplitude and phase of each channel. Although mainly designed for B(1) shimming, the system is capable of dynamic modulation necessary for transmit SENSE by replacing the digital potentiometers controlling the vector modulators with commercially available analog output boards. The system design is discussed in detail and bench and imaging data are shown, demonstrating the ability to perform phase and amplitude control for B(1) shimming as well as dynamic modulation for transmitting complex RF pulses.

摘要

多通道射频(RF)发射器正被应用于磁共振成像中,以研究多个活跃的研究课题,包括发射感应加速和 B(1) 匀场。目前,多通道发射器的成本和可用性限制了它们在相对较少的站点的使用。本文描述了一种相对廉价的发射系统的开发和测试,具有一定 RF 硬件设计经验的用户可以轻松复制该系统。本文所述的系统由 64 个通道组成,每个通道的峰值输出水平为 100 W。该硬件在 4 个通道的水平上是模块化的,很容易适应更大或更小的通道数量。该系统的独特之处包括使用矢量调制器代替更复杂的 IQ 直接数字调制器、具有部分微带匹配网络的 100 W MOSFET RF 放大器,以及使用数字电位器代替更复杂和昂贵的数模转换器来控制每个通道的幅度和相位。虽然该系统主要设计用于 B(1) 匀场,但通过用市售的模拟输出板替换控制矢量调制器的数字电位器,该系统能够进行用于发射感应加速的动态调制。本文详细讨论了系统设计,并展示了台架和成像数据,证明了该系统能够进行 B(1) 匀场的相位和幅度控制,以及用于发射复杂 RF 脉冲的动态调制。

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IEEE Trans Biomed Eng. 2012 Aug;59(8):2152-60. doi: 10.1109/TBME.2012.2196797. Epub 2012 Apr 27.
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