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In vivo MRI with Concurrent Excitation and Acquisition using Automated Active Analog Cancellation

机译:使用自动主动模拟取消进行并发激励和采集的体内MRI

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摘要

Magnetic resonance imaging (MRI) provides excellent cross-sectional images of the soft tissues in patients. Unfortunately, MRI is intrinsically slow, it exposes patients to severe acoustic noise levels, and is limited in the visualization of certain tissues such as bone. These limitations are partly caused by the timing structure of the MRI exam which first generates the MR signal by a strong radio-frequency excitation and later acquires the weak MRI signal. Concurrent excitation and acquisition (CEA) can overcome these limitations, but is extremely challenging due to the huge intensity difference between transmit and receive signal (up to 100 dB). To suppress the strong transmit signals during signal reception, a fully automated analog cancellation unit was designed. On a 3 Tesla clinical MRI system we achieved an on-resonance analog isolation of 90 dB between the transmit and receive path, so that CEA images of the head and the extremities could be acquired with an acquisition efficiency of higher than 90% at sound pressure levels close to background noise. CEA with analog cancellation might provide new opportunities for MRI in tissues with very short T2 relaxation times, and it offers a silent and time-efficient MRI acquisition.
机译:磁共振成像(MRI)可为患者的软组织提供出色的横截面图像。不幸的是,MRI本质上是缓慢的,它使患者暴露于严重的声音噪声中,并且在某些组织(例如骨骼)的可视化方面受到限制。这些限制部分是由于MRI检查的时序结构引起的,该检查结构首先通过强射频激励生成MR信号,然后获取弱MRI信号。并发激励和采集(CEA)可以克服这些限制,但是由于发射和接收信号之间的巨大强度差异(高达100updB)而极具挑战性。为了抑制信号接收期间的强发射信号,设计了一个全自动模拟消除单元。在3 Tesla临床MRI系统上,我们在发射和接收路径之间实现了90 dB的共振模拟隔离,因此可以在声压下以90%以上的采集效率采集头部和四肢的CEA图像电平接近背景噪声。具有模拟消除功能的CEA可能为T2松弛时间非常短的组织提供MRI的新机会,并且它提供了无声且高效的MRI采集。

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