适应性强、可穿戴和可拉伸线圈:综述。

IF 3 3区 医学 Q2 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING
Thejas Vishnu Ramesh, Folk W. Narongrit, Joseph V. Rispoli
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引用次数: 0

摘要

在过去的四十年里,线圈的设计和开发有了各种各样的发展,从体积线圈到最近引入的无线接收阵列。最近的一个目标是开发线圈,可以密切符合感兴趣的解剖结构,以增加获得的信号。这一目标已经引起了设计范围从自适应发射线圈到使用织物或弹性体基板制成的身体可拉伸接收阵列。本文综述了适应性、可穿戴和可拉伸MRI线圈的设计、制造细节、实验设置和MRI结果。当线圈形状改变时,研究了主动和被动自动调谐和匹配策略,以减轻信噪比的降低。本文还简要讨论了无线MRI线圈,它提供了一种解决方案,以克服与MRI线圈开发相关的布线问题。适应性强、可穿戴、可拉伸的线圈和各种线圈调谐技术代表了创新的射频线圈解决方案,为下一代MRI硬件开发铺平了道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Adaptable, wearable, and stretchable coils: A review

Adaptable, wearable, and stretchable coils: A review

Over the last four decades, there have been various evolutions in the design and development of coils, from volume coils to the recent introduction of wireless receive arrays. A recent aim has been to develop coils that can closely conform to the anatomy of interest to increase the acquired signal. This goal has given rise to designs ranging from adaptable transmit coils to on-body stretchable receive arrays made using fabric or elastomer substrates. This review covers the design, fabrication details, experimental setup, and MRI results of adaptable, wearable, and stretchable MRI coils. The active and passive automatic tuning and matching strategies are examined with respect to mitigating signal-to-noise ratio reduction when the coil form is altered. A brief discussion of wireless MRI coils, which provide a solution to overcome the cabling issues associated with MRI coil development, is also included. The adaptable, wearable, and stretchable coils and various coil tuning techniques represent innovative radiofrequency coil solutions that pave the way for next-generation MRI hardware development.

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来源期刊
CiteScore
6.70
自引率
24.20%
发文量
376
审稿时长
2-4 weeks
期刊介绍: Magnetic Resonance in Medicine (Magn Reson Med) is an international journal devoted to the publication of original investigations concerned with all aspects of the development and use of nuclear magnetic resonance and electron paramagnetic resonance techniques for medical applications. Reports of original investigations in the areas of mathematics, computing, engineering, physics, biophysics, chemistry, biochemistry, and physiology directly relevant to magnetic resonance will be accepted, as well as methodology-oriented clinical studies.
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