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Adaptable, wearable, and stretchable coils: A review.

Thejas Vishnu Ramesh1, Folk W Narongrit1,2, Joseph V Rispoli3

  • 1Weldon School of Biomedical Engineering, Purdue University, West Lafayette, Indiana, USA.

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This review explores adaptable, wearable, and stretchable magnetic resonance imaging (MRI) coils designed to improve signal acquisition. Innovations in radiofrequency coil technology are paving the way for next-generation MRI hardware.

Keywords:
RF coilsadaptableautomatic tuningstretchablewearablewireless MRI

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Area of Science:

  • Medical Imaging
  • Biomedical Engineering
  • Radiofrequency Engineering

Background:

  • Coil design has evolved significantly over four decades, moving from volume coils to advanced wireless receive arrays.
  • Recent efforts focus on developing coils that conform closely to anatomy, enhancing signal acquisition.
  • This has led to innovations like adaptable transmit coils and on-body stretchable receive arrays.

Purpose of the Study:

  • To review the design, fabrication, experimental setup, and MRI results of adaptable, wearable, and stretchable MRI coils.
  • To examine active and passive automatic tuning and matching strategies for maintaining signal-to-noise ratio.
  • To discuss wireless MRI coils as a solution for cabling challenges.

Main Methods:

  • Review of existing literature on adaptable, wearable, and stretchable MRI coil designs.
  • Analysis of fabrication techniques for fabric or elastomer-based coil substrates.
  • Examination of automatic tuning and matching strategies for radiofrequency coils.

Main Results:

  • Adaptable, wearable, and stretchable coils demonstrate potential for improved anatomical conformity and signal acquisition.
  • Automatic tuning and matching strategies effectively mitigate signal-to-noise ratio reduction.
  • Wireless MRI coils offer a promising solution to overcome traditional cabling limitations.

Conclusions:

  • Adaptable, wearable, and stretchable radiofrequency coils represent significant advancements in MRI hardware.
  • These innovations, coupled with advanced tuning techniques, are crucial for developing next-generation MRI systems.
  • The field is moving towards more flexible, conformable, and wireless coil solutions for enhanced MRI performance.