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January 1, 2000Magnetic Resonance in Medicine327 citationsOpen Access

Partially parallel imaging with localized sensitivities (PILS)

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MGMark A. GriswoldPJPeter M. JakobMNMathias Nittka

Key Points

  • To present and evaluate a novel imaging technique utilizing localized sensitivities to improve image acquisition speed.
  • Developed a PILS technique using an RF coil array with localized sensitivity patterns.
  • Characterized each coil with two parameters: center of sensitivity region and width of sensitivity region.
  • Demonstrated practical implementation challenges, including coil parameter determination and analysis of SNR and artifact power.
  • PILS technique allows reconstruction of full FOV images from reduced phase encoding steps compared to conventional imaging methods.
  • In vivo PILS images show improved quality and utility, highlighting the technique's effectiveness for MRI applications.

Abstract

In this study a novel partially parallel acquisition method is presented, which can be used to accelerate image acquisition using an RF coil array for spatial encoding. In this technique, Parallel Imaging with Localized Sensitivities (PILS), it is assumed that the individual coils in the array have localized sensitivity patterns, in that their sensitivity is restricted to a finite region of space. Within the PILS model, a detailed, highly accurate RF field map is not needed prior to reconstruction. In PILS, each coil in the array is fully characterized by only two parameters: the center of coil's sensitive region in the FOV and the width of the sensitive region around this center. In this study, it is demonstrated that the incorporation of these coil parameters into a localized Fourier transform allows reconstruction of full FOV images in each of the component coils from data sets acquired with a reduced number of phase encoding steps compared to conventional imaging techniques. After the introduction of the PILS technique, primary focus is given to issues related to the practical implementation of PILS, including coil parameter determination and the SNR and artifact power in the resulting images. Finally, in vivo PILS images are shown which demonstrate the utility of the technique.

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Cite This Study

Griswold et al. (2000) studied this question.

synapsesocial.com/papers/6a1109ccc56c5252651a1428https://doi.org/10.1002/1522-2594(200010)44:4<602::aid-mrm14>3.0.co;2-5
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