Partially parallel imaging with localized sensitivities (PILS).
نویسندگان
چکیده
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.
منابع مشابه
Synthetic Target combined with PILS (ST-PILS) for improving SNR in parallel imaging
Introduction: GRAPPA [1] is an effective self-calibrated algorithm for parallel imaging reconstruction. However, GRAPPA can be time-consuming when using a large number of coils because of its coil-by-coil reconstruction nature. PILS [2] (Parallel Imaging with Localized Sensitivities) is another popular reconstruction technique with fast reconstruction speed and high SNR. But it suffers from sev...
متن کاملSingle Coil PILS Imaging Using Phase-Scrambling Fourier Transform Technique
Introduction Parallel image reconstruction using local sensitivities (PILS)[1] accelerate MR scan time by using multiple receiver coil in parallel scan time. We propose a novel imaging technique which is based on the PILS, but uses only a single set of signals. The signal obtained in the phase-scrambling Fourier Transform imaging (PSFT)[2] can be transformed into the signal described by the Fre...
متن کاملGeneralized autocalibrating partially parallel acquisitions (GRAPPA).
In this study, a novel partially parallel acquisition (PPA) method is presented which can be used to accelerate image acquisition using an RF coil array for spatial encoding. This technique, GeneRalized Autocalibrating Partially Parallel Acquisitions (GRAPPA) is an extension of both the PILS and VD-AUTO-SMASH reconstruction techniques. As in those previous methods, a detailed, highly accurate R...
متن کاملA brief tour: from Nuclear Magnetic Resonance to parallel Magnetic Resonance Imaging techniques
This paper is a short review on parallel Magnetic Resonance Imaging techniques: SMASH, PILS, SENSE and GRAPPA. We prefered to start with the basics. Therefore, we first introduce the Magnetic Resonance (MR) principle and the MR simplest experiments. Second, we focus on the techniques of gradient fields used to construct 2D or 3D images. Finally we give a review of the most important reconstruct...
متن کاملParallel Imaging Reconstruction I: Cartesian
Introduction Parallel Imaging is an effective way of accelerating MRI acquisitions. It works by replacing some of the Fourier encoding with spatial sensitivity encoding from multiple localized receiver coils. Fewer k-space locations are visited during the acquisition and to compensate for the missing data, information about the spatial sensitivities of the receiver coils is incorporated into th...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- Magnetic resonance in medicine
دوره 44 4 شماره
صفحات -
تاریخ انتشار 2000