J Korean Soc Magn Reson Med.  2003 Jun;7(1):12-21.

Design of MRI Spectrometer Using 1 Giga-FLOPS DSP

Affiliations
  • 1Department of Electrical Engineering, Kwangwoon University. cbahn@daisy.kw.ac.kr
  • 2ISOL Technology Co.

Abstract

PURPOSE
In order to overcome limitations in the existing conventional spectrometer, a new spectrometer with advanced functionalities is designed and implemented. MATERIALS AND METHODS: We designed a spectrometer using the TMS320C6701 DSP capable of 1 giga floating point operations per second (GFLOPS). The spectrometer can generate continuously varying complicate gradient waveforms by real-time calculation, and select image plane interactively. The designed spectrometer is composed of two parts: one is DSP-based digital control part, and the other is analog part generating gradient and RF waveforms, and performing demodulation of the received RF signal. Each recever board can measure 4 channel FID signals simultaneously for parallel imaging, and provides fast reconstruction using the high speed DSP. RESULTS: The developed spectrometer was installed on a 1.5 Tesla whole body MRI system, and performance was tested by various methods. The accurate phase control required in digital modulation and demodulation was tested, and multi-channel acquisition was examined with phase-array coil imaging. Superior image quality is obtained by the developed spectrometer compared to existing commercial spectrometer especially in the fast spin echo images. CONCLUSION: Interactive control of the selection planes and real-time generation of gradient waveforms are important functions required for advanced imaging such as spiral scan cardiac imaging. Multi-channel acquisition is also highly demanding for parallel imaging. In this paper a spectrometer having such functionalities is designed and developed using the TMS320C6701 DSP having 1 GFLOPS computational power. Accurate phase control was achieved by the digital modulation and demodulation techniques. Superior image qualities are obtained by the developed spectrometer for various imaging techniques including FSE, GE, and angiography compared to those obtained by the existing commercial spectrometer.

Keyword

Spectrometer; Digital signal processor (DSP); Interactive control, Real-time calaulation; Magnetic resonance imaging (MRI)

MeSH Terms

Angiography
Magnetic Resonance Imaging*
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