Thermal noise variance of a receive radiofrequency coil as a respiratory motion sensor

Publication date

2017-01-01

Authors

Andreychenko, AnnaISNI 0000000390144085
Raaijmakers, AJEISNI 0000000396109782
Sbrizzi, AlessandroORCID 0000-0003-3276-4542ISNI 0000000396833383
Crijns, S P MISNI 0000000396863953
Lagendijk, J J WISNI 0000000393637862
Luijten, PeterORCID 0000-0002-8040-8449ISNI 0000000397136870
van den Berg, Cornelis A TORCID 0000-0002-5565-6889

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Article

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taverne

Abstract

Purpose: Development of a passive respiratory motion sensor based on the noise variance of the receive coil array. Methods: Respiratory motion alters the body resistance. The noise variance of an RF coil depends on the body resistance and, thus, is also modulated by respiration. For the noise variance monitoring, the noise samples were acquired without and with MR signal excitation on clinical 1.5/3 T MR scanners. The performance of the noise sensor was compared with the respiratory bellow and with the diaphragm displacement visible on MR images. Several breathing patterns were tested. Results: The noise variance demonstrated a periodic, temporal modulation that was synchronized with the respiratory bellow signal. The modulation depth of the noise variance resulting from the respiration varied between the channels of the array and depended on the channel's location with respect to the body. The noise sensor combined with MR acquisition was able to detect the respiratory motion for every k-space read-out line. Conclusion: Within clinical MR systems, the respiratory motion can be detected by the noise in receive array. The noise sensor does not require careful positioning unlike the bellow, any additional hardware, and/or MR acquisition. 

Keywords

motion correction, motion monitoring, motion sensor, noise, receive RF coil, Taverne, Radiology Nuclear Medicine and imaging, Journal Article

Citation

Andreychenko, A, Raaijmakers, A J E, Sbrizzi, A, Crijns, S P M, Lagendijk, J J W, Luijten, P R & van den Berg, C A T 2017, 'Thermal noise variance of a receive radiofrequency coil as a respiratory motion sensor', Magnetic Resonance in Medicine, vol. 77, no. 1, pp. 221-228. https://doi.org/10.1002/mrm.26108