The overall goal of this research is to predict and minimize the radio frequency (RF) losses affecting the success and safety of human head imaging over the 64MHz - 300MHz band. This goal will be pursued by proving the hypothesis: """"""""RF losses in high field MR head imaging can be minimized by appropriate coil design."""""""" The rationale for this study lies in the need to know and control RF dependent transmit power, tissue heating, field penetration, and signal-to-noise for high field human head studies. As part of this collaboration, we have previously reported building a 400-MHz, circularly polarized, 16 element, 15 cm inner diameter x 15 cm length (3/5 scale human coil dimensions) coil was built. We also reported last year obtaining images at 9.4 Tesla with this coil. The homogeneity across the 6-cm head appeared uniform and signal variation averaged 112%. The B1 power required for an optimized 900 flip angle in the monkey's head was a third that required for a human at 4T. Even though the 9.4 T images were not optimized and suffered CNR and SNR due to TE values comparable to T2 we had to use due to current instrumentational limitations, the signal-to-noise ratio in the monkey at 9.4T was approximately twice that of comparable but optimized 4T human images. In the past year, the coil as optimized further and additional imaging studies performed, yielding even better results and gains in SNR, Thus, (1) An efficient homogeneous monkey head coil (3/5 scale human) was built for 400 MHz imaging. (2) Homogeneous monkey head images were acquired at 9.4T without using excessive RF power. (3) Significant signal-to-noise ratio increases were measured at 9.4T in vivo. These results have so far been presented in an abstract form.

Agency
National Institute of Health (NIH)
Institute
National Center for Research Resources (NCRR)
Type
Biotechnology Resource Grants (P41)
Project #
5P41RR008079-09
Application #
6467494
Study Section
Project Start
2001-07-01
Project End
2002-05-31
Budget Start
Budget End
Support Year
9
Fiscal Year
2001
Total Cost
Indirect Cost
Name
University of Minnesota Twin Cities
Department
Type
DUNS #
168559177
City
Minneapolis
State
MN
Country
United States
Zip Code
55455
Herzberg, Max P; Hodel, Amanda S; Cowell, Raquel A et al. (2018) Risk taking, decision-making, and brain volume in youth adopted internationally from institutional care. Neuropsychologia 119:262-270
U?urbil, Kamil (2018) Imaging at ultrahigh magnetic fields: History, challenges, and solutions. Neuroimage 168:7-32
Foell, Jens; Palumbo, Isabella M; Yancey, James R et al. (2018) Biobehavioral threat sensitivity and amygdala volume: A twin neuroimaging study. Neuroimage 186:14-21
Magnitsky, Sergey; Pickup, Stephan; Garwood, Michael et al. (2018) Imaging of a high concentration of iron labeled cells with positive contrast in a rat knee. Magn Reson Med :
Lee, Byeong-Yeul; Zhu, Xiao-Hong; Woo, Myung Kyun et al. (2018) Interleaved 31 P MRS imaging of human frontal and occipital lobes using dual RF coils in combination with single-channel transmitter-receiver and dynamic B0 shimming. NMR Biomed 31:
Wilson, Sylia; Malone, Stephen M; Hunt, Ruskin H et al. (2018) Problematic alcohol use and hippocampal volume in a female sample: disentangling cause from consequence using a co-twin control study design. Psychol Med 48:1673-1684
Nelson, Brent G; Bassett, Danielle S; Camchong, Jazmin et al. (2017) Comparison of large-scale human brain functional and anatomical networks in schizophrenia. Neuroimage Clin 15:439-448
Bolan, Patrick J; Kim, Eunhee; Herman, Benjamin A et al. (2017) MR spectroscopy of breast cancer for assessing early treatment response: Results from the ACRIN 6657 MRS trial. J Magn Reson Imaging 46:290-302
Lyzinski, Vince; Fishkind, Donniell E; Fiori, Marcelo et al. (2016) Graph Matching: Relax at Your Own Risk. IEEE Trans Pattern Anal Mach Intell 38:60-73
Ugurbil, Kamil (2016) What is feasible with imaging human brain function and connectivity using functional magnetic resonance imaging. Philos Trans R Soc Lond B Biol Sci 371:

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