An automated method for mapping human tissue permittivities by MRI in hyperthermia treatment planning
- 1 November 1997
- journal article
- Published by IOP Publishing in Physics in Medicine & Biology
- Vol. 42 (11) , 2159-2174
- https://doi.org/10.1088/0031-9155/42/11/011
Abstract
This paper presents an automatic method to obtain tissue complex permittivity values to be used as input data in the computer modelling for hyperthermia treatment planning. Magnetic resonance (MR) images were acquired and the tissue water content was calculated from the signal intensity of the image pixels. The tissue water content was converted into complex permittivity values by monotonic functions based on mixture theory. To obtain a water content map by MR imaging a gradient-echo pulse sequence was used and an experimental procedure was set up to correct for relaxation and radiofrequency field inhomogeneity effects on signal intensity. Two approaches were followed to assign the permittivity values to fat-rich tissues: (i) fat-rich tissue localization by a segmentation procedure followed by assignment of tabulated permittivity values; (ii) water content evaluation by chemical shift imaging followed by permittivity calculation. Tests were performed on phantoms of known water content to establish the reliability of the proposed method. MRI data were acquired and processed pixel-by-pixel according to the outlined procedure. The signal intensity in the phantom images correlated well with water content. Experiments were performed on volunteers' healthy tissue. In particular two anatomical structures were chosen to calculate permittivity maps: the head and the thigh. The water content and electric permittivity values were obtained from the MRI data and compared to others in the literature. A good agreement was found for muscle, cerebrospinal fluid (CSF) and white and grey matter. The advantages of the reported method are discussed in the light of possible application in hyperthermia treatment planning.Keywords
This publication has 21 references indexed in Scilit:
- A 3-D SAR model for current source interstitial hyperthermiaIEEE Transactions on Biomedical Engineering, 1996
- SAR calculations in an anatomically realistic model of the head for mobile communication transceivers at 900 MHz and 1.8 GHzPhysics in Medicine & Biology, 1994
- MR imaging of fat-containing tissues: Valuation of two quantitative imaging techniques in comparison with localized proton spectroscopyMagnetic Resonance Imaging, 1993
- Tissue characterization by image processing subtraction: Windowing of specific T1 valuesMagnetic Resonance Imaging, 1992
- In vivo Quantitative characterization of trabecular bone by NMRMagnetic Resonance in Medicine, 1991
- Evaluation of proton density by magnetic resonance imaging: phantom experiments and analysis of multiple component proton transverse relaxationPhysics in Medicine & Biology, 1990
- 1H-spectroscopic imaging using a modified Dixon methodMagnetic Resonance Imaging, 1988
- Image non-uniformity in magnetic resonance imaging: its magnitude and methods for its correctionThe British Journal of Radiology, 1987
- Simple proton spectroscopic imaging.Radiology, 1984
- Application of Fourier Transform Spectroscopy to Magnetic ResonanceReview of Scientific Instruments, 1966