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Guthkelch, A.N., Carter, L.P., Cassady, J.R., Hynynen, K.H., Iacono, R.P., Johnson, P.C., Obbens, E.A., Roemer, R.B., Seeger, J.F. and Shimm, D.S. (1991) Treatment of malignant brain tumors with focused ultrasound hyperthermia and radiation: Results of a phase I trial. Journal of Neuro-Oncology, 10, 271-284. doi:10.1007/BF00177540
has been cited by the following article:
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TITLE:
Evaluation of the contrast between tissues and thermal lesions in rabbit in vivo produced by high intensity focused ultrasound using fast spin echo MRI sequences
AUTHORS:
Venediktos Hadjisavvas, Kleanthis Ioannides, Michalis Komodromos, Nikos Mylonas, Christakis Damianou
KEYWORDS:
HIFU; MRI; Kidney; Brain; Liver; Heart; Pancreas
JOURNAL NAME:
Journal of Biomedical Science and Engineering,
Vol.4 No.1,
January
29,
2011
ABSTRACT: In this paper the goal was to measure the contrast to noise ratio (CNR) of fast spin echo (FSE) magnetic resonance imaging (MRI) sequences in detecting thermal lesions created by high intensity focused ul-trasound (HIFU) in rabbit kidney, liver, heart, and brain and lamb pancreas. A spherically focused transducer was used which is navigated inside MRI by a custom made positioning device. A simple simu-lation model was developed which predicts the CNR for the two FSE MRI sequences. The maximum con-trast measured with T1-W FSE ranges from 10 to 25. For all 5 tissues of interest if one uses TR between 400 and 500 ms the contrast is maximized. The T1 and T2 value of lesion depends strongly on the host tissue and is always lower than the host tissue. The greater the difference in T1 value, the greater the CNR. The simulated model for predicting the CNR was proven successful. The CNR measured with T2-W FSE varies between 12 and 15 for all 5 tissues. With T2-W FSE if one uses TE between 40 and 50 ms, the contrast is maximized.
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