Literature DB >> 15764343

Development of a phantom compatible for MRI and hyperthermia using carrageenan gel-relationship between T1 and T2 values and NaCl concentration.

A Yoshida1, H Kato, M Kuroda, K Hanamoto, K Yoshimura, K Shibuya, S Kawasaki, M Tsunoda, S Kanazawa, Y Hiraki.   

Abstract

The authors developed a phantom, designated as the CAGN phantom, compatible for MRI and hyperthermia that is useful in the fundamental studies of non-invasive MR thermometry. The ingredients of this phantom are carrageenan, GdCl3 as a T1 modifier, agarose as a T2 modifier, NaCl as a conductivity modifier, NaN3 as an antiseptic and distilled water. Another phantom that was developed, the CAG phantom, has relaxation times that are adjustable to those of any human tissue. To use this phantom for electromagnetic heating, NaCl was added to change the conductivity of the phantom and clarified the relationship between the conductivity and NaCl concentration. This study examined the relationship between relaxation times and NaCl concentration of the CAGN phantom. The results showed that both T1 and T2 values were affected by NaCl and the experimental results led to the empirical formulae expressing the relationship between the relaxation rates (1/T1, 1/T2) and the concentrations of GdCl3, agarose and NaCl. The appropriate concentrations of T1 and T2 modifiers were calculated from these empirical formulae when making a specified phantom that has the required relaxation times and NaCl concentration.

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Year:  2004        PMID: 15764343     DOI: 10.1080/0265673042000199268

Source DB:  PubMed          Journal:  Int J Hyperthermia        ISSN: 0265-6736            Impact factor:   3.914


  3 in total

1.  Reliable preparation of agarose phantoms for use in quantitative magnetic resonance elastography.

Authors:  Grace McIlvain; Elahe Ganji; Catherine Cooper; Megan L Killian; Babatunde A Ogunnaike; Curtis L Johnson
Journal:  J Mech Behav Biomed Mater       Date:  2019-05-03

2.  A medical device-grade T1 and ECV phantom for global T1 mapping quality assurance-the T1 Mapping and ECV Standardization in cardiovascular magnetic resonance (T1MES) program.

Authors:  Gabriella Captur; Peter Gatehouse; Kathryn E Keenan; Friso G Heslinga; Ruediger Bruehl; Marcel Prothmann; Martin J Graves; Richard J Eames; Camilla Torlasco; Giulia Benedetti; Jacqueline Donovan; Bernd Ittermann; Redha Boubertakh; Andrew Bathgate; Celine Royet; Wenjie Pang; Reza Nezafat; Michael Salerno; Peter Kellman; James C Moon
Journal:  J Cardiovasc Magn Reson       Date:  2016-09-22       Impact factor: 5.364

3.  T1 mapping performance and measurement repeatability: results from the multi-national T1 mapping standardization phantom program (T1MES).

Authors:  Gabriella Captur; Abhiyan Bhandari; Rüdiger Brühl; Bernd Ittermann; Kathryn E Keenan; Ye Yang; Richard J Eames; Giulia Benedetti; Camilla Torlasco; Lewis Ricketts; Redha Boubertakh; Nasri Fatih; John P Greenwood; Leonie E M Paulis; Chris B Lawton; Chiara Bucciarelli-Ducci; Hildo J Lamb; Richard Steeds; Steve W Leung; Colin Berry; Sinitsyn Valentin; Andrew Flett; Charlotte de Lange; Francesco DeCobelli; Magalie Viallon; Pierre Croisille; David M Higgins; Andreas Greiser; Wenjie Pang; Christian Hamilton-Craig; Wendy E Strugnell; Tom Dresselaers; Andrea Barison; Dana Dawson; Andrew J Taylor; François-Pierre Mongeon; Sven Plein; Daniel Messroghli; Mouaz Al-Mallah; Stuart M Grieve; Massimo Lombardi; Jihye Jang; Michael Salerno; Nish Chaturvedi; Peter Kellman; David A Bluemke; Reza Nezafat; Peter Gatehouse; James C Moon
Journal:  J Cardiovasc Magn Reson       Date:  2020-05-07       Impact factor: 5.364

  3 in total

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