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In vivo 31P MR spectral patterns and reproducibility in cancer patients studied in a multi-institutional trial.

Publication ,  Journal Article
Arias-Mendoza, F; Payne, GS; Zakian, KL; Schwarz, AJ; Stubbs, M; Stoyanova, R; Ballon, D; Howe, FA; Koutcher, JA; Leach, MO; Griffiths, JR ...
Published in: NMR Biomed
June 2006

The standardization and reproducibility of techniques required to acquire anatomically localized 31P MR spectra non-invasively while studying tumors in cancer patients in a multi-institutional group at 1.5 T are reported. This initial group of patients was studied from 1995 to 2000 to test the feasibility of acquiring in vivo localized 31P MRS in clinical MR spectrometers. The cancers tested were non-Hodgkin's lymphomas, sarcomas of soft tissue and bone, breast carcinomas and head and neck carcinomas. The best accrual and spectral quality were achieved with the non-Hodgkin's lymphomas. The initial analysis of the spectral values of the sum of phosphoethanolamine plus phosphocholine normalized by the content of nucleotide triphosphates in a homogeneous sample of 32 NHL patients studied by in vivo (31)P MRS showed good reproducibility among different institutions. No statistical differences were found between the institution with the largest number of cases accrued and the rest of the multi-institutional NHL data (2.28 +/- 0.64, mean +/- standard error; n = 17, vs 2.08 +/- 0.14, n = 15). The preliminary data reported demonstrate that the institutions involved in this trial are obtaining reproducible 31P MR spectroscopic data non-invasively from human tumors. This is a fundamental prerequisite for the international cooperative group to be able to demonstrate the clinical value of the normalized determination of phosphoethanolamine plus phosphocholine by 31P MRS as predictor for treatment response in cancer patients.

Duke Scholars

Published In

NMR Biomed

DOI

ISSN

0952-3480

Publication Date

June 2006

Volume

19

Issue

4

Start / End Page

504 / 512

Location

England

Related Subject Headings

  • United States
  • Sensitivity and Specificity
  • Reproducibility of Results
  • Phosphorus Compounds
  • Phosphorus
  • Nuclear Medicine & Medical Imaging
  • Neoplasms
  • Magnetic Resonance Spectroscopy
  • Humans
  • Diagnosis, Computer-Assisted
 

Citation

APA
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ICMJE
MLA
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Arias-Mendoza, F., Payne, G. S., Zakian, K. L., Schwarz, A. J., Stubbs, M., Stoyanova, R., … Brown, T. R. (2006). In vivo 31P MR spectral patterns and reproducibility in cancer patients studied in a multi-institutional trial. NMR Biomed, 19(4), 504–512. https://doi.org/10.1002/nbm.1057
Arias-Mendoza, F., G. S. Payne, K. L. Zakian, A. J. Schwarz, M. Stubbs, R. Stoyanova, D. Ballon, et al. “In vivo 31P MR spectral patterns and reproducibility in cancer patients studied in a multi-institutional trial.NMR Biomed 19, no. 4 (June 2006): 504–12. https://doi.org/10.1002/nbm.1057.
Arias-Mendoza F, Payne GS, Zakian KL, Schwarz AJ, Stubbs M, Stoyanova R, et al. In vivo 31P MR spectral patterns and reproducibility in cancer patients studied in a multi-institutional trial. NMR Biomed. 2006 Jun;19(4):504–12.
Arias-Mendoza, F., et al. “In vivo 31P MR spectral patterns and reproducibility in cancer patients studied in a multi-institutional trial.NMR Biomed, vol. 19, no. 4, June 2006, pp. 504–12. Pubmed, doi:10.1002/nbm.1057.
Arias-Mendoza F, Payne GS, Zakian KL, Schwarz AJ, Stubbs M, Stoyanova R, Ballon D, Howe FA, Koutcher JA, Leach MO, Griffiths JR, Heerschap A, Glickson JD, Nelson SJ, Evelhoch JL, Charles HC, Brown TR. In vivo 31P MR spectral patterns and reproducibility in cancer patients studied in a multi-institutional trial. NMR Biomed. 2006 Jun;19(4):504–512.
Journal cover image

Published In

NMR Biomed

DOI

ISSN

0952-3480

Publication Date

June 2006

Volume

19

Issue

4

Start / End Page

504 / 512

Location

England

Related Subject Headings

  • United States
  • Sensitivity and Specificity
  • Reproducibility of Results
  • Phosphorus Compounds
  • Phosphorus
  • Nuclear Medicine & Medical Imaging
  • Neoplasms
  • Magnetic Resonance Spectroscopy
  • Humans
  • Diagnosis, Computer-Assisted