European Radiology

, Volume 6, Issue 4, pp 518–522 | Cite as

Noninvasive perfusion imaging of human brain tumors with EPISTAR

  • J. Gaa
  • S. Warach
  • P. Wen
  • V. Thangaraj
  • P. Wielopolski
  • R. R. Edelman
Neuroradiology Original Article

Abstract

A total of 17 patients with histologically proven diagnoses of low-grade astrocytoma (n = 4), high-grade astrocytoma (n = 8), lymphoma (n = 3), and meningioma (n = 2) were examined by using EPISTAR MR imaging. Meningiomas had the highest EPISTAR tumor/white matter contrast and low-grade astrocytomas and lymphomas the lowest. High-grade astrocytomas demonstrated elevated EPISTAR signal with marked regional heterogeneity. There was agreement between tumor vascularity by SPECT and EPISTAR in the five cases where both were done. Our results show that tumor vascularity can be assessed qualitatively by using EPISTAR without the need for contrast medium injection.

Key words

Magnetic resonance imaging Echo-planar imaging Brain Neoplasms Perfusion 

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References

  1. 1.
    Felix R, Schörner W, Laniado M et al (1985) Brain tumors: MR imaging with gadolinium-DTPA. Radiology 156: 681–688Google Scholar
  2. 2.
    Schweighofer BW, Klein MV, Wesby G, Hesselink JR (1990) Clinical experience with routine Gd-DTPA administration for MR imaging of the brain. J Comput Assist Tomogr 14: 11–17Google Scholar
  3. 3.
    DiChiro G, Oldfield E, Wright DC et al (1988) Cerebral necrosis after radiotherapy and/or intraarterial chemotherapy for brain tumors: PET and neuropathologic studies. AJR 150: 189–197Google Scholar
  4. 4.
    Schwartz RB, Carvalho PA, Alexander P III, Loeffler JS, Folkerth R, Holman BL (1991) Radiation necrosis vs high-grade recurrent glioma: differentiation by using Tc-99mHMPAO. AJNR 12: 1187–1192Google Scholar
  5. 5.
    Belliveau JW, Rosen BR, Kantor HL et al. (1990) Functional cerebral imaging bt susceptibility-contrast NMR. Magn Reson Med 14: 538–546Google Scholar
  6. 6.
    Edelman RR, Mattle HP, Atkinson DJ et al. (1990) Cerebral blood flow: assessment with dynamic contrast-enhanced T2*-weighted MR imaging at 1.5 T. Radiology 176: 211–220Google Scholar
  7. 7.
    Rosen BR, Belliveau JW, Aaronen HJ et al (1991) Susceptibility contrast imaging of cerebral blood volume: human experience. Magn Reson Med 22: 293–299Google Scholar
  8. 8.
    Maeda M, Itoh S, Kimura H et al. (1993) Tumor vascularity in the brain: evaluation with dynamic susceptibility-contrast MR imaging. Radiology 189: 233–238Google Scholar
  9. 9.
    Aronen HJ, Gazit IE, Louis DN et al (1994) Cerebral blood volume maps of gliomas. Comparison with tumor grade and histologic findings. Radiology 191: 41–51PubMedGoogle Scholar
  10. 10.
    Edelman RR, Siewert B, Darby DG et al (1994) Qualitative mapping of cerebral blood flow and functional localization with echo-planar MR imaging and signal targeting with alternating radiofrequency. Radiology 192: 513–520Google Scholar
  11. 11.
    Kleihues P, Burger PC, Scheithauer BW (1993) Histological typing of tumours of the central nervous system, 2nd edn. Springer, Berlin Heidelberg New YorkGoogle Scholar
  12. 12.
    Daumas-Dupont C, Scheithauer B, O'Fallon J, Kelly P (1988) Grading of astrocytomas: a simple and reproducible method. Cancer 62: 2152–2165Google Scholar
  13. 13.
    Tyler JL, Diksic M, Villemure JG et al (1987) Metabolic and hemodynamic evaluation of gliomas using positron emission tomography. J Nucl Med 28: 1123–1133Google Scholar
  14. 14.
    LeBihan D, Turner R, Patronas N, Douek P (1990) Intravoxel incoherent motion echo-planar imaging and susceptibility induced, contrast-enhanced EPI: comparison of two approaches to real-time perfusion MR Imaging. Radiology 177(P): 120Google Scholar
  15. 15.
    Detre JA, Leigh JS, Williams DS, Koretsky AP (1992) Perfusion imaging. Magn Reson Med 23: 37–45Google Scholar

Copyright information

© Springer-Verlag 1996

Authors and Affiliations

  • J. Gaa
    • 1
    • 3
  • S. Warach
    • 1
    • 3
  • P. Wen
    • 2
    • 3
  • V. Thangaraj
    • 1
    • 3
  • P. Wielopolski
    • 1
    • 3
  • R. R. Edelman
    • 1
    • 3
  1. 1.Department of Radiology, AN-234, MRIBeth Israel HospitalBostonUSA
  2. 2.Department of NeurologyBrigham and Women's HospitalBostonUSA
  3. 3.Harvard Medical SchoolBostonUSA

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