Quantification of cerebral tumour blood flow and permeability with T1-weighted dynamic contrast enhanced MRI: a feasibility study

J Neuroradiol. 2012 Oct;39(4):227-35. doi: 10.1016/j.neurad.2011.07.001. Epub 2011 Aug 12.

Abstract

Objectives: Recently, T1-weighted DCE-MRI was proposed as an alternative to T2*-weighted DSC-MRI for the quantification of perfusion and permeability in brain tumors. The aim of the present feasibility study was to explore the clinical potential of the technique in different tumor types using a case-based review of initial results.

Patients and methods: The method for data analysis was adapted from cerebral perfusion CT and applied in this study to a small group of patients with grade IV glioma and other brain tumors. The possible use of the proposed methodology was also explored for characterizing, following-up and planning the therapy of brain tumors.

Results: Parametric maps clearly differentiated tumor from the surrounding brain tissue, and also distinguished areas within the tumor presenting with different characteristics, thereby allowing identification of significant target areas for biopsy and/or treatment. Differences in cerebral blood flow (CBF) and lower extraction fractions (E) were observed in various tumors. Progression from a grade II to grade IV glioma over the course of a year was characterized by an increase in CBF and a decrease in E.

Conclusion: DCE-MRI-based quantitative perfusion and permeability may be helpful for tumor-grade characterization, biopsy guidance, radiotherapy planning, radiotherapy monitoring and clinical follow-up, thereby improving the non-invasive characterization of brain tumors.

MeSH terms

  • Adult
  • Brain Neoplasms / blood supply*
  • Brain Neoplasms / pathology*
  • Cerebrovascular Circulation*
  • Contrast Media
  • Feasibility Studies
  • Female
  • Gadolinium DTPA
  • Glioma / blood supply*
  • Glioma / pathology*
  • Humans
  • Image Interpretation, Computer-Assisted
  • Lymphoma / pathology*
  • Magnetic Resonance Imaging / methods*
  • Male
  • Signal-To-Noise Ratio

Substances

  • Contrast Media
  • Gadolinium DTPA