Intraoperative dynamic susceptibility contrast weighted magnetic resonance imaging (iDSC-MRI) - Technical

Stephan Ulmer1, Michael Helle, Olav Jansen

  • 1Institute of Neuroradiology, University Hospital of Schleswig-Holstein, Kiel, Germany. ulmer@email.com

Neuroimage
|December 23, 2008
PubMed

Insights

Intraoperative dynamic susceptibility contrast MRI (iDSC-MRI) accurately detects residual brain tumors during surgery. This allows for immediate further resection, improving patient outcomes by ensuring complete tumor removal in a single procedure.

Area of Science:

  • Neurosurgery
  • Radiology
  • Medical Imaging

Background:

  • Dynamic susceptibility contrast MRI (DSC-MRI) is crucial for preoperative brain tumor assessment.
  • Intraoperative imaging is needed to confirm complete tumor resection.
  • Challenges include brain shift and contrast leakage affecting accuracy.

Purpose of the Study:

  • To evaluate the feasibility and accuracy of intraoperative DSC-MRI (iDSC-MRI) for detecting residual brain tumors immediately after resection.
  • To assess if iDSC-MRI can guide surgeons to complete tumor removal during the same procedure.

Main Methods:

  • iDSC-MRI was performed on 6 patients during brain tumor removal using a 1.5-Tesla scanner.
  • T2-weighted EPI sequences with contrast agent bolus were used.
  • Calculated perfusion maps (rCBF, rCBV, MTT) were compared to preoperative data and early postoperative MRIs.

Main Results:

  • iDSC-MRI is technically feasible with no significant susceptibility artifacts.
  • In 5/6 patients, complete resection was confirmed intraoperatively with no residual enhancing areas.
  • In 1 patient, residual tumor was identified, and further resection was performed successfully.

Conclusions:

  • iDSC-MRI reliably detects residual brain tumors intraoperatively, even with potential image distortions.
  • This technique enables immediate completion of tumor resection, enhancing surgical outcomes.
  • iDSC-MRI is a valuable tool for neurosurgeons to achieve maximal tumor removal in real-time.