Related Experiment Video
Updated: Jun 26, 2026

Quantitative Magnetic Resonance Imaging of Skeletal Muscle Disease
Published on: December 18, 2016
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
Abstract:
DSC-MRI was applied intraoperatively during brain tumor removal. Immediately after presumed complete tumor resection an MRI including a dynamic susceptibility contrast T2-weighted EPI sequence was performed in 6 patients while the skull was still open using a flexible two-channel coil system at an intraoperative 1.5-Tesla MR scanner. After an initial baseline period of this iDSC-MRI sequence a bolus of contrast agent was administered intravenously. Maps of relative regional blood flow (rCBF), blood volume (rCBV) and the mean transit time (MTT) were calculated. These maps were compared to preoperatively acquired DSC-MRI data. The extent of the resection was compared with the postoperative MRI performed 24 h after the operation. In five patients complete tumor removal was already achieved at the time of iDSC-MRI and no areas of elevated perfusion values adjacent to the resection cavity were found. Complete removal was again documented on the postoperatively performed MRI. In one case there was residual tumor that showed both contrast enhancement and identical perfusion ratios as in the preoperatively acquired data. Removal of the remaining tumor was performed. iDSC-MRI is technically feasible as there are no significant susceptibility artifacts. DSC-MRI has been used to distinguish different tumor entities preoperatively and recurrent disease from radiation necrosis. Despite brain shift and thus invalidated preoperative image data or contrast leakage caused by intraoperative manipulation, iDCS-MRI furthermore reliably detects residual tumor intraoperatively at a timepoint where further resection is still possible and thus enables the neurosurgeon to complete the resection during the same procedure.
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.
Related Concept Videos
Magnetic Resonance Imaging
Imaging Studies for Cardiovascular System IV: CMRI

