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Updated: Aug 25, 2025

A Magnetic Resonance Imaging Protocol for Stroke Onset Time Estimation in Permanent Cerebral Ischemia
Published on: September 16, 2017
Subcortical motor ischemia can be detected by intraoperative MRI within 1 h - A feasibility study
Sebastian Ille1,2, Simon Schoen3, Benedikt Wiestler3
1Department of Neurosurgery, Department of Neurosurgery, Klinikum Rechts der Isar, Technische Universität München, Ismaninger Str. 22, 81675, Munich, Germany.
Introduction:
To achieve a maximum extent of resection, intraoperative MRI (ioMRI) scan is frequently performed. Intraoperative diffusion-weighted imaging (DWI) is not standardly performed and has been described to be inferior to early postoperative MRI regarding the detection of ischemia.
Research Question:
This feasibility study evaluates the detection of ischemia by ioMRI and its clinical relevance in patients with motor-eloquent gliomas.
Material And Methods:
Of 262 glioma patients, eight patients (3.1%) showed an amplitude loss of continuous motor evoked potential (MEP) monitoring during resection before the ioMRI scan (group loss of MEP = LOM). In these patients and a matched-pair cohort (MPC) of glioma resections without MEP loss, we performed additional ioMRI sequences including turbo-spin-echo (TSE)- and echo-planar-imaging (EPI)-DWI and perfusion-weighted imaging (PWI). The clinical outcome was measured 5 days and 3 months after surgery.
Results:
The mean ± standard time between loss of MEPs and ioMRI was 63.0 ± 8.7 min (range: 40-84). Ischemia within the motor system could be detected by ioMRI in group LOM in 100% EPI-DWIs, 75% TSE-DWIs, and 66.7% PWIs. No sequence showed motor ischemia in the MPC group. All patients of group LOM and no patient of group MPC suffered from permanent motor deficit.
Discussion And Conclusion:
The current results provide data on the time sequence of ischemia apparent in MRI sequences which is superior to previous data on symptomatic stroke patients on this topic. The early detection of ischemia adds an additional predictor for the long-term outcome of patients and shows the reason of an intraoperative loss of MEPs. Thereby the performance of intraoperative EPI-DWI might be justified after confirmation of the present data in a larger cohort.Subcortical ischemia can be detected by ioMRI after MEP loss during the resection of motor-eloquent gliomas and was clinically relevant in all cases.
Insights
Intraoperative MRI (ioMRI) can detect subcortical ischemia after motor evoked potential (MEP) loss during glioma surgery. Early detection of ischemia via ioMRI is clinically relevant and predicts patient outcomes.
Area of Science:
- Neuro-oncology
- Neuroradiology
- Neurophysiology
Background:
- Intraoperative MRI (ioMRI) is crucial for maximal resection of motor-eloquent gliomas.
- Intraoperative diffusion-weighted imaging (DWI) is not standard and may be inferior to postoperative MRI for ischemia detection.
Purpose of the Study:
- To evaluate the feasibility and clinical relevance of ioMRI for detecting ischemia in patients with motor-eloquent gliomas.
- To assess the utility of ioMRI sequences, including DWI and perfusion-weighted imaging (PWI), following motor evoked potential (MEP) loss.
Main Methods:
- This feasibility study included 262 glioma patients, focusing on 8 with MEP loss (group LOM) and a matched-pair cohort (MPC).
- Additional ioMRI sequences (TSE-DWI, EPI-DWI, PWI) were performed after MEP loss.
- Clinical outcomes were assessed 5 days and 3 months post-surgery.
Main Results:
- ioMRI detected ischemia in 100% of EPI-DWI, 75% of TSE-DWI, and 66.7% of PWI in the LOM group.
- No motor ischemia was detected in the MPC group.
- All patients in the LOM group experienced permanent motor deficits, while none in the MPC group did.
Conclusions:
- Subcortical ischemia can be detected by ioMRI following MEP loss during motor-eloquent glioma resection and is clinically relevant.
- Early detection of ischemia via ioMRI provides insights into MEP loss and predicts long-term patient outcomes.
- Intraoperative EPI-DWI may be justified for detecting ischemia, pending larger cohort validation.

