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Updated: Nov 19, 2025

Role of Diffusion MRI Tractography in Endoscopic Endonasal Skull Base Surgery
Published on: July 5, 2021
Relationship between Pathological Characteristics and Radiological Findings on Perfusion MR Imaging of Meningioma
Atsushi Saito1, Takashi Inoue2, Shinsuke Suzuki2
1Department of Neurosurgery, Kohnan Hospital, Sendai, Miyagi, Japan.
Abstract:
Few studies have reviewed the roles of perfusion magnetic resonance (MR) imaging in the histopathological examination of meningiomas. We analyzed the relationships between radiological findings on perfusion MR imaging and pathological characteristics such as origin of the tumor, mitotic activity, pathological subtype, and perifocal edema formation. The subjects were 21 surgical cases of meningioma preoperatively evaluated by perfusion MR imaging. A region of interest (ROI) was set inside of the tumor, and perifocal edema of the same size, cerebral blood volume (CBV), and cerebral blood flow (CBF) on perfusion MR and diffusion-weighted (DW) imaging were analyzed. These radiological data were evaluated in comparison with histopathological characteristics. On perfusion MR imaging, the average ratio of CBV against the contralateral side was 6.43 (1.13-20.0) and that of CBF was 7.73 (1.34-11.3). There was no significant relationship with perfusion MR imaging data, tumor volume, or perifocal edema volume. However, the large peritumoral edema group often had a higher CBV and CBF than the non-large peritumoral edema group. The skull base group had a significantly higher CBV and lower signal intensity on DW images than the non-skull base group. Signal intensity on DW images was higher in grade II or III than in grade I. Perfusion MR imaging data revealed that the higher ratio of peritumoral edema against tumor size was associated with higher blood flow and blood volume under intratumoral circulatory conditions, and that skull base meningioma had a higher blood volume than non-skull base meningioma.
Insights
Perfusion MRI findings correlate with meningioma characteristics. Higher blood flow and volume are linked to larger edema and skull base tumors, aiding histopathological assessment.
Area of Science:
- Neuroimaging
- Oncology
- Pathology
Background:
- Meningiomas are common primary brain tumors.
- Limited research exists on perfusion MRI's role in meningioma histopathology.
Purpose of the Study:
- To investigate the relationship between perfusion MRI parameters and meningioma histopathological features.
- To assess if perfusion MRI can predict tumor origin, grade, and edema formation.
Main Methods:
- Retrospective analysis of 21 meningioma cases.
- Preoperative perfusion MRI (cerebral blood volume [CBV], cerebral blood flow [CBF]) and diffusion-weighted (DW) imaging.
- Comparison of imaging data with histopathological findings (origin, mitotic activity, subtype, edema).
Main Results:
- No significant correlation found between perfusion MRI data and tumor volume or edema volume.
- Higher CBV and CBF observed in cases with large peritumoral edema.
- Skull base meningiomas showed significantly higher CBV and lower DW signal intensity.
- Higher tumor grades (II/III) correlated with higher DW signal intensity.
Conclusions:
- Perfusion MRI parameters (CBV, CBF) show associations with peritumoral edema and tumor location (skull base).
- DW imaging signal intensity correlates with meningioma grade.
- Perfusion MRI offers valuable insights complementing histopathological examination of meningiomas.
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