Related Experiment Video
Updated: Oct 21, 2025

Modeling Brain Metastasis by Internal Carotid Artery Injection of Cancer Cells
Published on: August 2, 2022
Glioblastoma versus solitary brain metastasis: MRI differentiation using the edema perfusion gradient
Fernando Aparici-Robles1, Andjoli Davidhi1, José Miguel Carot-Sierra2
1Servicio de Radiología, Área Clínica de Imagen Médica, Hospital Universitario y Politécnico La Fe, Valencia, Spain.
Background And Purpose:
Differentiation between glioblastoma multiforme (GBM) and solitary brain metastasis (SBM) remains a challenge in neuroradiology with up to 40% of the cases to be incorrectly classified using only conventional MRI. The inclusion of perfusion MRI parameters provides characteristic features that could support the distinction of these pathological entities. On these grounds, we aim to use a perfusion gradient in the peritumoral edema.
Methods:
Twenty-four patients with GBM or an SBM underwent conventional and perfusion MR imaging sequences before tumors' surgical resection. After postprocessing of the images, quantification of dynamic susceptibility contrast (DSC) perfusion parameters was made. Three concentric areas around the tumor were defined in each case. The monocompartimental and pharmacokinetics parameters of perfusion MRI were analyzed in both series.
Results:
DSC perfusion MRI models can provide useful information for the differentiation between GBM and SBM. It can be observed that most of the perfusion MR parameters (relative cerebral blood volume, relative cerebral blood flow, relative Ktrans, and relative volume fraction of the interstitial space) clearly show higher gradient for GBM than SBM. GBM also demonstrates higher heterogeneity in the peritumoral edema and most of the perfusion parameters demonstrate higher gradients in the area closest to the enhancing tumor.
Conclusion:
Our results show that there is a difference in the perfusion parameters of the edema between GBM and SBM demonstrating a vascularization gradient. This could help not only for the diagnosis, but also for planning surgical or radiotherapy treatments delineating the real extension of the tumor.
Insights
Perfusion MRI parameters reveal distinct vascularization gradients in the peritumoral edema, aiding differentiation between glioblastoma multiforme (GBM) and solitary brain metastasis (SBM). This imaging technique improves diagnostic accuracy and treatment planning for brain tumors.
Area of Science:
- Neuroradiology
- Neuro-oncology
- Medical Imaging
Background:
- Distinguishing glioblastoma multiforme (GBM) from solitary brain metastasis (SBM) is challenging with conventional MRI, leading to misclassification in up to 40% of cases.
- Perfusion MRI offers characteristic features that can aid in differentiating these brain pathologies.
Purpose of the Study:
- To investigate the utility of perfusion MRI, specifically focusing on perfusion gradients within the peritumoral edema, for differentiating between GBM and SBM.
Main Methods:
- Conventional and perfusion MRI sequences were acquired from 24 patients with GBM or SBM prior to surgical resection.
- Dynamic susceptibility contrast (DSC) perfusion parameters were quantified in three concentric areas around the tumor.
- Monocompartimental and pharmacokinetic parameters of perfusion MRI were analyzed.
Main Results:
- DSC perfusion MRI models provide valuable information for GBM vs. SBM differentiation.
- Key perfusion parameters (relative cerebral blood volume, relative cerebral blood flow, relative Ktrans, relative volume fraction of interstitial space) showed significantly higher gradients in GBM compared to SBM.
- GBM exhibited greater heterogeneity in the peritumoral edema, with perfusion parameters showing steeper gradients closer to the enhancing tumor.
Conclusions:
- Perfusion parameters in the edema differ between GBM and SBM, indicating a vascularization gradient.
- These findings can enhance diagnostic accuracy and assist in surgical or radiotherapy planning by delineating tumor extent.
More Related Videos
06:44Modeling Brain Metastases Through Intracranial Injection and Magnetic Resonance Imaging
Published on: June 7, 2020
09:09Laser Capture Microdissection of Glioma Subregions for Spatial and Molecular Characterization of Intratumoral Heterogeneity, Oncostreams, and Invasion
Published on: April 12, 2020