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Endovascular Perforation Model for Subarachnoid Hemorrhage Combined with Magnetic Resonance Imaging MRI
Published on: December 16, 2021
Evaluation of subacute subarachnoid haemorrhage detection using a magnetic resonance imaging sequence: Double
Zahra Mardanshahi1, Maryam Tayebi2, Sajad Shafiee3
1Department of Radiology, Faculty of Medicine, Mazandaran University of Medical Sciences, Sari, Iran.
Background And Objectives:
The diagnosis of subarachnoid hemorrhage (SAH) especially at the subacute stage is still a challenging issue using the conventional imaging modalities. Here we evaluated the role of double inversion recovery (DIR) sequence of MRI compared with the conventional gradient-recalled echo (GRE)-T2*-W and susceptibility-weighted imaging (SWI) sequences in the diagnosis of subacute SAH.
Materials And Methods:
This prospective study was conducted on 21 patients with SAH, which were diagnosed using CT scan at the initial step. In the third week after the injury (14-20 days), all patients underwent a brain MRI exam that included T2*-W, SWI, and DIR imaging sequences. All images were independently read by two radiologists, who were blinded to the clinical history of the patients. The presence or absence of SAH was reviewed and assessed in 6 anatomical regions.
Results:
On the DIR images, 20 patients were found to have at least one subarachnoid signal abnormality, while the SWI and T2*-W images identified SAH areas on 17 and 15 patients, respectively. The highest rate of inter-observer consensus by the DIR sequence was found in the interhemispheric fissure and perimesencephalic area (k = 1). Also, a highest rate of inter-observer consensus using SWI was found in the interhemispheric fissure and posterior fossa cistern area (k = 1). A weak agreement was found in frontal-parietal convexity using SWI (k = 0.447), and in posterior fossa cistern by the T2* sequence (k = 0.447).
Conclusion:
In conclusion, the DIR sequence was more reliable at identifying signal abnormalities in subacute SAH patients than the T2*-W and SWI sequence, and is suggested as a promising imaging technique for detecting hemorrhagic areas without considering the anatomical distribution of SAH.
Insights
Double inversion recovery (DIR) MRI sequences show greater reliability in diagnosing subacute subarachnoid hemorrhage (SAH) compared to gradient-recalled echo (GRE)-T2*-weighted and susceptibility-weighted imaging (SWI). DIR is a promising technique for detecting SAH, regardless of hemorrhage location.
Area of Science:
- Neuroradiology
- Medical Imaging
- Neuroscience
Background:
- Diagnosing subarachnoid hemorrhage (SAH) in the subacute stage presents challenges with conventional imaging.
- Gradient-recalled echo (GRE)-T2*-weighted and susceptibility-weighted imaging (SWI) are commonly used but have limitations.
Purpose of the Study:
- To evaluate the diagnostic performance of the double inversion recovery (DIR) MRI sequence.
- To compare DIR with GRE-T2*-W and SWI for detecting subacute SAH.
Main Methods:
- Prospective study of 21 patients with confirmed SAH.
- Brain MRI including T2*-W, SWI, and DIR sequences performed 14-20 days post-injury.
- Independent, blinded assessment of SAH by two radiologists across six anatomical regions.
Main Results:
- DIR identified subarachnoid signal abnormalities in 20/21 patients.
- SWI detected SAH in 17/21 patients, and T2*-W in 15/21 patients.
- DIR demonstrated the highest inter-observer agreement, particularly in the interhemispheric fissure and perimesencephalic area.
Conclusions:
- The DIR sequence is more reliable for diagnosing subacute SAH than T2*-W and SWI.
- DIR is a promising MRI technique for detecting hemorrhagic areas in SAH.
- DIR's effectiveness is independent of the anatomical distribution of the SAH.
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