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Estimating Bilateral Atrial Function by Cardiovascular Magnetic Resonance Feature Tracking in Patients with Paroxysmal Atrial Fibrillation
Published on: July 20, 2022
MR-imaging pattern is not a predictor of occult atrial fibrillation in patients with cryptogenic stroke
C Vollmuth1,2, S Stoesser1,3, H Neugebauer1,2
1Department of Neurology, University of Ulm, Oberer Eselsberg 45, 89081, Ulm, Germany.
Insights
Insertable cardiac monitors (ICMs) detect atrial fibrillation (AF) in cryptogenic stroke patients, but MRI lesion patterns do not predict AF detection. Lacunar infarcts should not exclude patients from ICM implantation.
Area of Science:
- Neurology
- Cardiology
- Radiology
Background:
- Insertable cardiac monitors (ICMs) are effective for detecting occult atrial fibrillation (AF) in cryptogenic stroke.
- However, the overall AF detection rate with ICMs after 12 months remains low (12.4–33.3%).
- Specific MRI lesion patterns in ischemic stroke patients may indicate cardiogenic embolism and potentially predict AF.
Purpose of the Study:
- To investigate the association between MRI-detected ischemic lesion patterns and AF detection in cryptogenic stroke patients with ICMs.
- To determine if specific MRI findings can predict AF in this patient population.
- To evaluate the role of lacunar infarct patterns in the decision for ICM insertion.
Main Methods:
- Retrospective, observational, single-center study of 104 patients with cryptogenic stroke and ICM implantation.
- Comparison with 166 patients with embolic stroke due to AF detected by long-term ECG.
- Evaluation of MRI lesion patterns: affected territories, distribution (cortical, lacunar, scattered), volume, and size.
Main Results:
- No association found between AF detection and acute lesion size, volume, arterial distribution, or number of territories.
- No significant differences in ischemic patterns (cortical, scattered, lacunar) between AF-positive and AF-negative groups.
- Lacunar infarct patterns were present in 10% of ICM patients with detected AF and 10.9% of ECG-detected AF patients.
- Left atrial size and atrial runs on ECG were independently associated with AF.
Conclusions:
- MRI imaging patterns of acute ischemic lesions do not predict AF detection in cryptogenic stroke patients with ICMs.
- Lacunar infarct patterns should not be an exclusion criterion for ICM implantation in cryptogenic stroke.
- ICM insertion decisions in cryptogenic stroke should not rely solely on infarct patterns observed on MRI.
Background:
To date, insertable cardiac monitors (ICMs) are the most effective method for the detection of occult atrial fibrillation (AF) in cryptogenic stroke. The overall detection rate after 12 months, however, is low and ranges between 12.4 and 33.3%, even if clinical predictors are considered. Ischemic stroke patients due to cardiogenic embolism present with particular lesion patterns. In patients with cryptogenic stroke, MR-imaging pattern may be a valuable predictor for AF.
Methods:
This is an MRI-based, retrospective, observational, comparative, single-center study of 104 patients who underwent ICM implantation after cryptogenic stroke. The findings were compared to a reference group with related stroke etiology, i.e., 166 patients with embolic stroke due to AF detected for the first time by long-term ECG. Lesion patterns were evaluated with regard to affected territories, distribution (cortical, lacunar, scattered), lesion volume, and lesion size (diameter of the lesion size > 20 mm).
Results:
The MR-imaging analysis of acute ischemic lesions yielded no association between AF and lesion size or volume, arterial vessel distribution, or the number of affected territories. There was no significant difference between the cohorts regarding ischemic patterns (cortical lesions, scattered lesions, and lacunar infarcts). An important clinical inference of our findings is that 10% (2 of 20) of cases in the ICM group in whom AF was detected had a lacunar infarct pattern. Similar results were shown in cases of ischemic stroke patients with AF detected for the first time by long-term ECG, with 10.9% (16 of 147) of them showing lacunar infarcts. The analysis of chronic MRI lesions revealed no differences between the groups in the rate of chronic lesions, arterial vessel distribution, or the number of affected territories. Left atrial size (LA size) and the presence of atrial runs in long-term ECG were independently associated with AF.
Conclusions:
In this MRI-based analysis of patients with cryptogenic stroke who had received ICM implantation, the detection rate of AF in patients with ICM was not related to the imaging pattern. In addition, the lacunar infarct pattern should not be an exclusion criterion for ICM insertion in patients with cryptogenic stroke. ICM insertion in patients with cryptogenic stroke should not be evaluated solely on the basis of reference to infarct patterns.
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