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Intra-cardiac thrombus detection by electrocardiogram-gated cardiac computed tomography in hyperacute ischemic stroke
Daniel S Green1,2, Timmy Pham2,3,4, Dennis J Cordato1,2,4
1South Western Sydney Clinical School, University of New South Wales, Sydney, NSW, Australia.
Insights
Electrocardiogram (ECG)-gated cardiac computed tomography (CT) significantly improves the detection of intra-cardiac thrombus in ischemic stroke patients compared to transthoracic echocardiogram (TTE). This advanced imaging should be considered in hyperacute stroke protocols for better diagnosis.
Area of Science:
- Cardiovascular Imaging
- Neurology
- Radiology
Background:
- Transthoracic echocardiogram (TTE) has limited diagnostic yield for cardioembolic stroke.
- Suspected cardioembolic stroke requires improved diagnostic tools for intra-cardiac thrombus detection.
- Current diagnostic pathways for ischemic stroke often miss cardiac sources of embolism.
Purpose of the Study:
- To evaluate the diagnostic yield of hyperacute electrocardiogram (ECG)-gated cardiac computed tomography (CT) for intra-cardiac thrombus detection.
- To compare the efficacy of ECG-gated cardiac CT against TTE in identifying intra-cardiac thrombus in ischemic stroke patients.
- To assess the utility of cardiac CT within a diverse patient population presenting with acute stroke.
Main Methods:
- Prospective observational analysis of 117 patients undergoing hyperacute stroke imaging.
- Inclusion of ECG-gated cardiac CT as part of the stroke imaging protocol.
- Data collection on demographics, clinical factors, stroke source, and functional outcomes.
Main Results:
- Intra-cardiac thrombus was identified in 26% of ischemic stroke patients via cardiac CT.
- ECG-gated cardiac CT demonstrated a significantly higher detection rate (29%) compared to TTE (2%) for intra-cardiac thrombus.
- Presence of intra-cardiac thrombus correlated with higher rates of hypertension, heart failure, atrial fibrillation/flutter, and intracranial arterial occlusion.
Conclusions:
- ECG-gated cardiac CT offers a substantially higher diagnostic yield for intra-cardiac thrombus than TTE in ischemic stroke.
- Cardiac CT should be integrated into hyperacute stroke imaging protocols.
- Further research is needed to validate these findings in larger, diverse cohorts and explore alternative imaging protocols.
Background:
Traditional workup with transthoracic echocardiogram (TTE) has limited yield in the diagnosis of suspected cardioembolic stroke. The current study aimed to determine the diagnostic yield of hyperacute electrocardiogram (ECG)-gated cardiac computed tomography (CT) in comparison with TTE in the detection of intra-cardiac thrombus amongst patients with ischemic stroke within an ethnically and socioeconomically diverse population.
Methods:
A prospective observational analysis was undertaken of patients who had undergone cardiac CT with prospective ECG-gating as part of a hyperacute stroke imaging protocol at a single comprehensive stroke centre in Sydney, Australia between November 2022 and December 2024. Data related to demographics, clinical assessment, treatment and follow-up functional status were collected in addition to high-risk sources of cardio-aortic stroke.
Results:
A total of 117 patients underwent imaging with ECG-gated cardiac CT as part of their hyperacute stroke assessment. Of 69 (59%) patients with a final diagnosis of ischemic stroke, intra-cardiac thrombus was identified on cardiac CT in 18 patients (26%). Intra-cardiac thrombus was associated with a higher prevalence of premorbid hypertension (94% vs. 67%; p = 0.03), premorbid heart failure (33% vs. 2%; p < 0.001), premorbid atrial fibrillation or atrial flutter (56% vs. 24%; p = 0.01) and intracranial arterial occlusion (83% vs. 49%; p = 0.01). Amongst patients who underwent both cardiac CT and TTE (n = 49; 71%), intra-cardiac thrombus was more likely to be identified on cardiac CT than TTE (29% vs. 2%; p < 0.001). In an unadjusted analysis, more patients had poor functional outcome (modified Rankin scale 4-6) at 3 months if intra-cardiac thrombus was present on cardiac CT (67% vs. 28%; p = 0.03).
Conclusion:
ECG-gated cardiac CT identified intra-cardiac thrombus in 26% of patients who had a final diagnosis of ischemic stroke. The diagnostic yield of intra-cardiac thrombus detection was substantially higher with cardiac CT compared to TTE. Cardiac CT should be considered as part of hyperacute stroke imaging protocols. The unadjusted analysis on functional outcomes is hypothesis generating, limited by imprecision from a small sample size; further investigation requires a larger cohort with multivariable adjustment. Further studies in the hyperacute setting are required to explore benefits in different populations and with alternative imaging acquisition protocols.
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