Impact of Pre-Existing and Newly Diagnosed Atrial Fibrillation on Clinical Outcomes of Patients with Ischaemic Stroke Undergoing Endovascular Thrombectomy: Analysis of Local Data
Abstract
1. Introduction
2. Methods
2.1. Data Resource
2.2. Study Subjects and Outcomes
2.3. Covariates Extraction
2.4. Statistical Analysis
3. Results
3.1. Baseline Characteristic
3.2. Study Outcomes
3.3. Logistic Regression Analysis of AF Status, Length of Stay, and Functional Outcomes
3.4. Cox Proportional Hazards Analysis of AF Status and Mortality Outcomes
4. Discussion
Strengths and Limitations
5. Conclusions
Supplementary Materials
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
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| Characteristic | All | No-AF | Pre-Existing AF | New-AF | p-Value |
|---|---|---|---|---|---|
| N | 138 | 79 | 22 | 37 | |
| Age, years | 66.0 (54.0, 73.0) | 80.5 (72.0, 86.0) | 73.0 (65.0, 79.0) | <0.001 | |
| Female, n (%) | 63 (45.7) | 30 (38.0) | 12 (54.6) | 21 (56.8) | 0.110 |
| NIHSS at admission, score | 19.0 (14.0, 23.0) | 18.0 (13.0, 22.0) | 21.0 (15.0, 24.0) | 19.0 (17.0, 24.0) | 0.288 |
| mRS at admission, scale | 0.0 (0.0, 1.0) | 0.0 (0.0, 0.0) | 1.0 (0.0, 2.0) | 0.0 (0.0, 1.0) | <0.001 |
| Comorbidities, n (%) | |||||
| Congestive cardiac failure, n (%) | 12 (8.7) | 3 (3.8) | 8 (36.4) | 1 (2.7) | <0.001 |
| Hypertension, n (%) | 72 (52.2) | 33 (41.8) | 13 (59.1) | 26 (70.3) | 0.013 |
| Diabetes mellitus, n (%) | 18 (13.0) | 8 (10.1) | 3 (13.6) | 7 (18.9) | 0.385 |
| Prior ischaemic stroke, n (%) | 8 (5.8) | 3 (3.8) | 3 (13.6) | 2 (5.4) | 0.191 |
| Prior TIA, n (%) | 8 (5.8) | 2 (2.5) | 4 (18.2) | 2 (5.4) | 0.025 |
| Medications, n (%) | |||||
| Aspirin, n (%) | 18 (13.0) | 9 (11.4) | 2 (9.1) | 7 (18.9) | 0.501 |
| Clopidogrel, n (%) | 8 (5.8) | 4 (5.1) | 0 (0.0) | 4 (10.8) | 0.261 |
| DOAC, n (%) | 8 (5.8) | 0 (0.0) | 7 (31.8) | 1 (2.7) | <0.001 |
| Warfarin, n (%) | 6 (4.4) | 2 (2.5) | 4 (18.2) | 0 (0.0) | 0.011 |
| ACEI/ARB, n (%) | 50 (36.2) | 23(29.1) | 11 (50.0) | 16 (43.2) | 0.115 |
| Statins, n (%) | 54 (39.1) | 24 (30.4) | 14 (63.6) | 16 (43.2) | 0.015 |
| Beta blockers, n (%) | 43 (31.2) | 14 (17.7) | 16 (72.7) | 13 (35.1) | <0.001 |
| CCB, n (%) | 22 (15.9) | 10 (12.7) | 2 (9.1) | 10 (27.3) | 0.121 |
| Bendroflumethiazide, n (%) | 8 (5.8) | 3 (3.8) | 1 (4.6) | 4 (10.8) | 0.344 |
| Indapamide, n (%) | 4 (2.9) | 2 (2.5) | 0 (0.0) | 2 (5.4) | 0.624 |
| Alpha blockers, n (%) | 5 (3.6) | 2 (2.5) | 1 (4.6) | 2 (5.4) | 0.555 |
| Aldosterone antagonists, n (%) | 6 (4.4) | 1 (1.3) | 4 (18.2) | 1 (2.7) | 0.008 |
| SGL2 inhibitors, n (%) | 2 (1.5) | 0 (0.0) | 0 (0.0) | 2 (5.4) | 0.095 |
| Outcome | All | No-AF | Pre-Existing AF | New-AF | p-Value |
|---|---|---|---|---|---|
| Length of stay, days | 9.5 (4.0, 38.0) | 7.0 (3.0, 28.0) | 18.0 (6.0, 42.0) | 35.0 (6.0, 53.0) | 0.024 |
| Prolonged length of stay, n (%) | 0.023 | ||||
| Length of stay < 38 days | 101 (73.2) | 64 (81.0) | 16 (72.7) | 21 (56.8) | |
| Length of stay ≥ 38 days | 37 (26.8) | 15 (19.0) | 6 (27.3) | 16 (43.2) | |
| † Poor functional outcome (mRS ≥ 3) at discharge, n (%) | 59 (54.1) | 28 (47.5) | 11 (64.7) | 20 (61.0) | 0.304 |
| Hospital all-cause mortality, n (%) | 29 (21.0) | 14 (17.7) | 5 (22.7) | 10 (27.0) | 0.506 |
| 30-day all-cause mortality after admission, n (%) | 23 (16.7) | 11 (13.9) | 5 (22.7) | 7 (18.9) | 0.564 |
| 6-month all-cause mortality after admission, n (%) | 33 (23.9) | 16 (20.3) | 5 (22.7) | 12 (32.4) | 0.354 |
| Unadjusted | Adjusted | ||||
|---|---|---|---|---|---|
| Outcomes | AF Status | OR (95% CI) | p-Value | OR (95% CI) | p-Value |
| Prolonged length of stay | |||||
| No-AF | Reference | Reference | |||
| Pre-existing AF | 1.60 (0.54, 4.78) | 0.400 | 0.85 (0.25, 2.92) | 0.802 | |
| New-AF | 3.25 (1.38, 7.68) | 0.007 | 2.55 (1.01, 6.45) | 0.048 | |
| † Poor functional outcome (mRS ≥ 3) at discharge | No-AF | Reference | Reference | ||
| Pre-existing AF | 2.03 (0.66, 6.21) | 0.215 | 1.23 (0.33, 4.62) | 0.764 | |
| New-AF | 1.70 (0.72, 4.05) | 0.228 | 1.10 (0.42, 2.88) | 0.851 | |
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Elsheikh, S.; Irving, G.J.; Hill, A.M.; Lip, G.Y.H.; Abdul-Rahim, A.H. Impact of Pre-Existing and Newly Diagnosed Atrial Fibrillation on Clinical Outcomes of Patients with Ischaemic Stroke Undergoing Endovascular Thrombectomy: Analysis of Local Data. J. Clin. Med. 2026, 15, 5065. https://doi.org/10.3390/jcm15135065
Elsheikh S, Irving GJ, Hill AM, Lip GYH, Abdul-Rahim AH. Impact of Pre-Existing and Newly Diagnosed Atrial Fibrillation on Clinical Outcomes of Patients with Ischaemic Stroke Undergoing Endovascular Thrombectomy: Analysis of Local Data. Journal of Clinical Medicine. 2026; 15(13):5065. https://doi.org/10.3390/jcm15135065
Chicago/Turabian StyleElsheikh, Sandra, Greg J. Irving, Andrew M. Hill, Gregory Y. H. Lip, and Azmil H. Abdul-Rahim. 2026. "Impact of Pre-Existing and Newly Diagnosed Atrial Fibrillation on Clinical Outcomes of Patients with Ischaemic Stroke Undergoing Endovascular Thrombectomy: Analysis of Local Data" Journal of Clinical Medicine 15, no. 13: 5065. https://doi.org/10.3390/jcm15135065
APA StyleElsheikh, S., Irving, G. J., Hill, A. M., Lip, G. Y. H., & Abdul-Rahim, A. H. (2026). Impact of Pre-Existing and Newly Diagnosed Atrial Fibrillation on Clinical Outcomes of Patients with Ischaemic Stroke Undergoing Endovascular Thrombectomy: Analysis of Local Data. Journal of Clinical Medicine, 15(13), 5065. https://doi.org/10.3390/jcm15135065

