Abstract
Background: Mechanical thrombolysis may effectively enhance the efficacy of thrombolysis for hyperacute ischemic stroke patients. Purpose: To assess the feasibility and results of simple mechanical-based thrombolysis using microwire and microcatheter with adjuvant low-dose intraarterial (i.a.) urokinase (UK) for the treatment of hyperacute ischemic stroke. Material and Methods: Nineteen consecutive patients with hyperacute proximal middle cerebral artery (MCA) occlusions treated by a standardized protocol using microwire and microcatheter for mechanical thrombus disruption with adjuvant i.a. UK were reviewed. Simple to-and-fro passages through the clot with the microwire and microcatheter followed by disruptions by a J- or pigtail-shaped wire tip with alternating small-dose injections of UK distal, within, and proximal to the clot were performed. The recanalization rates, post-thrombolysis hemorrhage, and clinical outcome (baseline and discharge National Institute of Health Stroke Scale [NIHSS], mortality, 3-month modified Rankin scale [mRS]) were evaluated. Results: Recanalization was achieved in 18 of 19 patients (94.7%). The mean UK dose was 375,789IU (range 130,000580,000IU). Two patients (10.5%) developed symptomatic hemorrhage. One of the hemorrhages included a patient who developed subarachnoid hemorrhage. Mortality rate was 15.8% (n = 3). The median baseline NIHSS scores showed improvement from 17 to 10 at presentation and discharge, respectively. At three months, good outcome was noted in 11 of 19 patients (57.9%, mRS 02). Conclusion: Simple mechanical-based thrombolysis using microwire and microcatheter with adjuvant low-dose i.a. UK is safe and effective in achieving recanalization with good long-term outcome.
Original language | English |
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Pages (from-to) | 351-357 |
Number of pages | 7 |
Journal | Acta Radiologica |
Volume | 49 |
Issue number | 3 |
DOIs | |
Publication status | Published - 2008 |
All Science Journal Classification (ASJC) codes
- Radiological and Ultrasound Technology
- Radiology Nuclear Medicine and imaging