Key result
Concomitant PFO closure and AngioVac thrombectomy achieves complete right atrial thrombus removal without propagation.
Case Report (n=1)
No
Concomitant PFO closure and AngioVac thrombectomy is a feasible, minimally invasive approach for patients with right atrial thrombus and paradoxical embolism who have contraindications to thrombolysis.
A 59-year-old male with a history of gallbladder adenocarcinoma receiving chemotherapy and on therapeutic anticoagulation for portal vein thrombosis presented to the emergency department via ambulance after being found unresponsive and in cardiac arrest. Initial workup upon return of spontaneous circulation revealed a large right atrial mass, patent foramen ovale (PFO), and bilateral acute cortical infarctions. This constellation of findings were concerning for PFO-related paradoxical embolic strokes. Given the risk of recurrent paradoxical embolic events and the absolute contraindication to thrombolysis due to recent cerebral infarction, the decision was made to proceed with percutaneous vacuum-assisted thrombectomy using the AngioVac device. To prevent intraoperative thrombus propagation, PFO-closure was performed immediately prior to thrombectomy. Aspiration thrombectomy and PFO-closure were successful with complete thrombus removal and no intraoperative thrombus propagation. This case presents a minimally invasive and rapid treatment for a complex problem. An efficient and effective interdisciplinary team-based approach allowed the patient to resume cancer treatment relatively unabated.
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Callese et al. (2021) conducted a case report in Large right atrial thrombus, patent foramen ovale, and recent paradoxical embolic stroke (n=1). Concomitant AngioVac thrombectomy and PFO closure was evaluated on Successful thrombus removal and prevention of intraoperative thrombus propagation. Concomitant PFO closure and AngioVac aspiration thrombectomy successfully achieved complete thrombus removal without intraoperative thrombus propagation in a patient with a large right atrial mass.
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