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Updated: Jul 7, 2026

Closure of a Patent Foramen Ovale (PFO): An Intervention Sequence
Published on: December 23, 2022
Single centre experience with GORE-HELEX septal occluder for closure of PFO
Francis A Ponnuthurai1, William J van Gaal, Amy Burchell
1Department of Cardiology, John Radcliffe Hospital, Oxford, United Kingdom. larryponnuthurai@googlemail.com
Insights
Percutaneous closure of patent foramen ovale (PFO) using the GORE-HELEX device is safe and feasible. This routine strategy shows excellent short-term results with no major complications in adult patients.
Area of Science:
- Cardiology
- Interventional Cardiology
- Medical Devices
Background:
- Patent foramen ovale (PFO) closure is a common procedure.
- Various devices are available for percutaneous PFO closure.
- The GORE-HELEX septal occluder has been used routinely for PFO closure.
Purpose of the Study:
- To evaluate the safety and feasibility of routine percutaneous PFO closure using the GORE-HELEX septal occluder.
- To assess short-term outcomes with 3-month transthoracic echocardiogram (TTE) follow-up.
Main Methods:
- A retrospective review of 75 adult patients referred for PFO closure.
- Routine use of the GORE-HELEX device for PFO closure, followed by aspirin therapy.
- Pre-procedural echocardiography and 3-month TTE follow-up.
Main Results:
- 68 out of 69 patients (98.6%) underwent successful PFO closure with the GORE-HELEX device.
- Device retrieval was required in 6 cases, with 5 successfully replaced.
- No major peri-procedural complications were observed.
- At 3-month follow-up, 95.6% of patients had no residual shunt on TTE.
Conclusions:
- Percutaneous PFO closure with the GORE-HELEX septal occluder is a safe and feasible strategy.
- The device demonstrates excellent short-term efficacy with minimal residual shunting.
- This approach is associated with no major complications.
Abstract:
Several devices are available for percutaneous patent foramen ovale (PFO) closure. Over the past 3 years our planned treatment strategy of PFO closure has been routine use of the GORE-HELEX septal occluder device, followed by 6 months of aspirin therapy. We present the safety and feasibility of routinely using this device for all patients undergoing percutaneous PFO closure, with 3-month transthoracic echocardiogram (TTE) follow up. In total, 75 adult patients (44.0+/-11.7 years; 45.3% male) were referred for PFO closure during the study period. All patients underwent echocardiography prior to PFO closure. In 5 patients no PFO was found, and 1 patient had an atrial secundum defect closed using the Amplatzer septal occluder. Of the 69 remaining patients with PFO, 68/69 (98.6%) underwent closure with the GORE-HELEX device. Six of 69 cases required device retrieval and 5 of 6 were replaced successfully with a second GORE-HELEX device. One of the 6, a large PFO associated with atrial septal aneurysm, was replaced using the Amplatzer septal occluder. There were no major complications. At 3-month follow up, 65/68 (95.6%) had no residual shunt on TTE, and 3 patients had small residual shunts thought to be related to incomplete endothelialisation at 3 months. In conclusion, percutaneous PFO closure using the GORE-HELEX septal occluder device is safe and feasible, with no major peri-procedural complications and excellent short-term results at 3-month follow up.
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