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Percutaneous bypass: subintimal recanalization of peripheral occlusive disease with IVUS guided luminal re-entry
Ramin R Saketkhoo1, Mahmood K Razavi, Arash Padidar
1Department of Cardiovascular-Interventional Radiology, Stanford University, Stanford, CA, USA.
Insights
This study introduces a new intravascular ultrasound catheter system for controlled re-entry during angioplasty of chronic total occlusions (CTOs). The system successfully re-established blood flow in all patients, improving outcomes for peripheral CTO treatment.
Area of Science:
- Vascular Surgery
- Interventional Cardiology
- Medical Device Technology
Background:
- Chronic total occlusions (CTOs) present challenges in angioplasty, often resulting in lower success rates and longer procedures.
- Subintimal recanalization techniques are hindered by difficulties in achieving controlled re-entry into the true lumen.
Purpose of the Study:
- To evaluate the feasibility and effectiveness of a novel intravascular ultrasound (IVUS) catheter system for controlled true lumen re-entry in peripheral CTOs.
- To assess the impact of this system on technical success rates, procedure times, and patient outcomes.
Main Methods:
- A prospective case series involving 6 patients with lower extremity (LE) ischemia due to CTOs.
- Utilized a 6.2 F dual-lumen catheter with an integrated IVUS scanner (CrossPoint TransAccess) for subintimal crossing and guided re-entry.
- Procedures involved balloon angioplasty and stenting with self-expanding nitinol stents.
Main Results:
- Successful true lumen re-entry and restoration of antegrade flow were achieved in all 6 patients.
- Recanalization times ranged from 5 to 10 minutes.
- All patients experienced resolution of ischemic symptoms at 1- to 5-month follow-up, with no procedure-related complications.
Conclusions:
- The IVUS-guided catheter system facilitates controlled re-entry during subintimal recanalization of peripheral CTOs.
- This approach shows promise for improving technical success, reducing procedure duration, and minimizing complications in CTO angioplasty.
Abstract:
Angioplasty of chronic total occlusions (CTOs) has lower technical success rates with longer procedure times and poorer outcomes. Subintimal recanalization remains limited by the lack of controlled re-entry into the true lumen of the target vessel. We report our experience using a commercially available catheter-based system equipped with an intravascular ultrasound scanner to achieve controlled true lumen re-entry in patients with peripheral CTOs. In a 4-month period, 6 patients with lower extremity (LE) ischemia from CTOs were treated. Occluded segments were crossed subintimally, and controlled re-entry was secured using the CrossPoint TransAccess catheter. This 6.2 F dual-lumen catheter contains an integrated 64-element phased array intravascular ultrasound scanner enabling targeting of structures. Intravascular ultrasound-guided luminal re-entry was achieved by advancing a 24-gauge needle to a desired length and delivering a 0.014" guide wire into the target lumen. The occluded segments were balloon dilated and stented using self-expanding nitinol stents. Effective luminal re-entry and re-establishment of antegrade flow occurred in all 6 patients. Time to recanalization ranged from 5 to 10 minutes. All patients were free of ischemic symptoms at 1 to 5 month follow-up. There were no procedure-related complications. Our preliminary results demonstrate the feasibility of using this catheter system for subintimal recanalization with controlled re-entry in CTOs. This approach can improve the technical success rate, reduce the time of the procedure, and minimize potential complications.
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