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Use and abuse of atherectomy: where should it be used?
Gautam V Shrikhande1, James F McKinsey
1Department of Vascular Surgery, Columbia University College of Physicians and Surgeons, New York-Presbyterian Hospital/Columbia, New York, NY 10032, USA.
Insights
Atherectomy devices offer a promising alternative for treating complex peripheral arterial disease lesions by removing plaque without leaving foreign bodies. This approach facilitates easier reintervention and does not hinder future surgical bypass procedures.
Area of Science:
- Vascular Surgery
- Interventional Cardiology
- Medical Device Technology
Background:
- Peripheral arterial disease (PAD) treatment historically relied on surgical bypass.
- Endovascular therapies, including angioplasty and stenting, are now primary PAD treatments.
- Concerns exist regarding the long-term patency and reintervention rates of endovascular stenting.
Purpose of the Study:
- To review various atherectomy devices as an alternative to traditional PAD treatments.
- To discuss the role of atherectomy in managing complex arterial lesions.
- To highlight the advantages of atherectomy over stenting for PAD.
Main Methods:
- Review of multiple atherectomy device types: directional, orbital, rotational, and laser.
- Discussion of clinical series and institutional experience with atherectomy.
- Comparison of atherectomy outcomes with existing PAD treatment modalities.
Main Results:
- Atherectomy devices are effective for complex PAD lesions, particularly in tibial vessels.
- Atherectomy removes obstructive plaque without implanting foreign material (stents).
- Reintervention after atherectomy is generally low-risk and can occur at the same site.
Conclusions:
- Atherectomy is an important emerging treatment for complex PAD lesions.
- Key advantages include plaque removal without foreign body implantation and simplified reintervention.
- Atherectomy preserves options for future surgical bypass, unlike stenting.
Abstract:
Surgical bypass has long been considered the "gold standard" for treatment of peripheral arterial disease. Endovascular therapy with percutaneous transluminal angioplasty and adjunctive stenting has recently become a primary treatment of lower extremity peripheral arterial disease. However, there has been concern regarding the long-term patency of percutaneous interventions and the increased need for reintervention. An alternative to standard percutaneous transluminal angioplasty and stent is the excision of the obstructing arterial plaque using atherectomy devices. There are several different types of atherectomy devices including directional atherectomy devices, such as the SilverHawk Atherectomy (EV3, Minneapolis, MN) device, orbital atherectomy devices, such as the CSI DiamondBack 360 (CSI, Minneapolis, MN) rotational atherectomy device, such as the Pathway Jetstream (Pathway Medical Technologies, Inc., Kirkland, WA), the Rotablator device (Boston Scientific, Natick, MA), and laser atherectomy devices, including the Spectranetics Excimer Laser (Spectranetics, Colorado Springs, CO). All of these devices will be reviewed. Multiple series, including our experience with atherectomy devices, will be discussed. Overall, atherectomy devices have an important emerging role for complex lesions, especially those extending into tibial vessels. Atherectomy devices have the distinct advantage of removing the obstructing atherosclerotic or intimal hyperplastic lesions without the disadvantage of a foreign body such as a stent in the artery. If reintervention is required after atherectomy, this can be generally accomplished at the same site with low risk of complications or discomfort to the patient. Finally, atherectomy also does not preclude use of bypass for the treatment of peripheral arterial disease nor, in most cases, change the anastomotic sites if surgical bypass is required, in contrast to stenting.
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