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Published on: May 14, 2013
The nitinol vascular occlusion plug: preliminary experimental evaluation in peripheral veins
M J Sharafuddin1, X Gu, M Urness
1Department of Radiology, University of Iowa Hospitals & Clinics, Iowa City, USA.
Journal of Vascular and Interventional Radiology : JVIR
|June 29, 2000
Summary
The nitinol occlusion plug offers faster vein occlusion and lower recanalization rates compared to stainless steel coils in peripheral veins. This vascular occlusion device shows promising results for minimally invasive procedures.
Area of Science:
- Vascular Surgery
- Interventional Radiology
- Biomaterials Science
Background:
- Peripheral venous occlusion is crucial for managing various vascular conditions.
- Traditional methods like stainless steel coils have limitations, including recanalization and migration.
- Novel devices are needed to improve occlusion efficacy and reduce complications.
Purpose of the Study:
- To compare the efficacy of a nitinol occlusion plug against standard stainless steel coils.
- To evaluate occlusion time, recanalization, and migration rates in moderate-size peripheral veins.
Main Methods:
- A nitinol plug, a self-expanding braided device with polyester fibers, was tested.
- Ten occlusion procedures were performed in five dogs using a retrograde transjugular venous approach.
- Nitinol plugs and Gianturco coils were deployed in femoropopliteal veins, with follow-up venography and explantation at 1 month.
Main Results:
- Nitinol plugs achieved significantly faster occlusion times (4.2 minutes) versus coils (25.6 minutes).
- At 1 month, only 20% of nitinol occluders showed recanalization or migration, compared to 80% of coil-doublets.
- Histopathology revealed organized matrix and intimal proliferation in nitinol-occluded veins.
Conclusions:
- A single nitinol occluder is superior to two Gianturco coils for achieving rapid and durable occlusion in moderate peripheral veins.
- The nitinol plug demonstrates a significantly lower rate of recanalization and migration.
- This device represents a potentially more effective solution for peripheral venous occlusion.

