Sutureless Closure of Arterial Cannulation Sites

Author(s):  
Chetan Pasrija ◽  
Daniel A. Bernstein ◽  
Maryjoe Rice ◽  
Douglas Tran ◽  
David Morales ◽  
...  

Objective Percutaneous femoral cannulation for venoarterial extracorporeal membrane oxygenation (ECMO) is commonly performed but percutaneous removal of arterial cannulas has not been broadly accepted. We hypothesized that a system that allows endovascular access to ECMO circuits along with the MANTA® large-bore vascular closure device could be used to successfully close arterial ECMO cannulation sites in a large animal model. Methods Yorkshire swine (40 to 60 kg, n = 2) were used for this study. In the first swine, the infrarenal abdominal aorta was exposed. The aorta was cannulated once using a 15 Fr cannula and twice with a 19 Fr arterial cannula. A novel adaptor system that facilitates endovascular access to ECMO circuits was connected, and a 0.035″ Benston wire was placed through the adaptor and guided into the aorta. The cannula was removed over the wire and manual pressure was applied. The MANTA® sheath was inserted over the wire followed by the closure unit and was deployed. The process was repeated at 2 separate sites. A similar experiment was performed in a second swine, but through a median sternotomy to cannulate the ascending aorta. Results Good hemostasis was achieved at all cannulation sites. Angiography demonstrated unobstructed flow across all closure sites with no evidence of extravasation. Conclusions The data presented here support the use of the MANTA® vascular closure device for the closure of arterial cannulation sites following ECMO decannulation and demonstrates utility of a novel adaptor system for establishing endovascular access in this context.

1995 ◽  
Vol 2 (3) ◽  
pp. 289-296 ◽  
Author(s):  
Michel Henry ◽  
Max Amor ◽  
Mohamed Allaoui ◽  
Olivier Tricoche

Purpose: Given the increasing number of percutaneously applied endovascular therapies, the incidence of access-related vascular complications can be expected to rise, particularly in association with those techniques requiring large sheaths or anticoagulation. The need exists for a safe, easy to use, and effective hemostatic technique to replace the labor-intensive method of manual compression. Methods: A bioabsorbable, sheath-delivered vascular closure device (Angio-Seal™) has been developed that deposits a small collagen plug within the arterial wall to mechanically seal the puncture defect. An anchor connected by suture to the plug is first deployed in the arterial lumen and pulled flush against the interior arterial wall to guard against intraluminal deposition of the collagen. Results: The Angio-Seal device was deployed successfully in 80 (96%) of 83 attempts involving common femoral arteries accessed for peripheral angioplasty (n = 30), coronary angiography (n = 30), and coronary angioplasty (n = 16). Three popliteal artery access sites and one femoropopliteal bypass graft were also treated. Hemostasis was immediate in 78 cases (98%); 2 sites required a 5-minute manual compression to effect a secure seal. Three devices failed to deploy, and manual pressure was used to close the puncture. Nondeployment did not cause any sequelae, and no complications were encountered with the technique. Conclusions: This novel vascular closure device is quick (< 1 minute application time) and simple to use, providing a positive seal of common femoral artery puncture sites for both peripheral and coronary interventions. It appears to be a reliable alternative to standard manual hemostasis.


2020 ◽  

Minimally invasive cardiac surgery such as a mitral valve procedure requires femoral arterial cannulation for extracorporeal circulation. To avoid complications associated with surgical groin incisions, such as seromas and infections, percutaneous cannulation techniques can be used. This video tutorial illustrates percutaneous femoral cannulation and decannulation using a plug-based vascular closure device.


VASA ◽  
2004 ◽  
Vol 33 (2) ◽  
pp. 78-81 ◽  
Author(s):  
Thalhammer ◽  
Aschwanden ◽  
Jeanneret ◽  
Labs ◽  
Jäger

Background: Haemostatic puncture closure devices for rapid and effective hemostasis after arterial catheterisation are a comfortable alternative to manual compression. Implanting a collagen plug against the vessel wall may become responsible for other kind of vascular injuries i.e. thrombotic or stenotic lesions and peripheral embolisation. The aim of this paper is to report our clinically relevant vascular complications after Angio-Seal® and to discuss the results in the light of the current literature. Patients and methods: We report the symptomatic vascular complications in 17 of 7376 patients undergoing diagnostic or therapeutic catheterisation between May 2000 and March 2003 at the University Hospital Basel. Results: Most patients presented with ischaemic symptoms, arterial stenoses or occlusions and thrombotic lesions (n = 14), whereas pseudoaneurysms were extremely rare (n = 3). Most patients with ischaemic lesions underwent vascular surgery and all patients with a pseudoaneurysm were successfully treated by ultrasound-guided compression. Conclusions: Severe vascular complications after Angio-Seal® are rare, consistent with the current literature. There may be a shift from pseudoaneurysms to ischaemic lesions.


VASA ◽  
2013 ◽  
Vol 42 (2) ◽  
pp. 144-148 ◽  
Author(s):  
Daniel Maxien ◽  
Barbara Behrends ◽  
Karla M. Eberhardt ◽  
Tobias Saam ◽  
Sven F. Thieme ◽  
...  

2020 ◽  
Author(s):  
A. El-Sayed Ahmad ◽  
S. Salamate ◽  
M. Amer ◽  
S. Sirat ◽  
Ö. Akhavuz ◽  
...  

Analgesia ◽  
1995 ◽  
Vol 1 (4) ◽  
pp. 598-602 ◽  
Author(s):  
L.D. Napier ◽  
Z. Mateo ◽  
D.A. Yoshishige ◽  
B.A. Barron ◽  
J.L. Caffrey

Sign in / Sign up

Export Citation Format

Share Document