Long-term feasibility of the new sutureless excimer laser-assisted non-occlusive anastomosis clip in a pig model
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2021-02
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Abstract
Background: High flow bypass surgery can be a last resort procedure for patients suffering from complex neurovascular pathology. Temporary occlusion of a recipient artery in these patients could result in debilitating neurological deficits. We developed a sutureless, mechanical anastomotic connection device, the SELANA clip (Sutureless Excimer Laser-Assisted Non-occlusive Anastomosis clip: SEcl). In the present study, we aim to determine the long-term non-inferiority of the SEcl technique compared with historical data of the conventional ELANA anastomosis technique. Methods: A total of 18 SEcl bypasses were created on the carotid artery in a porcine model in 6 different survival groups. Mean application times, flap retrieval rates, hemostasis, patency, flow, endothelialization, and remodeling were assessed. Results: The mean application time of the SEcl anastomoses was 15.2 ± 9.6 min, which was faster compared with the conventional ELANA anastomoses. The flap retrieval rate of the SEcl anastomoses was 86% (32/37). Direct hemostasis was achieved in 89% (33/37) SEcl anastomoses. Patency in all surviving animals was 94% (17/18). Bypass flow after six months was 156.5 ± 24.7 mL/min. Full endothelialization of the SEcl pins was observed after 3 weeks. Conclusion: The SEcl technique is not inferior to the ELANA technique regarding patency, flap retrieval rate, flow, and endothelialization. On the basis of a significantly shorter application time and superior hemostasis, the SEcl technique could be preferable over the ELANA technique. A pilot study in patients is a logical next step based on our current results.
Keywords
Anastomosis, Cerebral revascularization, Device, Non-occlusive, Surgery, Clinical Neurology
Citation
de Boer, B, van Doormaal, T P C, Tulleken, C A F, Regli, L & van der Zwan, A 2021, 'Long-term feasibility of the new sutureless excimer laser-assisted non-occlusive anastomosis clip in a pig model', Acta Neurochirurgica, vol. 163, no. 2, pp. 573-581. https://doi.org/10.1007/s00701-020-04533-0