MicroSUCI: A Microsurgical Background That Incorporates Suction Under Continuous Irrigation

Author:

Papavasiliou Theodora1ORCID,Chatzimichail Stelios1,Khajuria Ankur23,Hong Joon-Pio4ORCID

Affiliation:

1. Research and Development Lab, Stelth, Larnaca, Cyprus

2. Department of Surgery and Cancer, Imperial College London, White City Campus, London, United Kingdom

3. Kellogg College, University of Oxford, Oxford, United Kingdom

4. Department of Plastic and Reconstructive Surgery at Asan Medical Center, University of Ulsan, College of Medicine, Seoul, South Korea

Abstract

AbstractThe microsurgical anastomosis is integral to the success of autologous-free tissue transfer. Successful performance of this procedure relies strongly on operator dexterity, which can be made more challenging when blood and edematous fluids obscure the field of view. Workflow is impeded by intermittent irrigation and suctioning, necessitating presence of an assistant, with risk of arterial thrombosis, from vessels being drawn into suction drains. To negate these current disadvantages and minimize the barrier of entry to microvascular operations, we designed, manufactured, and patented a novel three-dimensional printed microsurgical background device with microfluidic capabilities that allow continuous suction and irrigation as well as provide platforms that enable multiangle retraction to facilitate operator autonomy. This was validated in an ex vivo model, with the device found to be superior to the current standard. We believe that this will have major applicability to the improvement of microsurgeon

Publisher

Georg Thieme Verlag KG

Subject

Surgery

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