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Hemostasis in endoscopic endonasal skull base surgery using the Aquamantys bipolar sealer: Technical note

  • Stony Brook University
  • Albert Einstein College of Medicine

Research output: Contribution to journalArticlepeer-review

6 Scopus citations

Abstract

Background A major challenge during endoscopic transsphenoidal surgery is adequate intraoperative hemostasis. The Aquamantys® is a relatively new bipolar sealing device which uses radiofrequency energy and saline. This promotes hemostasis while decreasing charring and thermal spread. In this paper, we describe our experience with the Aquamantys® Mini EVS 3.4 Epidural Vein Sealer Bipolar Electrocautery System (Medtronic Advanced Energy, Portsmouth, NH, USA) during endoscopic surgery for tumors of the skull base with particular attention to ergonomic benefits and technical nuances. Methods We conducted a retrospective review of all patients undergoing endoscopic surgery for skull base tumors from September 2012 to June 2016 at our institution. All procedures used the Aquamantys® system. 45 cases were identified. Results Successful hemostasis was achieved in all cases with an average estimated blood loss (EBL) of 46 mL (Range 10–250). There were no intraoperative complications. The single-shaft design allowed for excellent manipulation compared to pistol-grip bipolar forceps. The thermal energy provided excellent radial coverage without extensive penetration into viable pituitary tissue. Conclusion To our knowledge, this is the largest series documenting the use of the Aquamantys® system in skull base surgery. The device is easily mobile and highly effective within the endonasal corridor and should be a tool in the repertoire of the endoneurosurgeon. Randomized control trials would be useful in comparing EBL between the Aquamantys® and standard bipolar electrocautery.

Original languageEnglish
Pages (from-to)81-85
Number of pages5
JournalJournal of Clinical Neuroscience
Volume41
DOIs
StatePublished - Jul 2017

Keywords

  • Aquamantys
  • Bipolar sealer
  • Pituitary
  • Skull base
  • Transsphenoidal approach

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