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Sigmoidoscopy and laparoscopy are distinct medical procedures that enable physicians to internally inspect different parts of the GI tract. Although they serve different purposes, each is essential for diagnosing and, in some cases, treating various medical conditions.
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Laparoscopic Pringle maneuver: how we do it?

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Controlling intraoperative bleeding during laparoscopic liver resection (LLR) is crucial. This study details two methods for applying the Pringle maneuver to reduce blood loss in LLR procedures.

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Area of Science:

  • Hepatobiliary surgery
  • Minimally invasive surgical techniques
  • Surgical oncology

Background:

  • Laparoscopic liver resection (LLR) offers advantages but faces challenges with intraoperative hemorrhage.
  • Excessive blood loss during LLR can necessitate conversion to open laparotomy, increasing patient morbidity and mortality.
  • Effective control of bleeding is paramount for successful LLR outcomes.

Purpose of the Study:

  • To describe two distinct modalities of the Pringle maneuver applied during LLR.
  • To highlight techniques for inflow occlusion to minimize blood loss in laparoscopic liver surgery.
  • To provide insights for surgeons performing LLR.

Main Methods:

  • The Pringle maneuver, a method of hepatic pedicle clamping for inflow occlusion, was utilized.
  • Two different surgical teams employed variations in applying the Pringle maneuver during LLR.
  • Techniques focused on reducing intraoperative blood loss through controlled vascular occlusion.

Main Results:

  • The Pringle maneuver was successfully implemented in LLR procedures by both teams.
  • Application of inflow occlusion via the Pringle maneuver demonstrated potential for blood loss reduction.
  • The study observed different approaches to achieving inflow occlusion during LLR.

Conclusions:

  • The Pringle maneuver is a feasible technique for managing intraoperative bleeding during LLR.
  • Variations in Pringle maneuver application exist among surgical teams performing LLR.
  • Further investigation into optimal Pringle maneuver techniques for LLR is warranted.