Elevated intrahepatic pressures and decreased hepatic tissue blood flow prevent gas embolus during limited laparoscopic liver resections

Surg Endosc. 2001 Jul;15(7):729-33. doi: 10.1007/s004640000235. Epub 2001 Apr 12.

Abstract

Background: As new techniques are emerging for laparoscopic liver resections, concerns have been raised about the development of gas embolus related to the CO(2) pneumoperitoneum. We hypothesized that elevated intrahepatic vascular pressures and decreased hepatic tissue blood flow (LQB) would prevent gas embolus during laparoscopic liver resections under conventional pneumoperitoneum.

Methods: Intrahepatic vascular pressures and LQB were measured in nine pigs with varying CO(2) pneumoperitoneum. Gas embolus was determined after hepatic incision by monitoring pulmonary arterial pressure (PAP), hepatic venous PCO(2), systemic blood pressure (SBP), and suprahepatic vena cava ultrasound.

Results: As the pneumoperitoneum was increased from 0 to 15 mmHg, intrahepatic vascular pressures increased significantly (p < 0.05), while LQB decreased significantly (p < 0.05). A 2.0-cm hepatic incision at 4, 8, 15, and 20mmHg produced no ultrasound evidence of gas embolus and no changes in PAP, SBP, or hepatic venous PCO(2) (p = NS).

Conclusion: These data suggest that the risk of significant embolus under conventional pneumoperitoneum is minimal during laparoscopic liver resections.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Blood Pressure / drug effects
  • Blood Pressure / physiology
  • Carbon Dioxide / administration & dosage
  • Carbon Dioxide / adverse effects
  • Embolism, Air / chemically induced
  • Embolism, Air / etiology
  • Embolism, Air / prevention & control*
  • Hepatectomy / methods*
  • Laparoscopy / adverse effects
  • Laparoscopy / methods*
  • Liver / drug effects
  • Liver / metabolism
  • Liver Circulation / drug effects
  • Liver Circulation / physiology
  • Models, Animal
  • Pneumoperitoneum, Artificial / adverse effects
  • Pneumoperitoneum, Artificial / methods*
  • Pressure
  • Swine

Substances

  • Carbon Dioxide