Precision image-guided colonic surgery: proof of concept for enhanced preoperative and intraoperative vascular

Antonello Forgione1, Manuel Barberio2, Vincent Agnus2

  • 1Institute of Image-Guided Surgery, IHU Strasbourg, 1, place de l'Hôpital, 67091, Strasbourg, France. antonello.forgione@gmail.com.

Surgical Endoscopy
|September 30, 2020
PubMed
Abstract

Insights

Precision image-directed colorectal surgery using intra-arterial fluorescent mapping enhances dissection and perfusion assessment. This novel approach aims to improve anastomotic integrity and oncological outcomes in colorectal procedures.

Area of Science:

  • Surgical Innovation
  • Medical Imaging
  • Gastroenterology

Background:

  • Colorectal surgery advances like total mesorectal resection improve outcomes but lack standardized mesocolon dissection and vascular assessment.
  • Current techniques do not adequately address variable dissection quality or pre-anastomotic perfusion, contributing to anastomotic leaks.
  • A new paradigm of image-directed colorectal surgery is proposed to enhance precision.

Purpose of the Study:

  • To introduce and evaluate a novel approach for precision image-directed colorectal surgery.
  • To utilize 3D preoperative modeling and intraoperative fluorescence imaging for improved dissection and resection planning.
  • To define optimal dissection planes and resection margins based on vascular anatomy and perfusion.

Main Methods:

  • Preoperative CT with 3D vascular reconstruction for planning vascular-based dissection in six pigs.
  • Laparoscopic surgery in a hybrid OR with superselective arterial catheterization of SMA or IMA branches.
  • Intraoperative indocyanine green (ICG) administration (bolus or infusion) for fluorescent vascular and perfusion mapping during sigmoid and ileocecal resections.

Main Results:

  • The image-directed approach was feasible and safe, with selective catheterization averaging 43 minutes.
  • Both bolus and continuous ICG infusions effectively visualized pre-identified vessels and the target colon segment.
  • Quantitative software analysis of fluorescence identified optimal resection margins, facilitating precise, vascular-anatomy-based resections.

Conclusions:

  • Intra-arterial fluorescent mapping enables visualization of vascular structures and colonic perfusion.
  • This technique can prevent inadvertent vascular injury and precisely define perfusion-based resection margins.
  • The approach promises tailored colonic resection, improved anastomotic perfusion, and enhanced oncological outcomes.

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