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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.
Background:
Colorectal surgery has benefited from advances in precision medicine such as total mesorectal resection, and recently, mesocolon resection, fluorescent perfusion imaging, and fluorescent node mapping. However, these advances fail to address the variable quality of mesocolon dissection and the directed extent of vascular dissection (including high ligation) or pre-resection anastomotic perfusion mapping, thereby impacting anastomotic leaks. We propose a new paradigm of precision image-directed colorectal surgery involving 3D preoperative resection modeling and intraoperative fluoroscopic and fluorescence vascular imaging which better defines optimal dissection planes and vascular vs. anatomy-based resection lines according to our hypothesis.
Methods:
Six pigs had preoperative CT with vascular 3D reconstruction allowing for the preoperative planning of vascular-based dissection. Laparoscopic surgery was performed in a hybrid operating room (OR). Superselective arterial catheterization was performed in branches of the superior mesenteric artery (SMA) or the inferior mesenteric artery (IMA). Intraoperative boluses of 0.1 mg/kg or a continuous infusion of indocyanine green (ICG) (0.01 mg/mL) were administered to guide fluorescent-based sigmoid and ileocecal resections. Fluorescence was assessed using proprietary software at several regions of interest (ROI) in the right and left colon.
Results:
The approach was feasible and safe. Selective catheterization took an average of 43 min. Both bolus and continuous perfusion clearly marked pre-identified vessels (arteries/veins) and the target colon segment, facilitating precise resections based on the visible vascular anatomy. Quantitative software analysis indicated the optimal resection margin for each ROI.
Conclusion:
Intra-arterial fluorescent mapping allows visualization of major vascular structures and segmental colonic perfusion. This may help to prevent any inadvertent injury to major vascular structures and to precisely determine perfusion-based resection planes and margins. This could enable tailoring of the amount of colon resected, ensure good anastomotic perfusion, and improve oncological outcomes.
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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