Fluorescence-Guided Surgery using Indocyanine Green (ICG)

Real-time fluorescence imaging technology that enhances surgical precision across a range of cancer operations — helping visualise blood supply, lymphatic pathways, and tumour margins that aren’t visible to the naked eye.

  • Real-Time Fluorescence Imaging
  • Perfusion & Blood Supply Assessment
  • Lymphatic Mapping
  • Tumour & Margin Visualisation
  • Multi-Specialty Surgical Application

Overview

Seeing beyond the visible during surgery

Much of what determines a safe surgical outcome — whether tissue has adequate blood supply, where lymphatic drainage leads, or whether a margin is truly clear — isn’t visible to the naked eye during conventional surgery. Indocyanine green (ICG) fluorescence imaging addresses this gap, using a fluorescent dye and specialised camera system to make these hidden details visible in real time, directly informing surgical decisions as they’re being made.

ICG is injected intravenously or locally, depending on the application, and travels through blood vessels or lymphatic channels. Under near-infrared light, a fluorescence camera system visualises the dye’s distribution on-screen, allowing the surgical team to assess blood supply to tissue before a reconstruction or anastomosis, trace lymphatic drainage pathways to identify sentinel lymph nodes, or, in select applications, help delineate tumour tissue from surrounding structures. Because the dye clears quickly and has a well-established safety profile, it can be used at multiple points during a single operation as needed.

This technology is integrated across a wide range of surgical specialties — general surgical oncology, gynaecologic oncology, thoracic surgery, hepatobiliary surgery, and reconstructive surgery — with its specific application guided by the surgical team based on the operation being performed and the clinical question that needs answering.

What We Offer

Clinical Applications

Fluorescence-guided imaging integrated across a range of cancer surgery procedures.

Sentinel Lymph Node Mapping

 Real-time visualisation of lymphatic drainage pathways to identify and remove the sentinel node most likely to contain cancer spread.

Bowel Perfusion Assessment

Evaluation of blood supply to bowel segments before and after anastomosis in colorectal surgery, helping reduce the risk of anastomotic leak.

Hepatobiliary Anatomy Visualisation

Real-time delineation of bile duct anatomy and liver segments during liver and gallbladder surgery, supporting safer, more precise dissection.

Flap Perfusion Assessment

Assessment of blood supply to reconstructive tissue flaps during head, neck, and breast reconstruction, helping confirm flap viability before completing surgery.

Tumour Margin Visualisation

Fluorescence-assisted delineation of tumour tissue from surrounding structures in select cancers, supporting more precise resection.

Lymphatic Leak Identification

Real-time detection of lymphatic channel injury or leakage during extensive lymph node dissection, allowing precise intraoperative repair.

Ureteric Identification

Visualisation of the ureters during complex pelvic and abdominal cancer surgery, helping protect against inadvertent injury in anatomically distorted fields.

Anastomotic Site Assessment

Confirmation of adequate blood supply at the site of bowel or other reconstructive anastomosis before completing the procedure, reducing the risk of postoperative complications.

 

Parathyroid Gland Identification

Real-time visualisation of parathyroid glands during thyroid and parathyroid surgery, helping protect these small, easily overlooked structures during dissection.

Our Approach

The Fluorescence-Guided Surgery Advantage

Real-time visualisation supporting safer, more precise decision-making in the operating room.

A clear, supported path from first consultation through to long‑term follow‑up.

Real-Time Surgical Decision-Making

Fluorescence imaging provides immediate visual information during surgery, allowing the surgical team to adapt technique as needed, in the moment.

Enhanced Safety Margins

Visualising blood supply, ureters, and other critical structures helps reduce the risk of complications such as anastomotic leak or inadvertent injury.

Multi-Specialty Integration

The same core technology supports a wide range of applications across surgical oncology, reconstructive surgery, gynaecologic oncology, and hepatobiliary surgery.

Well-Established Safety Profile

ICG has a long track record of safe use in surgery, allowing repeated use within a single operation as clinically needed.

Indocyanine green is a well-established dye used safely in surgery for decades, with a low rate of allergic reaction. Your surgical team will discuss any individual considerations, such as allergy history, before your procedure.

 

Fluorescence-guided imaging is typically integrated into your primary surgery and adds relatively little additional time, while providing valuable real-time information that can improve safety and precision.

It’s used across a wide range of procedures, including colorectal, hepatobiliary, gynaecologic, reconstructive, and thoracic surgery, wherever visualising blood supply, lymphatic pathways, or key anatomical structures adds value.

No — fluorescence imaging is a tool that supports and enhances surgical decision-making, working alongside, not replacing, careful technique and clinical judgement.

 

No. ICG fluorescence imaging is performed as an integrated part of your primary surgery, using the same operative setting and anaesthesia.

Contact

Discuss Your Treatment Options

Every case is unique. Book a consultation to understand the safest and most personalised path forward for you.

Address

# 69, IOA Complex, Royapettah High Rd, Royapettah, Chennai, Tamil Nadu 600014

Email

info@support.com

Our Number

+(0361) 234 567