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4K NIR Fluorescence Laparoscopic Camera System | ICG Indocyanine Green Surgical Navigation for Oncology & Hepatobiliary Surgery

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Meta Description:4K UHD + dual-channel NIR fluorescence laparoscope system, 4 imaging modes for lymph node tracing, biliary navigation, tumor margin identification, intestinal blood perfusion evaluation. Flagship OR navigation equipment.

Introduction

Traditional white light laparoscopy can only display anatomical structure, but cannot identify hidden lesions, lymph nodes and organ blood supply status. Our flagship 4K ICG fluorescence laparoscopic system integrates ultra HD white light imaging and near-infrared fluorescence navigation, realizing dual-dimensional visualization of anatomy + tissue function, widely adopted by top cancer surgery centers globally.

Dual-Channel Fluorescence Laparoscope Design

  • Dual optical path structure: Independent visible light channel + 830nm NIR fluorescence channel

  • Special infrared anti-reflection coating: High transmittance for ICG excitation signal, high fluorescence signal-to-noise ratio, weak lesion can be clearly captured

  • Same mechanical size as standard 4K laparoscope: 5/10mm, 0°/30°, compatible with all conventional trocar instruments

  • Supports all standard disinfection processes without damaging internal fluorescence optical components

4K Fluorescence Camera Host (GEV-650, GEV-660)

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  1. Four Optional Imaging Modes (One-Click Switch)

    • Pure 4K White Light Mode: Standard anatomical observation, same definition as high-end 4K white light system

    • Black & White Fluorescence Mode: High contrast for tiny lymph nodes and biliary tract identification

    • Color Fusion Mode (Green Fluorescence Overlay): Most widely used in clinical practice, balance tissue anatomy & lesion boundary

    • Pure Fluorescence Highlight Mode: Shield white light to track occult metastatic lesions

  2. Working Spectrum Principle

    Light source emits 780nm excitation light, ICG injected into human tissue produces 830nm near-infrared signal; host independently collects RGB white light & NIR fluorescence data, real-time algorithm registration without image delay or drift

  3. High-speed 4K signal output, built-in high-power synchronous white & fluorescence dual light source

Core Clinical Navigation Applications

  1. Hepatobiliary Surgery

    Intraoperative bile duct navigation, liver tumor margin marking, liver segment blood supply partition, reduce bile duct injury rate

  2. Gastrointestinal Oncology

    Colorectal cancer sentinel lymph node tracing, intestinal anastomosis blood perfusion judgment to avoid postoperative anastomotic leakage

  3. Gynecologic Oncology

    Ovarian & cervical cancer lymph node detection, occult small lesion localization

  4. Urology & Plastic Surgery

    Renal tumor boundary identification, flap blood supply assessment during reconstructive surgery

Competitive Edge vs Ordinary 4K Systems

  1. All-in-one integrated solution: Fluorescence light source + 4K fluorescence camera + dual-channel laparoscope, no separate module assembly

  2. High fluorescence sensitivity: Detect low-concentration ICG signals without excessive injection dosage

  3. No image lag: Real-time fusion algorithm, no impact on surgical rhythm

  4. Upgradeable for existing OR: Can be matched with original 4K surgical monitors without full room equipment replacement

Export & After-Sales Support

Complete CE/FDA/ISO certification; professional technical team provides remote operation training for surgeons and equipment maintenance engineers; global spare parts warehouse for fast after-sales response. Suitable for high-end hospital bidding and top-tier medical device distributors.

FAQ

Q: What size kidney stones can a flexible ureteroscope treat?

A: Flexible ureteroscopy is highly effective for treating kidney and ureteral stones ranging from 5mm up to 20mm. This size bracket represents the clinical sweet spot where single-session clearance remains highly optimal. For massive stones larger than 20mm, surgeons may still utilize a flexible scope, but they typically adopt a staged approach. This specific strategy requires breaking the stone down carefully over multiple outpatient sessions to aggressively minimize surgical trauma.

Q: How long does a flexible ureteroscopy procedure take?

A: A standard operative procedure typically takes between 60 and 120 minutes. The exact surgical duration heavily depends on the stone's overall size, mineral hardness, and specific anatomical location. Complex lower pole stones naturally require more time for delicate basket repositioning. Because it is a minimally invasive outpatient procedure, most patients are safely discharged the very same day once they fully wake up from general anesthesia.

Q: Is a stent always required after flexible ureteroscopy?

A: While not strictly mandatory in every single mild case, placing a temporary double-J stent represents the overarching standard clinical practice. The soft stent keeps the narrow ureter open, actively manages post-operative mucosal swelling, and allows residual stone dust fragments to pass easily. We acknowledge that temporary stents cause mild patient discomfort, but they successfully prevent severe, agonizing pain resulting from post-surgical ureteral spasms and sudden blockages.

Q: What is the typical recovery time?

A: Patient recovery is generally quite rapid. Patients should logically expect light to moderate flank discomfort, mild urinary urgency, and minor hematuria (blood in the urine) for a few days. You can usually return safely to normal, light daily activities within 7 to 10 days. Full, complete physiological relief typically occurs immediately after the temporary ureteral stent is successfully removed in the clinic, usually one to two weeks post-surgery.

Specializing in R&D and production of endoscopes for minimally invasive procedures and treatments.
We are committed to meet needs of customers, and bring you cutting-edge technology and high-quality products.

CONTACT US

Tel: +86-0516-83956616
Email: sales@geiwre.com
WhatsApp: +8618852166677
Add: 13#XiYueFu, No.28, Changan Road, Xuzhou High-tech Zone, Xuzhou City, Jiangsu Province, China.

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