4.2 Article

Multi-wavelength fluorescence imaging with a da Vinci Firefly-a technical look behind the scenes

Journal

JOURNAL OF ROBOTIC SURGERY
Volume 15, Issue 5, Pages 751-760

Publisher

SPRINGERNATURE
DOI: 10.1007/s11701-020-01170-8

Keywords

Fluorescence-guided surgery; Multispectral fluorescence; Laparoscopic surgery; Robotic surgery; Multiplexing; Multi-wavelength fluorescence

Categories

Funding

  1. NWO-STW-VIDI [STW BGT11272]
  2. NWO-TTW-VICI [TTW 16141]

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The field of fluorescence-guided surgery is advancing with the use of different colored fluorescent tracers to visualize various anatomical structures in the same patient. Research shows that clinical-grade fluorescence laparoscopes can achieve multi-wavelength fluorescence imaging, with critical factors including dye properties, imaging system performance, and dye accumulation. The Xi camera system exhibited more effective excitation and higher detection sensitivity for both Fluorescein and ICG, indicating progress towards routine implementation of multi-wavelength image-guided surgery concepts.
The field of fluorescence-guided surgery builds on colored fluorescent tracers that have become available for different clinical applications. Combined use of complementary fluorescent emissions can allow visualization of different anatomical structures (e.g. tumor, lymphatics and nerves) in the same patient. With the aim to assess the requirements for multi-color fluorescence guidance under in vivo conditions, we thoroughly characterized two FDA-approved laparoscopic Firefly camera systems available on the da Vinci Si or da Vinci Xi surgical robot. In this process, we studied the cameras' performance with respect to the photophysical properties of the FDA-approved dyes Fluorescein and ICG. Our findings indicate that multi-wavelength fluorescence imaging of Fluorescein and ICG is possible using clinical-grade fluorescence laparoscopes, but critical factors for success include the photophysical dye properties, imaging system performance and the amount of accumulated dye. When comparing the camera performance, the Xi system provided more effective excitation (adaptions in the light source) and higher detection sensitivity (chip-on-a-tip and/or enhanced image processing) for both Fluorescein and ICG. Both systems can readily be used for multi-wavelength fluorescence imaging of Fluorescein and ICG under clinically relevant conditions. With that, another step has been made towards the routine implementation of multi-wavelength image-guided surgery concepts.

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