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Robotic waterjet wound debridement - Workflow adaption for clinical application and systematic evaluation of a novel
Dominik S Schoeb1, Julian Klodmann2, Daniel Schlager1
1Department of Urology, Faculty of Medicine and Medical Center-University of Freiburg, University of Freiburg, Freiburg, Germany.
Objective:
We evaluated the clinical potential of a novel robotic system for autonomous performance of waterjet wound debridement.
Summary Background Data:
Within the last decade, waterjet wound debridement has proven to be a valid alternative to the conventional approach using sharp spoons and scalpel.
Methods:
The DLR MIRO robot using the DLR MICA instrument for robotic surgery was adapted for actuation of an ERBEJET 2 flexible endoscopic waterjet probe. Waterjet debridement of various wound shapes and sizes using a porcine skin model was compared between this novel robotic system and a control group of human medical professionals with regard to wound area cleaned by the waterjet, off-target area, and procedural time.
Results:
After the wound area was registered in the robotic system, it automatically generated a cleaning path and performed debridement based on generated surface model. While the robotic system demonstrated a significant advantage for the covered wound area (p = 0.031), the average off-target area was not significantly different from human controls. Human participants had high variability in cleaning quality across users and trials, while the robotic system provided stable results. Overall procedural time was significantly lower in trials performed by humans.
Conclusions:
Robotic waterjet wound debridement is a promising new technological approach compared to the current clinical standard of interventional wound therapy, providing higher efficiency and quality of wound cleaning compared to human performance. Additional trials on more complicated wound shapes and in vivo tissue are necessary to more thoroughly evaluate the clinical potential of this technology.
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