A Digital Twin Approach for Contextual Assistance for Surgeons During Surgical Robotics Training

Author:

Hagmann Katharina,Hellings-Kuß Anja,Klodmann Julian,Richter Rebecca,Stulp Freek,Leidner Daniel

Abstract

Minimally invasive robotic surgery copes with some disadvantages for the surgeon of minimally invasive surgery while preserving the advantages for the patient. Most commercially available robotic systems are telemanipulated with haptic input devices. The exploitation of the haptics channel, e.g., by means of Virtual Fixtures, would allow for an individualized enhancement of surgical performance with contextual assistance. However, it remains an open field of research as it is non-trivial to estimate the task context itself during a surgery. In contrast, surgical training allows to abstract away from a real operation and thus makes it possible to model the task accurately. The presented approach exploits this fact to parameterize Virtual Fixtures during surgical training, proposing a Shared Control Parametrization Engine that retrieves procedural context information from a Digital Twin. This approach accelerates a proficient use of the robotic system for novice surgeons by augmenting the surgeon’s performance through haptic assistance. With this our aim is to reduce the required skill level and cognitive load of a surgeon performing minimally invasive robotic surgery. A pilot study is performed on the DLR MiroSurge system to evaluate the presented approach. The participants are tasked with two benchmark scenarios of surgical training. The execution of the benchmark scenarios requires basic skills as pick, place and path following. The evaluation of the pilot study shows the promising trend that novel users profit from the haptic augmentation during training of certain tasks.

Publisher

Frontiers Media SA

Subject

Artificial Intelligence,Computer Science Applications

Reference50 articles.

1. Haptic Virtual Fixtures for Robot-Assisted Manipulation;Abbott,2007

2. The Potential of a Digital Twin in Surgery;Ahmed;Surg. Innov.,2020

3. Inferring Semantic State Transitions during Telerobotic Manipulation;Bauer,2018

4. Active Constraints/Virtual Fixtures: A Survey;Bowyer;IEEE Trans. Robot.,2014

5. Six-dof Impedance Control Based on Angle/axis Representations;Caccavale;IEEE Trans. Robot. Automat.,1999

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