Related Experiment Video
Updated: Apr 16, 2026

A Teleoperated Robotic System-Assisted Percutaneous Transiliac-Transsacral Screw Fixation Technique
Published on: January 6, 2023
Evaluation of microsurgical tasks with OCT-guided and/or robot-assisted ophthalmic forceps
Haoran Yu1, Jin-Hui Shen2, Rohan J Shah3
1Mechanical Engineering, Vanderbilt University, 2400 Highland Ave Nashville, TN 37212, USA ; Vanderbilt Initiative in Surgery and Engineering(ViSE), Vanderbilt University 2525 West End Avenue, 6th Floor, Nashville, TN 37203, USA.
Abstract:
Real-time intraocular optical coherence tomography (OCT) visualization of tissues with surgical feedback can enhance retinal surgery. An intraocular 23-gauge B-mode forward-imaging co-planar OCT-forceps, coupling connectors and algorithms were developed to form a unique ophthalmic surgical robotic system. Approach to the surface of a phantom or goat retina by a manual or robotic-controlled forceps, with and without real-time OCT guidance, was performed. Efficiency of lifting phantom membranes was examined. Placing the co-planar OCT imaging probe internal to the surgical tool reduced instrument shadowing and permitted constant tracking. Robotic assistance together with real-time OCT feedback improved depth perception accuracy. The first-generation integrated OCT-forceps was capable of peeling membrane phantoms despite smooth tips.

