activity
20182026
most citedA Reliable Gravity Compensation Control Strategy for dVRK Robotic Arms With Nonlinear Disturbance Forces

18 citations · 35 across the 8 of their papers we have counts for

collaborators
Showing cs.ROShow all

13 papers · 1 filter

cs.RO20251 cited

Touching the tumor boundary: A pilot study on ultrasound based virtual fixtures for breast-conserving surgery

Laura Connolly, Tamas Ungi, Adnan Munawar +5

Purpose: Delineating tumor boundaries during breast-conserving surgery is challenging as tumors are often highly mobile, non-palpable, and have irregularly shaped borders. To addre…

cs.RO2025

SlicerROS2: A Research and Development Module for Image-Guided Robotic Interventions

Laura Connolly, Aravind S. Kumar, Kapi Ketan Mehta +9

Image-guided robotic interventions involve the use of medical imaging in tandem with robotics. SlicerROS2 is a software module that combines 3D Slicer and robot operating system (R…

cs.RO2025

Open-Source Multi-Viewpoint Surgical Telerobotics

Guido Caccianiga, Yarden Sharon, Bernard Javot +6

As robots for minimally invasive surgery (MIS) gradually become more accessible and modular, we believe there is a great opportunity to rethink and expand the visualization and con…

cs.RO2025

Gravity Compensation of the dVRK-Si Patient Side Manipulator based on Dynamic Model Identification

Haoying Zhou, Hao Yang, Anton Deguet +3

The da Vinci Research Kit (dVRK, also known as dVRK Classic) is an open-source teleoperated surgical robotic system whose hardware is obtained from the first generation da Vinci Su…

cs.RO20248 cited

Surgical Robot Transformer (SRT): Imitation Learning for Surgical Tasks

Ji Woong Kim, Tony Z. Zhao, Samuel Schmidgall +4

We explore whether surgical manipulation tasks can be learned on the da Vinci robot via imitation learning. However, the da Vinci system presents unique challenges which hinder str…

cs.RO2024

An Effectiveness Study Across Baseline and Learning-based Force Estimation Methods on the da Vinci Research Kit Si System

Hao Yang, Ayberk Acar, Keshuai Xu +3

Robot-assisted minimally invasive surgery, such as through the da Vinci systems, improves precision and patient outcomes. However, da Vinci systems prior to da Vinci 5, lacked dire…