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Kevin Cleary

5 accepted papers

2023

Flexible Needle Bending Model for Spinal Injection Procedures

RA-L 2023

An <i>in situ</i> needle manipulation technique used by physicians when performing spinal injections is modeled to study its effect on needle shape and needle tip position. A mechanics-based model is proposed and solved using finite element method. A test setup is presented to mimic the needle manip

Cited by 11SourceScholar
2021

Towards Safe In Situ Needle Manipulation for Robot Assisted Lumbar Injection in Interventional MRI

IROS 2021poster

Lumbar injection is an image-guided procedure performed manually for diagnosis and treatment of lower back pain and leg pain. Previously, we have developed and verified an MR-Conditional robotic solution to assisting the needle insertion process. Drawing on our clinical experiences, a virtual remote…

Cited by 6SourceScholar
2020

A Fully Actuated Body-Mounted Robotic Assistant for MRI-Guided Low Back Pain Injection

ICRA 2020poster

This paper reports the development of a fully actuated body-mounted robotic assistant for MRI-guided low back pain injection. The robot is designed with a 4-DOF needle alignment module and a 2-DOF remotely actuated needle driver module. The 6-DOF fully actuated robot can operate inside the scanner b…

Cited by 23SourceScholar
2020

Fully Actuated Body-Mounted Robotic System for MRI-Guided Lower Back Pain Injections: Initial Phantom and Cadaver Studies

RA-L 2020

This paper reports the improved design, system integration, and initial experimental evaluation of a fully actuated body-mounted robotic system for real-time MRI-guided lower back pain injections. The 6-DOF robot is composed of a 4-DOF needle alignment module and a 2-DOF remotely actuated needle dri

Cited by 19SourceScholar
2018

Body-Mounted Robot for Image-Guided Percutaneous Interventions: Mechanical Design and Preliminary Accuracy Evaluation

IROS 2018poster

This paper presents a body-mounted, four degree-of-freedom (4-DOF) parallel mechanism robot for image-guided percutaneous interventions. The design of the robot is optimized to be light weight and compact such that it could be mounted to the patient body. It has a modular design that can be adopted…

Cited by 29SourceScholar