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Gianni Borghesan

12 accepted papers

2026

Dynamic Referencing for 3D Localization of Fiber-Optic Shape Estimation in Endovascular Interventions

RA-L 2026

In current clinical practice, fluoroscopy is used to track the catheter shape during endovascular navigation. To reduce radiation exposure for clinicians and patients, alternative approaches relying on electromagnetic (EM) tracking and fiber-optic shape sensing (FOSS) have been investigated. EM sens

Cited by 0SourceScholar
2026

Real-Time 3D Needle Guidance Using Dynamic Spiral OCT Scanning and Shape-Driven Pose Extraction in Retinal Interventions

RA-L 2026

Reliable microneedle guidance during subretinal injection remains a major clinical challenge. One of the reasons is that surgeons must infer the 3D position of the needle from a stereomicroscope that offers limited depth perception and from narrow B-scan iOCT cross-sections that cover only a fractio

Cited by 0SourceScholar
2023

Sensor Fusion for Shape Reconstruction Using Electromagnetic Tracking Sensors and Multi-Core Optical Fiber

RA-L 2023

Optical fiber-based shape sensing is gaining popularity in cardiac catheterization lately. Typically, these procedures are taking place under the guidance of fluoroscopy. However, fluoroscopy has several disadvantages. Thanks to fiber optic shape sensing and Electromagnetic Tracking (EMT), the 3D ca

Cited by 21SourceScholar
2022

Contact Localization of Continuum and Flexible Robot Using Data-Driven Approach

RA-L 2022

Continuum robots such as robotic catheters are increasingly being used in minimally invasive surgery. Compliance contributes to enhanced safety during e.g. catheter insertion, however, estimation of contact force and location may help clinicians avoiding exerting excessive force. Ultimately this cou

Cited by 21SourceScholar
2022

Deep-Learning-Based Compliant Motion Control of a Pneumatically-Driven Robotic Catheter

RA-L 2022

In cardiovascular interventions, when steering catheters and especially robotic catheters, great care should be paid to prevent applying too large forces on the vessel walls as this could dislodge calcifications, induce scars or even cause perforation. To address this challenge, this paper presents

Cited by 39SourceScholar
2021

IVUS-Based Local Vessel Estimation for Robotic Intravascular Navigation

RA-L 2021

Intra-operative local 3D vessel representations have the potential to significantly decrease the use of contrast agents and exposure to ionizing radiation during endovascular procedures, while overcoming the 2D visualization limitation of fluoroscopic guidance. By fusing intravascular ultrasound (IV

Cited by 6SourceScholar
2019

A Hybrid Active/Passive Wrist Approach for Increasing Virtual Fixture Stiffness in Comanipulated Robotic Minimally Invasive Surgery

RA-L 2019

In minimally invasive surgery (MIS), the incision point acts as a fulcrum about which the surgical instrument pivots. Most robotic MIS systems foresee procedures to carefully align the robot with the incision in the patient. Such procedures disrupt the normal workflow. This hampers the clinical tran

Cited by 2SourceScholar
2019

Electrical Bio-Impedance Proximity Sensing for Vitreo-Retinal Micro-Surgery

RA-L 2019

Retinal vein occlusion is a widespread eye vascular disease leading to vision loss because of clots obstructing a retinal vessel. Recent research investigated retinal vein cannulation, a promising treatment in which a microneedle injects a thrombolytic agent inside the clotted vessel. During this su

Cited by 6SourceScholar
2018

Innovative Bio-Impedance Sensor Towards Puncture Detection in Eye Surgery for Retinal Vein Occlusion Treatment

ICRA 2018poster

At the moment, surgeons struggle curing a widespread eye disease known as retinal vein occlusion where clots obstruct the retinal vessels. Latter vascular disorder involves black spots in people's eyesight and lead eventually to blindness. A recent promising treatment consists in flushing a thrombol…

Cited by 4SourceScholar
2016

Introducing Geometric Constraint Expressions Into Robot Constrained Motion Specification and Control

RA-L 2016

The problem of robotic task definition and execution was pioneered by Mason, who defined setpoint constraints where the position, velocity, and/or forces are expressed in one particular task frame for a 6-DOF robot. Later extensions generalized this approach to constraints in 1) multiple frames; 2)

Cited by 12SourceScholar
2015

Bridging the gap between discrete symbolic planning and optimization-based robot control

ICRA 2015poster

Symbolic reasoners generate plans which are often not exploiting the robot capabilities and are sensitive to runtime disturbances. This work proposes a scheduler as an interface between a discrete, symbolic plan and a motion control based on constraint optimization. Acting as a local reasoner, the s…

Cited by 16SourceScholar