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Zhongliang Jiang

18 accepted papers

2026

Gaze-Guided Robotic Vascular Ultrasound Leveraging Human Intention Estimation

ICRA 2026poster

Medical ultrasound (US) has been widely used to examine vascular structure in modern clinical practice. However, the traditional US examination often faces challenges related to inter- and intra-operator variation. The robotic ultrasound system (RUSS) appears as a potential solution for such challen…

2026

Manipulating Elasto-Plastic Objects with 3D Occupancy and Learning-Based Predictive Control

ICRA 2026poster

Manipulating elasto-plastic object remains a significant challenge due to severe self-occlusion, difficulties of representation, and complicated dynamics. This work proposes a novel framework for elasto-plastic object manipulation with a quasi-static assumption for motions, leveraging 3D occupancy t…

2026

RAG-RUSS: A Retrieval-Augmented Robotic Ultrasound for Autonomous Carotid Examination

ICRA 2026poster

Robotic ultrasound (US) has recently attracted considerable attention as a means to overcome the limitations of conventional US examinations, such as the strong operator dependence. However, the decision-making process of existing methods is often either rule-based or relies on end-to-end learning m…

2025

FB-Diff: Fourier Basis-guided Diffusion for Temporal Interpolation of 4D Medical Imaging

ICCV 2025poster

The temporal interpolation task for 4D medical imaging, plays a crucial role in clinical practice of respiratory motion modeling. Following the simplified linear-motion hypothesis, existing approaches adopt optical flow-based models to interpolate intermediate frames. However, realistic respiratory…

2025

Improving Probe Localization for Freehand 3D Ultrasound Using Lightweight Cameras

ICRA 2025

Ultrasound (US) probe localization relative to the examined subject is essential for freehand 3D US imaging, which offers significant clinical value due to its affordability and unrestricted field of view. However, existing methods often rely on expensive tracking systems or bulky probes, while rece

Cited by 1SourcecodeScholar
2025

Manipulating Elasto-Plastic Objects With 3D Occupancy and Learning-Based Predictive Control

RA-L 2025

Manipulating elasto-plastic objects remains a significant challenge due to severe self-occlusion, difficulties of representation, and complicated dynamics. This work proposes a novel framework for elasto-plastic object manipulation with a quasi-static assumption for motions, leveraging 3D occupancy

Cited by 3SourceScholar
2025

Tactile-Guided Robotic Ultrasound: Mapping Preplanned Scan Paths for Intercostal Imaging

IROS 2025

Medical ultrasound (US) imaging is widely used in clinical examinations due to its portability, real-time capability, and radiation-free nature. To address inter- and intra-operator variability, robotic ultrasound systems have gained increasing attention. However, their application in challenging in

Cited by 1SourceScholar
2025

Vibration-Based Energy Metric for Restoring Needle Alignment in Autonomous Robotic Ultrasound

IROS 2025

Precise needle alignment is essential for percutaneous needle insertion in robotic ultrasound-guided procedures. However, inherent challenges such as speckle noise, needle-like artifacts, and low image resolution complicate robust needle detection, which is essential for alignment in ultrasound imag

Cited by 0SourceScholar
2023

Motion Magnification in Robotic Sonography: Enabling Pulsation-Aware Artery Segmentation

IROS 2023poster

Ultrasound (US) imaging is widely used for diagnosing and monitoring arterial diseases, mainly due to the advantages of being non-invasive, radiation-free, and real-time. In order to provide additional information to assist clinicians in diagnosis, the tubular structures are often segmented from US…

Cited by 12SourcecodeScholar
2023

Skeleton Graph-Based Ultrasound-CT Non-Rigid Registration

RA-L 2023

Autonomous ultrasound (US) scanning has attracted increased attention, and it has been seen as a potential solution to overcome the limitations of conventional US examinations, such as inter-operator variations. However, it is still challenging to autonomously and accurately transfer a planned scan

Cited by 14SourceScholar
2023

Thoracic Cartilage Ultrasound-CT Registration Using Dense Skeleton Graph

IROS 2023poster

Autonomous ultrasound (US) imaging has gained increased interest recently, and it has been seen as a potential solution to overcome the limitations of free-hand US exami-nations, such as inter-operator variations. However, it is still challenging to accurately map planned paths from a generic atlas…

Cited by 7SourcecodeScholar
2022

Towards Autonomous Atlas-Based Ultrasound Acquisitions in Presence of Articulated Motion

RA-L 2022

Robotic ultrasound (US) imaging aims at overcoming some of the limitations of free-hand US examinations, e.g. difficulty in guaranteeing intra- and inter-operator repeatability. However, due to anatomical and physiological variations between patients and relative movement of anatomical substructures

Cited by 36SourcecodeScholar
2022

VesNet-RL: Simulation-Based Reinforcement Learning for Real-World US Probe Navigation

RA-L 2022

Ultrasound (US) is one of the most common medical imaging modalities since it is radiation-free, low-cost, and real-time. In freehand US examinations, sonographers often navigate a US probe to visualize standard examination planes with rich diagnostic information. However, reproducibility and stabil

Cited by 53SourcecodeScholar
2021

Motion-Aware Robotic 3D Ultrasound

ICRA 2021poster

Robotic three-dimensional (3D) ultrasound (US) imaging has been employed to overcome the drawbacks of traditional US examinations, such as high inter-operator variability and lack of repeatability. However, object movement remains a challenge as unexpected motion decreases the quality of the 3D comp…

Cited by 29SourceScholar
2020

Automatic Normal Positioning of Robotic Ultrasound Probe Based Only on Confidence Map Optimization and Force Measurement

RA-L 2020

Acquiring good image quality is one of the main challenges for fully-automatic robot-assisted ultrasound systems (RUSS). The presented method aims at overcoming this challenge for orthopaedic applications by optimizing the orientation of the robotic ultrasound (US) probe, i.e. aligning the central a

Cited by 83SourceScholar
2017

A model of vertebral motion and key point recognition of drilling with force in robot-assisted spinal surgery

IROS 2017poster

Pedicle drilling is a crucial and high-risk process in spinal surgery. Due to the respiration and cardiac cycle, the position of spine would fluctuate during operations, which result in an increase of the difficulty in state recognition of pedicle drilling. To guarantee the safety and validity, a mo…

Cited by 8SourceScholar