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Jiangfan Yu

13 accepted papers

2026

Selective Actuation for Microrobots Based on Distributed Magnetic Field Design

ICRA 2026poster

Mechanical stimulation is essential for regulating cellular processes such as proliferation, differentiation, and apoptosis. Magnetic microrobot swarms offer a promising platform for delivering targeted mechanical stimulation to cells via remote actuation under rotating magnetic fields. However, mag…

Cited by 0Scholar
2025

Selective Motion Control of Cell Microrobots in Three-Dimensional Space

IROS 2025

Magnetic microrobots are showing great potential in micromanipulation due to the capability of motion control under external fields. However, achieving selective control of magnetic microrobots in three-dimensional (3D) space using global magnetic fields still presents a challenge. In this work, we

Cited by 0SourceScholar
2024

Millipede-Inspired Multi-legged Magnetic Soft Robots for Targeted Locomotion in Tortuous Environments

IROS 2024poster

Miniature robots capable of untethered operation hold great promise for performing diagnostic and therapeutic procedures in hard-to-reach regions within the human body. Nonetheless, navigating these complex and diverse physiological environments remains a significant challenge. To effectively naviga…

Cited by 0SourceScholar
2024

Navigated Locomotion and Controllable Splitting of a Microswarm in a Complex Environment

IROS 2024poster

Reconfigurable microswarms have received extensive attention recently. In this work, we propose a control strategy for a ribbon-like swarm to perform navigated locomotion with a stable pattern, and perform controllable splitting into double subswarms to reach two targets simultaneously. Two differen…

Cited by 0SourceScholar
2024

Weakly-Supervised Depth Completion during Robotic Micromanipulation from a Monocular Microscopic Image

ICRA 2024poster

Obtaining three-dimensional information, especially the z-axis depth information, is crucial for robotic micromanipulation. Due to the unavailability of depth sensors such as lidars in micromanipulation setups, traditional depth acquisition methods such as depth from focus or depth from defocus dire…

Cited by 0SourceScholar
2020

Reconfigurable Magnetic Microswarm for Thrombolysis under Ultrasound Imaging

ICRA 2020poster

We propose thrombolysis using a magnetic nanoparticle microswarm with tissue plasminogen activator (tPA) under ultrasound imaging. The microswarm is generated in blood using an oscillating magnetic field and can be navigated with locomotion along both the long and short axis. By modulating the input…

Cited by 31SourceScholar
2019

Characterizing Nanoparticle Swarms With Tuneable Concentrations for Enhanced Imaging Contrast

RA-L 2019

Microrobots capable of performing targeted delivery are promising for biomedical applications. Due to the restriction of their small size and volume, however, the real-time <italic xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">in vivo</i> imaging strategy

Cited by 28SourceScholar
2018

Magnetic Navigation of a Rotating Colloidal Swarm Using Ultrasound Images

IROS 2018poster

Microrobots are considered as promising tools for biomedical applications. However, the imaging of them becomes challenges in order to be further applied on in vivo environments. Here we report the magnetic navigation of a paramagnetic nanoparticle-based swarm using ultrasound images. The swarm can…

Cited by 32SourceScholar
2016

Steering micro-robotic swarm by dynamic actuating fields

ICRA 2016

We present a general solution for steering microrobotic swarm by dynamic actuating fields. In our approach, the motion of micro-robots is controlled by changing the actuating direction of a field applied to them. The time-series sequence of actuating field's directions can be computed automatically.

Cited by 7SourceScholar