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Yuguo Dai

10 accepted papers

2025

Multiple-scale augmented reality markers for positioning of robotic micromanipulation

IROS 2025

This study proposes a novel strategy for cross-scale position of robotic micromanipulation. The strategy utilizes multiple-scale augmented reality (AR) markers for locating the robotic manipulator on different scales. The macro-marker (3.0 cm-per side, 5 mm×5 mm each square) is applied to position t

Cited by 0SourceScholar
2024

A Movable Microfluidic Chip with Gap Effect for Manipulation of Oocytes

ICRA 2024poster

This study proposes a novel movable microfluidic chip in which a microfluidic chip is integrated into a robotic manipulator for manipulating oocytes. The microfluidic device has the ability to release a single oocyte with a gap effect. The robotic manipulator can control the position of the microflu…

Cited by 0SourceScholar
2023

Magnetically Controlled Cell Robots with Immune-Enhancing Potential

IROS 2023poster

Magnetic microrobots exhibit enormous potential in targeted drug delivery owing to the remote wireless manipulation and minimum invasion for medical treatment. High degree of freedom offers the magnetic propelled robots extraordinary application prospect since they can be controlled precisely when d…

Cited by 1SourceScholar
2022

Acoustic and magnetic hybrid actuated immune cell robot for target and kill cancer cells

ICRA 2022poster

Macrophage immunotherapy is a promising clinical approach to treat cancer. However, low targeting efficiency severely limits the immunotherapeutic effect of macrophages. Here, we report a unique macrophage robot that can target and kill cancer cells using a combination of external acoustic and magne…

Cited by 3SourceScholar
2022

Biocompatible Ferrofluid Robot With Photothermal Property for Targeted Tumor Therapy

RA-L 2022

Magnetic-controlled micro-robots have promising applications in disease therapy due to their high targetability and drug utilization. Due to their unique deformable and divisible properties, ferrofluid robots have gained much attention in microchemical reaction chips and micromanipulation. This lett

Cited by 8SourceScholar
2022

Multi-Mode Motion Control of Reconfigurable Vortex-Shaped Microrobot Swarms for Targeted Tumor Therapy

RA-L 2022

Micro-nano robots with low invasiveness and high drug utilization are considered a promising approach for tumor therapy. However, individual micro-nano robots are limited in terms of motility, drug-carrying capacity, and environmental adaptability. This study proposes a clustering control strategy f

Cited by 13SourceScholar
2021

Precise Control of Magnetized Macrophage Cell Robot for Targeted Drug Delivery

IROS 2021poster

Micro-nano-robots are considered to be a promising platform for drug delivery in biological organisms, but there are still urgent technical problems in biocompatibility and degradability of 3D-printed-based micro-robots that need to be solved. Therefore, in this paper, we design a magnetized bio-hyb…

Cited by 2SourceScholar
2020

A novel and controllable cell-based microrobot in real vascular network for target tumor therapy

IROS 2020poster

Magnetic microrobots can be propelled precisely and wirelessly in vivo using magnetic field for targeted drug delivery and early detection. They are promising for clinical trials since magnetic fields are capable of penetrating most materials with minimal interaction, and are nearly harmless to huma…

Cited by 5SourceScholar
2020

Anticipating tumor metastasis by circulating tumor cells captured by acoustic microstreaming

IROS 2020poster

Circulating tumor cells (CTCs) are the primary cause of tumor metastasis after surgery. Metastatic tumor recurrence is the leading reason of cancer death. It is prerequisite to develop a platform for CTCs separation to predict the cancer cell transfer in important organs. Herein, a novel acoustic mi…

Cited by 0SourceScholar
2020

Magnetized Cell-robot Propelled by Magnetic Field for Cancer Killing

IROS 2020poster

In this paper, we present a magnetized cell-robot using macrophages as templates, which can be controlled under a strong gradient magnetic field, to approach and kill cancer cells in both vitro and vivo environment. Firstly, we establish a magnetic control system using only four coils which can gene…

Cited by 3SourceScholar