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Toshio Fukuda

47 accepted papers

2025

A Robust Stereo Splatting SLAM System with Inertial-Legged Fusion

IROS 2025

Recent progress in stereo-based 3D Gaussian Splatting (3DGS) SLAM has enabled small-scale robots, which are too small to carry depth cameras, to achieve localization and reconstruct photorealistic scenes with high-speed rendering. However, initializing 3D Gaussians from binocular vision still requir

Cited by 0SourceScholar
2025

A Safe and Convenient Feeding Assistive Robotic Based on Multi-modal Interaction Method

IROS 2025

For individuals with limited mobility who are bedridden for extended periods, providing comfortable assisted feeding services is one of the most significant actions to enhance their quality of life. Despite the development of various feeding assistive robots, there remain limitations in terms of int

Cited by 0SourceScholar
2025

Development of Multi-Joint Biohybrid Soft Robot by Using Skeletal Muscle Tissue

ICRA 2025

Various forms of biohybrid robots have been developed; however, creating robots with multiple degrees of freedom remains a challenging task. In this paper, we developed a multi-joint biohybrid robot by using skeletal muscle tissue. To achieve this, we first developed a modular bio-actuator actuated

Cited by 0SourceScholar
2025

Swimming Performance Enhancement of the Magnetic Helical Microrobots Based on Surface Microstructure Modification

RA-L 2025

Magnetic helical microrobots have attracted considerable attraction in microscale targeted delivery due to their high propulsion efficiency and movement flexibility. However, for biomedical applications in unstructured and multibranched liquid environments, the capabilities of high swimming performa

Cited by 5SourceScholar
2024

A Facile one-step injection novel composite sensor for robot tactile assistance

IROS 2024poster

Tactile information is the research hotspot of wearable flexible sensors due to its importance and complexity. With the innovation of wearable technology and robotics in healthcare, researchers are increasingly integrating wearable flexible sensors on the front end of robots to reproduce the hand ta…

Cited by 0SourceScholar
2023

A Modular Biological Neural Network-Based Neuro-Robotic System via Local Chemical Stimulation and Calcium Imaging

RA-L 2023

Embodying in vitro biological neural networks (BNNs) with robots to explore the rise of intelligence in these simpler models and to endow robots with biological intelligence has been attracting increasing attention in the fields of neuroscience and robotics. However, current research suffers from un

Cited by 11SourceScholar
2023

Magnetically-Assisted Microfluidic Printing for the Fabrication of Anisotropic Skeletal Muscle Structure

RA-L 2023

Microfluidic printing provides a novel tool to facilitate the bulk assembly of cell-aligned microfibers for the fabrication of artificial skeletal muscle structure. However, due to the poor controllability for the deposition position of the microfiber, it is still difficult to realize the anisotropi

Cited by 2SourceScholar
2023

Real-Time Pose Estimation of Rats Based on Stereo Vision Embedded in a Robotic Rat

IROS 2023poster

In this paper, we propose a system for real-time rat pose estimation based on stereo vision. The system is dedicated to robot-rat interaction research. First, we design a lightweight, high-resolution network (RRKDNet) for keypoint detection of the rat. The network is trained on a dataset of rat imag…

Cited by 0SourceScholar
2022

A Motion Generation Strategy of Robotic Rat Using Imitation Learning for Behavioral Interaction

RA-L 2022

In this letter, we propose a motion generation strategy using imitation learning (IL) for biomimetic robots to interact with animals in a more natural manner. We previously developed a bioinspired spine mechanism allowing the robot to mimic rat motion closely. Thanks to the spine morphology, we esta

Cited by 9SourceScholar
2022

Bioinspired, Multifunctional, Active Whisker Sensors for Tactile Sensing of Mobile Robots

RA-L 2022

Whiskers of some animals, such as rats and cats, can actively sense stimuli from their surrounding environment. Such a capability is attractive for intelligent mobile robots. However, an artificial whisker with similar abilities has not been fully developed so that the robots acquire their surroundi

Cited by 16SourceScholar
2022

Fabrication of PEDOT:PSS based Soft Sensor for Feedback Control of Modular Bio-actuator

ICRA 2022poster

In this paper, we fabricated a soft sensor based on PEDOT:PSS for thin film structure. The developed soft sensor can measure the contraction force at real time to be embedded in a modular bio-actuator [1]. The modular actuator generated contraction forces at 0.3 mN when applying electric pulse stimu…

Cited by 2SourceScholar
2021

A Real-Time Motion Detection and Object Tracking Framework for Future Robot-Rat Interaction

IROS 2021poster

In this paper, we propose an automatic robot-rat interaction framework that enables a robotic rat to realize real-time localization, tracking and movement analysis of a laboratory rat. Specifically, we combine an object detector with stereo matching to achieve fast localization of the laboratory rat…

Cited by 4SourceScholar
2021

Automated Fabrication of the High-Fidelity Cellular Micro-Scaffold Through Proportion-Corrective Control of the Photocuring Process

RA-L 2021

Fabricated cellular micro-scaffold that recapitulates natural extracellular matrix (ECM) has shown huge potential in the study of cell behaviors. However, the reproducing of the physiological morphology with high efficiency and accuracy in the micro-scaffold still remains as a major challenge. Here,

Cited by 1SourceScholar
2021

Design of Soft Sensor for Feedback Control of Bio-actuator Powered by Skeletal Muscle

ICRA 2021poster

In spite of recent high attention of the biohybrid robot system, the previous researches focused on actuation system depend on simple on/off control without feedback control. To solve this problem, we proposed a soft sensor for feedback control of a bio-actuator driven by skeletal muscle. The propos…

Cited by 3SourceScholar
2021

Micro Robotic Manipulation System for the Force Stimulation of Muscle Fiber-like Cell Structure

ICRA 2021poster

Many previous works have facilitated muscle cell (C2C12) alignment to form fiber-like cell structures. However, there still remains a challenge how to induce C2C12 myoblasts in the cell structures to differentiate into matured myocytes to form a functional muscle tissue, while external mechanical st…

Cited by 2SourceScholar
2020

Construction of Multiple Hepatic Lobule like 3D Vascular Networks by Manipulating Magnetic Tweezers toward Tissue Engineering

IROS 2020poster

In this paper, we have constructed actively perfusable multiple hepatic lobule-like vascular networks in a 3D cellular structure by using magnetic tweezers. Without well-organized channel networks, cells in a large 3D tissue cannot receive nutrients and oxygen from the channel, and therefore, the ce…

Cited by 0SourceScholar
2020

Magnetically Actuated Pick-and-place Operations of Cellular Micro-rings for High-speed Assembly of Micro-scale Biological Tube

IROS 2020poster

Tissue engineering is trying to use modular tissue micro-rings to construct artificial biological microtubes as substitute of autologous tissue tubes to alleviate the shortage of donor sources. However, because of the lack of effective assembly strategies, it is still challenging to achieve high-spe…

Cited by 0SourceScholar
2019

Assembly of Multilayered Hepatic Lobule-like Vascular Network by using Heptapole Magnetic Tweezer

ICRA 2019poster

In this paper, we have fabricated a multilayered hepatic lobule-like vascular network in a 3D tissue using a heptapole magnetic tweezer. The tissue consists of cell-laden hydrogels with 3D channel networks. To fabricate multilayered channel system, magnetic hydrogel fibers were manipulated by a magn…

Cited by 3SourceScholar
2019

Automated Sorting of Rare Cells Based on Autofocusing Visual Feedback in Fluorescence Microscopy

IROS 2019poster

The research on rare cells makes a significant contribution to biology research and medical treatment for the application of diagnostic operation as well as prognoses treatment. Therefore, sorting them from heterogeneous mixtures is crucial and valuable. Traditional cell sorting methods featured wit…

Cited by 6SourceScholar
2019

Identification of Rat Ultrasonic Vocalizations from Mix Sounds of a Robotic Rat in a Noisy Environment

IROS 2019poster

Social interaction between a robot and rats is important since the robot can generate reproducible social behaviors across trials. However, lacking internal state feedback from the rat makes current robot-rat interaction a very preliminary level comparing with rat-rat interaction. Previous biologica…

Cited by 1SourceScholar
2018

Construction of Hepatic Lobule-Like Vascular Network by Using Magnetic Fields

ICRA 2018poster

Fabrication of vascular network is an important research for transporting required nutrients and oxygen to the artificial tissues. In this paper, we propose a novel method to construct a hepatic lobule-like vascular network in a 3D cellular structure. The network is simply constructed by three types…

Cited by 5SourceScholar
2018

Design and Online Calibration of a Highly Compact Microgripper

ICRA 2018poster

Microgrippers play a significant role in manipulation of micro-objects. To achieve dexterous and precise manipulation, a microgripper is required to be compactly designed and embedded with sensing feedback. Meanwhile, to convert the sensor position into displacement of the microgripper, the embedded…

Cited by 0SourceScholar
2017

Adaptive walking load control for training physical strength using cane-type robot

IROS 2017poster

In this paper, we introduce a walking load control strategy with a cane-type robot for gait training. The population of elderly people is increasing in most of the developed countries, and there is a growing demand for caregivers. Assistive robots are expected as a solution to provide aid in order t…

Cited by 9SourceScholar
2017

High-precision microinjection of microbeads into C. elegans trapped in a suction microchannel

ICRA 2017poster

This study presents the high-precision microinjection of fluorescent micro-gel beads into Caenorhabditis elegans trapped in a suction microchannel. In our previous works, we demonstrated survival microinjection by a conventional micromanipulation technique. However, the focal planes differed between…

Cited by 8SourceScholar
2017

Motion evaluation of a modified multi-link robotic rat

IROS 2017poster

The interaction test between a robotic rat and living rat is considered as a possible way to quantitatively characterize the rat sociality. In such robot-rat interactions, the robot should be designed to fully replicate a real rat in terms of morphological and behavioral characteristics. To address…

Cited by 6SourceScholar
2017

Multi-Layered Channel Patterning by Local Heating of Hydrogels

RA-L 2017

In this letter, we conducted a new method to fabricate channels inside cell structures for tissue engineering applications. A cell-embedded hydrogel is locally melted to fabricate channels inside cell structures. The fabricated channels can be used as vascular-like networks to supply nutrition and o

Cited by 0SourceScholar
2017

Non-contact transportation and rotation of micro objects by vibrating glass needle circularly under water

ICRA 2017poster

In micromanipulation, lots of methods have been developed to manipulate objects in microscale. However, few of them can be applied in both the transportation and the rotation of the micro objects. In this paper, we present a novel method to realize the non-contact transportation and rotation of the…

Cited by 4SourceScholar
2017

On-chip fabrication of movable toroidal cell structures using photo-crosslinkable biodegradable hydrogel

IROS 2017poster

In this research, we fabricated movable toroidal cell structures inside a microfluidic device for tissue engineering applications. A photo-crosslinkable biodegradable hydrogel gelatin methacrylate (GelMA) was employed to encapsulate biological cells for assembling cell structures. The UV light power…

Cited by 5SourceScholar
2017

Robotics-based micro-reeling of magnetic microfibers to fabricate helical structure for smooth muscle cells culture

ICRA 2017poster

Helical structure assembled by hydrogel microfibers is significant for culture of smooth muscle cells. However, the helical structure is only fabricated at the macroscale, while the fabrication of helical microstructure is still a challenge due to the lack of assembly method. In this paper, we propo…

Cited by 2SourceScholar
2017

Wall contact by octo-rotor UAV with one DoF manipulator for bridge inspection

IROS 2017poster

This paper describes a octo-rotor unmanned aerial vehicle (UAV) with one degree of freedom (DoF) manipulator for bridge inspection. The UAV has an ability to contact bridge pier to conduct hammering test. To control contact force applied by the UAV to the bridge pier, one DoF is enough for the manip…

Cited by 120SourceScholar
2016

Automated pick-up of carbon nanotubes inside a scanning electron microscope

IROS 2016poster

It is of great importance to pick up a single carbon nanotube (CNT) from a bulk of CNTs for nanodevice fabrication. In this study, we have proposed a nanorobotic manipulation system allowing automated pick-up of CNTs based on visual feedback. We utilize histogram normalization for automatic binariza…

Cited by 2SourceScholar
2016

Batch Fabrication of Microscale Gear-Like Tissue by Alginate-Poly-L-lysine (PLL) Microcapsules System

RA-L 2016

Constructing 3D cell module with certain shape and high cell density is a very important issue for artificial tissue engineering. In this letter, we present a novel method of fabricating compact microtissue with gear-like shape by electrodepositing of Ca <sup xmlns:mml="http://www.w3.org/1998/Math/M

Cited by 9SourceScholar
2016

High-Speed Bioassembly of Cellular Microstructures With Force Characterization for Repeating Single-Step Contact Manipulation

RA-L 2016

In vitro tissues are significant biological substitute for drug test, cell morphogenesis exploration and organ transplantation. In this letter, a novel microrobotic bioassembly method is proposed to engineer 3-D cellular structure, which can be utilized to culture in vitro tissue with microstructura

Cited by 2SourceScholar
2016

Microbubbles for High-Speed Assembly of Cell-Laden Vascular-Like Microtube

RA-L 2016

Vascular-like microtube takes an important role in delivering oxygen and nutrient to keep cell alive in the generated tissue. In this paper, we present an automated micromanipulation system to assemble 2-D gel micro-rings to vascular-like microtubes by means of generating and controlling microbubble

Cited by 1SourceScholar
2016

Micromanipulation for Coiling Microfluidic Spun Alginate Microfibers by Magnetically Guided System

RA-L 2016

Alginate hydrogel microfibers are a promising cell-laden module for three-dimensional (3-D) assembly to build cellular structures. However, it is still a challenge to manipulate them for microassembly. In this letter, we report a novel magnetic control method to handle this challenge. To enhance the

Cited by 9SourceScholar
2016

Novel In situ nanomanipulation integrated with SEM-CT imaging system

ICRA 2016

This paper presents a novel In situ nanomanipulation integrated with scanning electron microscope- computed tomography (SEM-CT) imaging system for 3D nanomanipulation. In our previous works, a nanorobotic manipulation system was established inside an environmental-SEM (E-SEM) for water-contained sam

Cited by 3SourceScholar
2016

Quasi-passive dynamic autonomous control to enhance horizontal and turning gait speed control

IROS 2016poster

This paper proposes a quasi-passive dynamic autonomous control (Q-PDAC) for a three-dimensional (3-D) bipedal gait of humanoid robots from start points to goal points. The major approach for 3-D traveling is currently footstep planning by a constantly stable gait with an emphasis on its accurate and…

Cited by 2SourceScholar
2016

Self-assembly of toroidal magnetic microstructures towards in vitro cell structures

IROS 2016poster

In this paper, we propose a new method to assemble microstructures with biological cells towards in vitro 3D cellular structures. The proposed assembly method uses self-assembly process of magnetized toroidal microstructures. Biocompatible toroidal hydrogel microstructures are prepared by electrodep…

Cited by 7SourceScholar
2016

Unified bipedal gait for walking and running by dynamics-based virtual holonomic constraint in PDAC

ICRA 2016

Conventional humanoids have achieved walking and running by independent controllers, even though a transition between these independent motions should be added to connect them while ensuring stability. In contrast, human selects walking/running at low/high speed in terms of energy efficiency, and tr

Cited by 6SourceScholar
2015

Automated bubble-based assembly of cell-laden microgels into vascular-like microtubes

IROS 2015poster

Fabrication of artificial blood vessels in micro scale significantly benefits the regeneration of functional human vascular networks. In this paper, we develop an efficient multi-microrobotic system with an innovative motorized sample holder (MSH) and two manipulators. Air is injected into the solut…

Cited by 3SourceScholar
2015

Electrodeposition of cell-laden alginate-PLL hydrogel structures for spatially selective entrapment

IROS 2015poster

In this study, cell-laden alginate-poly-L-lysine (PLL) hydrogel structures with arbitrary shapes were constructed based on electrodeposition method. Electrolysis of water in alginate solutions with calcium carbonate particles induced alginate gelation on micro-patterned anode electrode, and cell-lad…

Cited by 4SourceScholar
2015

Lab in a Droplet (LiD): Self-assembly of micro-nano structures inside a Droplet using surface tension

ICRA 2015poster

In this paper, we conducted a new method to assemble microstructures inside a droplet named “Lab in a Droplet (LiD)”. The method can realize the assembly of micro-nano structures inside a droplet size. The surface tension is used to assemble microstructures automatically. Micro-scale or nano-scale o…

Cited by 2SourceScholar
2015

MRI compatibility of lower-extremity motion simulator: LoMS

ICRA 2015poster

This paper describes a magnetic resonance imaging (MRI) compatibility assessment of our lower-extremity motion simulator called LoMS which provides gait-like motion for a wearer within his/her lying posture during functional MRI (fMRI) imaging. We confirmed that the existence and the movement of LoM…

Cited by 4SourceScholar
2015

Optimal use of arm-swing for bipedal walking control

ICRA 2015poster

Walking capability composed of stability and efficiency is one of the most important issues in the field of humanoid robots. An effective swing of the arms is expected to enhance the walking capability under the constraints from the limited body. We propose an arm-swing method to enhance the stabili…

Cited by 6SourceScholar
2015

Survival microinjection into C. elegans with in vivo observation based on micromanipulation

IROS 2015poster

This study presents the survival microinjection into Caenorhabditis elegans (C. elegans) with in vivo observation based on micromanipulation. The microinjections were achieved with micro-gel beads which are enable to encapsulate chemicals for injection. In this study, a fluorescent material was used…

Cited by 1SourceScholar
2015

Tandem stance avoidance using adaptive and asymmetric admittance control for fall prevention

ICRA 2015poster

Fall prevention is one of the most important functions of walking assistance devices for user's safety. It is preferable that these devices obviates factors which induce falling over rather than helping them recovering from falling motion. Tandem stance, where both legs form a line along walking dir…

Cited by 50SourceScholar
2015

Three-dimensional magnetic assembly of alginate microfibers using microfluidic “printing” method

ICRA 2015poster

Due to the poor controllability in hydrogels, Hydrogels-based assembly to form larger 3D complex shapes is still a big challenge. In this paper, we have reported a novel “bottom-up” method to fabricate three-dimensional (3D) magnetic alginate microfibers (MAMs) assemblies with complex shapes. Specif…

Cited by 2SourceScholar