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Masaru Takeuchi

22 accepted papers

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
2024

Real-Time Spatiotemporal Assistance for Micromanipulation Using Imitation Learning

RA-L 2024

There has been an increasing demand for microscopic work using optical microscopes and micromanipulators for applications in various fields. However, microinjection requires skilled operators, and the considerable shortage of experts has become a recent challenge. We overcome this challenge by propo

Cited by 10SourceScholar
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

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

Microinjection System to Enable Real-Time 3D Image Presentation Through Focal Position Adjustment

RA-L 2021

The microinjection technique, in which DNA is injected into cells, is widely applied in fields such as biology, medicine, and pharmacy. However, the implementation of the microinjection process requires skill and, thus, it is necessary to improve the operability. To this end, this study proposes a m

Cited by 6SourceScholar
2021

View-expansive Microscope System with Real-time High-resolution Imaging for Simplified Microinjection Experiments

ICRA 2021poster

Microinjection technology is applied widely in biomedical research for the purposes of gene manipulation and microinsemination. Generally, microinjection is performed under an optical microscope environment through image presentation of the targets. To perform the microinjection process, it is neces…

Cited by 5SourceScholar
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

Learned Image Compression With Discretized Gaussian Mixture Likelihoods and Attention Modules

CVPR 2020poster

Image compression is a fundamental research field and many well-known compression standards have been developed for many decades. Recently, learned compression methods exhibit a fast development trend with promising results. However, there is still a performance gap between learned compression algor…

Cited by 1181PDFcodeScholar
2020

Learned Lossless Image Compression with A Hyperprior and Discretized Gaussian Mixture Likelihoods

ICASSP 2020accepted

Lossless image compression is an important task in the field of multimedia communication. Traditional image codecs typically support lossless mode, such as WebP, JPEG2000, FLIF. Recently, deep learning based approaches have started to show the potential at this point. HyperPrior is an effective tech…

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

Learning Image and Video Compression Through Spatial-Temporal Energy Compaction

CVPR 2019poster

Compression has been an important research topic for many decades, to produce a significant impact on data transmission and storage. Recent advances have shown a great potential of learning based image and video compression. Inspired from related works, in this paper, we present an image compression…

Cited by 100PDFcodeScholar
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
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

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

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
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

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

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
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

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