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Biomedical Engineering Research Center
Biomedical Engineering Research Center
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Prof. Yasuko YANAGIDA |
| Room |
R2 |
Mail-Box |
R2-23 |
| TEL |
045-924-5039 |
| E-mail |
yanagida.y.af42(at)m.isct.ac.jp Please replace “(at)” with “@”. |
| HomePage |
http://www.yanagida.first.iir.titech.ac.jp/ |
| Research Field |
Bio-MEMS,Bio-sensing,Bio-functional engineering |
| Objective |
Development of MEMS devices systems for biochemistry and bio-analysis |
| Current Topics |
- Evaluation of Optical Properties of Substrate with Nano Periodic Structure and Its Application to Bio Measurement
- Cellular engineering by bio MEMS/NEMS
- Nanobiotechnology utilizing properties of biomolecules
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| Transfection device to single-cell |
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Prof. Hiroyuki ITO(Concurrent Post) |
| Room |
J2 |
Mail-Box |
J2-31 |
| TEL |
045-924-5010 |
| E-mail |
ito(at)nasu.iir.isct.ac.jp Please replace “(at)” with “@”. |
| HomePage |
http://ateal.jp/ |
| Research Field |
Integrated Circuits, RF Circuits, Sensor Networks, IoT and Applictaion |
| Objective |
Research on interface technology to connect real space and cyberspace |
| Current Topics |
- Ultra Low Power Wireless Sensor Circuit Technology
- Low Noise Circuit Technology
- Monitoring Technology for Dairy Husbandry
- IT Technology for Agriculture
- Measurement Technology for Dental Therapy
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Low-Phase-Noise Fractional-N Synthesizer for Wireless Communication.

Monitoring Technology for Dairy Husbandry
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Prof. Tomonari INAMURA(Concurrent Post) |
| Room |
J3 |
Mail-Box |
J3-22 |
| TEL |
045-924-5058 |
| E-mail |
inamura.t(at)first.iir.isct.ac.jp Please replace “(at)” with “@”. |
| HomePage |
http://www.mrst.first.iir.titech.ac.jp/inamura_tit/ |
| Research Field |
Microstructure, Materials Design |
| Objective |
Design and improvement of structural or functional materials based on the geometry of microstructure |
| Current Topics |
- Experimental and theoretical study on martensite microstructure
- Design of long-life shape memory alloy
- Variant selection rule in ferrous martensite
- Kink deformation and kink strengthening of mille-feuille structure
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| TEM image of the twin-within-twin structure in Ti-Au shape memory alloy |
Relationship between the shear magnitudes and the strength of disclination formed by the connection of kink bands |
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Prof. Takashi OBI(Concurrent Post)  |
| Room |
R2 |
Mail-Box |
R2-60 |
| TEL |
045-924-5482 |
| E-mail |
obi(at)first.iir.isct.ac.jp Please replace “(at)” with “@”. |
| HomePage |
https://www.msii.first.iir.titech.ac.jp/ |
| Research Field |
Social Information System, Information Security, Medical Image and Information Processing |
| Objective |
Development of information systems and imaging systems that are used in the medical field and public sector |
| Current Topics |
- Japanese National e-ID system
- Advanced techniques of the medical information
- Secure Medical network and Systems
- Medical image processing using the multi-spectral images
- Reconstruction method for the several medical images
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Improving the Accuracy of Segmentation of Kidney Tumor in MRI Images Using Multi-Modality Images |

Study on a Privacy-Aware PHR Data Analysis System |
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Prof. Joon-wan KIM(Concurrent Post) |
| Room |
J3棟 |
Mail-Box |
J3-12 |
| TEL |
045-924-5035 |
| E-mail |
woodjoon(at)first.iir.isct.ac.jp Please replace “(at)” with “@”. |
| HomePage |
http://www.smart.first.iir.titech.ac.jp/ |
| Research Field |
MEMS, Micro Mechatronics, Bio Mechatronics |
| Objective |
Advanced Micro-mechatronics by MEMS technology and its applications |
| Current Topics |
- Micro hydraulic power source (micropump) driven by ECF jet
- Liquid cooling system by ECF micropump
- ECF flexible actuators (micro hands or micro manipulators)
- Focus-tunable ECF microlens by MEMS technology
- MEMS-based ECF micro rate gyroscopes
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ECF Micropump by triangular prism and slit electrodes |

ECF micro rate gyroscope by MEMS technology |
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Prof. Yasuharu KOIKE(Concurrent Post) |
| Room |
J3 |
Mail-Box |
J3-11 |
| TEL |
045-924-5054 |
E-mail |
koike.y(at)first.iir.isct.ac.jp Please replace “(at)” with “@”. |
| HomePage |
http://www.bioif.iir.titech.ac.jp/klab/ |
| Research Field |
Computational Neuroscience, Human interface |
| Objective |
Investigate of brain function such as motor control and applications to human interface |
| Current Topics |
- Computational Neuroscience
- Modeling of a musculo-skeletal system
- Brain Machine Interface
- Human Interface by biological signals
- Motor learning by reinforcement learning
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Human interface using EMG Signals:EMG signala, which indicate muscle activities, are measured.
These signals can bring the robot in the virtual environment or slave of ourselves into action.
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Prof. Chiaki SATO(Concurrent Post) |
| Room |
G2 |
Mail-Box |
G2-20 |
| TEL |
045-924-5062 |
| E-mail |
sato.c(at)first.iir.isct.ac.jp Please replace “(at)” with “@”. |
| HomePage |
https://www.adhesion.first.iir.isct.ac.jp/ |
| Research Field |
Adhesion technology, Solid mechanics |
| Objective |
Development and implementation of adhesion technology |
| Current Topics |
- Adhesion for car structures
- Adhesion for aircraft and maritime structures
- Adhesion of plastics
- Adhesion for electronics
- Adhesion for everything
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Direct bonding of FRTP and metal
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Prof. Tadahiko SHINSHI(Concurrent Post) |
| Room |
R2 |
Mail-Box |
R2-38 |
| TEL |
045-924-5095 |
| E-mail |
shinshi.t.ab(at)m.titech.ac.jp Please replace “(at)” with “@”. |
| HomePage |
https://www.precisionmechatronics.mech.e.titech.ac.jp/ |
| Research Field |
Mechanical devices and systems using magnetic force |
| Objective |
Realization of novel mechanical devices and systems using magnetic force |
| Current Topics |
- Artificial heart with bearingless motor integrating magnetic bearings and motor
- MEMS actuators and energy harvesters using micro permanent magnets
- High-response, high-torque, multi-degree-of-freedom actuators for industrial applications
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| Centrifugal blood pump using bearingless slice motor |
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| Ultra-high response steering mirrors for laser scanning |
2-DOF MEMS linear motor |
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Prof. Kenji SUZUKI(Concurrent Post)  |
| Room |
R2 |
Mail-Box |
R2-58 |
| TEL |
045-924-5496 |
| E-mail |
E-mail: info(at)bmai.iir.titech.ac.jp Please replace “(at)” with “@”. |
| HomePage |
https://suzukilab.first.iir.titech.ac.jp/ |
| Research Field |
Deep learning, Machine learning, Artificial Intelligence (AI), AI-aided Diagnosis, Biomedical Image Understanding, Biomedical Image Processing. |
| Objective |
To develop computational intelligence that learns, from image examples, physicians’ skills and knowledge in interpreting images to help make smart decisions in biomedicine. |
| Current Topics |
- Small-Data Deep Learning: Development of deep learning models that can be trained with a small number of samples.
- AI Doctor: Development of intelligent computer-aided systems that assist physicians in early detection, accurate diagnosis, effective treatment, and better prognosis of diseases.
- Virtual AI Imaging: Development of deep-learning technologies that learn to virtually acquire physical phenomena and functions in imaging.
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Image-Regression Deep Learning for Estimating Likelihood of Being Lung Cancer in CT

Virtual AI Imaging Technology to Remove Bone Components in Chest Radiographs
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Prof. Masato SONE(Concurrent Post) |
| Room |
R2 |
Mail-Box |
R2-35 |
| TEL |
045-924-5043 |
| E-mail |
msone(at)first.iir.isct.ac.jp Please replace “(at)” with “@”. |
| HomePage |
http://www.ames.pi.titech.ac.jp/ |
| Research Field |
Electroplating, Material Evaluation, High Functional Metallic Materials |
| Objective |
Material fabrication and characterization for medical devices |
| Current Topics |
- Fabrication of noble metal/polymer hybrid fiber for wearable devices and the application
- Fabrication and material characterization of noble metal materials for non-invasive high sensitive medical device
- Single atomic noble metal electrodeposition for smell sensor and the application
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Micro-compression specimen |

Micro-bending specimen |

Micro-tensile specimen |
| Various micro-testing specimens proposed (Possible to examine micro-compression,bending and tensile deformation) |
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Prof. Takashi TOKUDA(Concurrent Post) |
| Room |
S9 |
Mail-Box |
S9-11 |
| TEL |
03-5734-2211 |
| E-mail |
tokuda(at)ee.e.titech.ac.jp Please replace “(at)” with “@”. |
| HomePage |
http://www.tokuda-lab.ee.e.titech.ac.jp/index_e.html |
| Research Field |
CMOS-based microdevices and systems |
| Objective |
Development of circuit technology for ultra-small wireless devices and sensors for biomedical and IoT applications |
| Current Topics |
- CMOS-controlled photovoltaic power transfer and energy harvesting
- Wireless, ultra-small Implantable optogenetic stimulator
- IoT micronode device for “Bottom-up IoT” technology
- Implantable glucose sensor
- On-chip opto-electronic image sensor
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Ultra-small Implantable optogenetic stimulator |

Implantable glucose sensor |
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Prof. Kentaro NAKAMURA (Concurrent Post) |
| 居室 |
R2棟 |
Mail-Box |
R2-26 |
| TEL |
045-924-5090 |
| E-mail |
knakamur(at)first.iir.isct.ac.jp Please replace “(at)” with “@”. |
| HomePage |
https://www.nakamura.first.iir.isct.ac.jp/ |
| Research Field |
Applied Acoustic Devices |
| Objective |
Development of high-speed distributed sensor system and actuators |
| Current Topics |
- Non-contact transport/manipulation of droplets using ultrasonic field.
- Ultrasonic motors and actuators.
- Optical/ultrasonic measurement for healthcare use.
- Optical Fiber Sensors.
- Visualization of acoustic field.
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Non-contact manupilation of droplets using ultrasonic levitation.
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Prof. Hideki HOSODA(Concurrent Post) |
| Room |
R2 |
Mail-Box |
R2-27 |
| TEL |
045-924-5057 |
| E-mail |
hosoda(at)first.iir.isct.ac.jp Please replace “(at)” with “@”. |
| HomePage |
http://www.mater.pi.titech.ac.jp/ |
| Research Field |
Functional and structural materials, metallurgy |
| Objective |
Innovation and development of novel functional materials and materials design, and their applications |
| Current Topics |
- Development of biomedical shape memory and superelastic alloys
- High temperature shape memory alloys
- Ferromagnetic shape memory alloys and their composites
- Intermetallic compounds, phase diagram
- Biomaterials, medical materials and dental materials and their applications
- Phase stability, phase transformation and microstructural control
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Superelastic behavior and unique internal structure of TiMoSnZr biomedical alloy. |

Micro CT image of NiMnGa ferromagnetic shape memory alloy particle distributed silicone composite (left) and SEM image of NiMnGa particle with smooth surface by Bi-modified pulverization process. |
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Prof. Kazuhiro YOSHIDA(Concurrent Post) |
| Room |
R2棟 |
Mail-Box |
R2-42 |
| TEL |
045-924-5011 |
| E-mail |
yoshida.k(at)first.iir.isct.ac.jp Please replace “(at)” with “@”. |
| HomePage |
http://yoshida-www.pi.titech.ac.jp |
| Research Field |
Microactuators, Microrobots, Functional Fluids |
| Objective |
Development of innovative mechano-devices/systems for advanced power microrobots |
| Current Topics |
- Soft microactuators using functional fluids
- Multi-DOF microactuator systems using alternating pressure sources
- High power piezoelectric micropumps using fluid inertia
- Micro fluidic devices using acelectroosmosis
- In-pipe working microrobots using fluid power
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Outline of research
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Prof. Fumio KOYAMA(Specially Appointed)(Concurrent Post) |
| Room |
R2 |
Mail-Box |
R2-22 |
| TEL |
045-924-5068 |
| E-mail |
koyama(at)first.iir.isct.ac.jp Please replace “(at)” with “@”. |
| HomePage |
http://vcsel-www.pi.titech.ac.jp/ |
| Research Field |
Photonic Integrated Devices |
| Objective |
Photonic integrated circuits toward high-capacity lightwave communication and optical sensing systems |
| Current Topics |
- VCSEL photonics for new functions
- High-speed VCSEL photonics for next-generation data center networks
- Widely tunable VCSELs for optical bio-imaging
- High-resolution beam steering for LiDAR applications
- Tunable optical devices for next-generation access networks
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Widely wavelength tunable MEMS VCSEL

Super-high resolution beam steering devices
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Assoc. Prof. Akitoshi OKINO |
| Room |
J2 |
Mail-Box |
J2-32 |
| TEL |
045-924-5688 |
| E-mail |
okino.a.584b(at)m.isct.ac.jp Please replace “(at)” with “@”. |
| HomePage |
https://www.ap.first.iir.isct.ac.jp/ |
| Research Field |
Atmospheric Plasma Engineering, Plasma Medicine, Plasma Spectrochemistry |
| Objective |
Development of new atmospheric plasma sources and its application to medical, analytical, environmental and material fields |
| Current Topics |
- Multi-gas temperature-controllable atmospheric plasma source
- High sensitive measurement system for skin surface/in vivo drugs
- Elemental analysis in single iPS/cancer cell
- Sterilization, hemostasis, enhancement of drug penetration by LTP
- Surface treatment/coating for high-strength adhesion
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Assoc. Prof. Hiroaki IINO(Concurrent Post) |
| Room |
J1 |
Mail-Box |
J1-2 |
| TEL |
045-924-5181 |
| E-mail |
iino(at)first.iir.isct.ac.jp Please replace “(at)” with “@”. |
| HomePage |
https://www.first.iir.isct.ac.jp/iino/english/ |
| Research Field |
Organic electronics, Imaging devices |
| Objective |
Liquid crystalline organic-semiconductors toward large-area imaging devices |
| Current Topics |
- Study on quality liquid crystalline organic-semiconductors
- Organic transistors using liquid crystalline organic-semiconductors
- Study on solution process using liquid crystallinity
- Study on carrier transport properties in liquid crystalline organic-semiconductors
- Optoelectornic devices using liquid crystalline organic-semiconductors
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Organic transistors fabricated by solution process using liquid crystalinisty on a plastic film
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Assoc. Prof. Tadashi ISHIDA(Concurrent Post) |
| Room |
G5 |
Mail-Box |
G5-902 |
| TEL |
045-924-5450 |
| E-mail |
ishida(at)first.iir.isct.ac.jp Please replace “(at)” with “@”. |
| HomePage |
https://sites.google.com/view/ishida-bmm-lab/ |
| Research Field |
Biomedical microdevice |
| Objective |
Application of nano/micro technology to biological and medical fields |
| Current Topics |
- In-liquid electron microscope for biological measurements
- Microfluidic device for experimental evolution of cells
- Fluidic device equipped with biological tissues
- Cell freezing technique in a microchannel
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| In-liquid SEM |
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| Small intestinal channel with pneumatic actuators |
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Assoc. Prof. Azusa OOI(Concurrent Post) |
| Room |
R2 |
Mail-Box |
R2-28 |
| TEL |
045-924-5218 |
| E-mail |
ooi.a(at)first.iir.isct.ac.jp Please replace “(at)” with “@”. |
| HomePage |
http://www.ooi-mat.mac.titech.ac.jp/ |
| Research Field |
Electrochemistry / Corrosion science / Fuel cell / Metallurgy |
| Objective |
Development of corrosion-resistant materials based on the dissolution mechanism of metal |
| Current Topics |
- Durability evaluation of electrocatalysts for polymer electrolyte fuel cells
- Dissolution mechanism of metal at nanoscale
- Soil corrosion mechanism of steel
- Corrosion mechanism of steel under supercritical CO2 environment
- Hydrogen adsorption and absorption behavior of steel
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In-situ detection of dissolved metal ions by channel flow multi-electrode method

Identical location FE-SEM observation of Pt-Cu nanoparticle before and after dissolution
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Assoc. Prof. Masaki TAHARA(Concurrent Post) |
| Room |
R2 |
Mail-Box |
R2-27 |
| TEL |
045-924-5475 |
| E-mail |
tahara(at)first.iir.isct.ac.jp Please replace “(at)” with “@”. |
| HomePage |
http://www.mater.pi.titech.ac.jp/ |
| Research Field |
Metallography, Shape memory alloy |
| Objective |
Development of functional metal materials by advanced microstructure analysis |
| Current Topics |
- Microstructural analysis of stress-induced martensite in shape memory alloys
- Plastic deformation mechanism of shape memory alloys
- Isothermal martensitic transformation
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Superelasticity and microstructure of stress-induced martensite in Ti-Nb alloy single crystal
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Assoc. Prof. Marie TABARU (Concurrent Post) |
| Room |
R2 |
Mail-Box |
R2-25 |
| TEL |
045-924-5051 |
| E-mail |
tabaru.m(at)first.iir.isct.ac.jp Please replace “(at)” with “@”. |
| HomePage |
https://tbr.first.iir.isct.ac.jp/en/ |
| Research Field |
Acoustic engineering, Medical ultrasound, Food science, Welfare technology |
| Objective |
Our group studies measurement technology using ultrasonic and optical waves for medical care and agriculture. |
| Current Topics |
- Firmness measurement of fruits
- Tactile sensor utilizing acoustic responses of an elastic tube
- Endoscopic elastography using optical coherent tomography
- Motion monitoring using ultrasound and EMG signal
- Fusing imaging of ultrasonic and optical image
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Firmness measurement of fruits using airborne ultrasonic transducer

Tactile sensor utilizing acoustic responses of an elastic tube
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Assoc. Prof. Takasi NISISAKO(Concurrent Post) |
| Room |
R2 |
Mail-Box |
R2-9 |
| TEL |
045-924-5092 |
| E-mail |
nisisako(at)first.iir.isct.ac.jp Please replace “(at)” with “@”. |
| HomePage |
http://www.nis.first.iir.titech.ac.jp |
| Research Field |
Micro/nanofluidics and Interfacial Science |
| Objective |
Handling of fluids and interfaces at small scales for novel engineering applications |
| Current Topics |
- Droplet microfluidics
- Functional particles design
- MicroTAS / Lab on a chip
- Micro/nano fabrication
- Microfluidic particles separation
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Microfluidic production of functional droplets and particles

Drug permeability assay through microfluidic droplet interface bilayers |
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Assoc. Prof. Tso-Fu Mark CHANG(Concurrent Post) |
| Room |
R2 |
Mail-Box |
R2-35 |
| TEL |
045-924-5044 |
| E-mail |
tfmchang(at)first.iir.isct.ac.jp Please replace “(at)” with “@”. |
| HomePage |
http://www.ames.pi.titech.ac.jp/ |
| Research Field |
Electroplating, catalytic materials, metal-based composite photocatalyst |
| Objective |
Design and performance enhancement of materails for medical sensor and wearable devices |
| Current Topics |
- Development of metallic materials fabrication process for miniaturized electronic devices.
- Preparation of flexible functional composite materials and the applicaitons
- Metal-based catalyst for biosensors
- Development of visible light driven anti-infection materials
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Visible light driven anti-infection textile
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Assoc. Prof. Yuki HIRATA(Concurrent Post) |
| Room |
R2 |
Mail-Box |
R2-37 |
| TEL |
045-924-5105 |
| E-mail |
hirata.y.0575(at)m.isct.ac.jp Please replace “(at)” with “@”. |
| HomePage |
https://www.mpsl.first.iir.isct.ac.jp/ |
| Research Field |
Surface Engineering, Nanomaterials, Bioengineering, Plasma Engineering, Tribology |
| Objective |
Development of innovative devices for medical applications based on materials science |
| Current Topics |
- Synthesis of graphene-hBN based multi-heterostructure and the development of its applications
- Development of 3-Dimensional DLC film coating technique
- Development of environmentally friendly superlubrication technology
- Elucidation of thin film growth mechanisms through machine learning simulations
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Connecting nanomaterials for next-generation nanodevice potential

Artificial cell membrane sensor and solution exchange using MEMS Extracellular electron transfer
Nanosheets Photocatalytic reaction
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Asst. Prof. Akane YAIDA(Specially Appointed)〔Okino Lab〕 |
| Room |
J2 |
Mail-Box |
J2-32 |
| TEL |
045-924-5689 |
| E-mail |
yaida(at)first.iir.isct.ac.jp Please replace “(at)” with “@”. |
| HomePage |
https://www.ap.first.iir.isct.ac.jp/ |
| Current Topics |
- Development of highly sensitive multi-element analysis system in a single cell
- Development of low-temperature plasma sources and application to spectroscopic analysis, environment, and materials
- Ultra-trace elemental analysis of river water, sewage treatment effluent and tap water
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| Inductively coupled plasma time-of-flight mass spectrometer for multi-elemental analysis (ICP-TOF-MS) |
Cell sorter for single cell analysis(Cell sorter) |