Updated on 2025/04/10

写真a

 
MARUYAMA, Hisataka
 
Organization
Graduate School of Engineering Micro-Nano Mechanical Science and Engineering 2 Associate professor
Graduate School
Graduate School of Engineering
Undergraduate School
School of Engineering Mechanical and Aerospace Engineering
Title
Associate professor
Contact information
メールアドレス
External link

Degree 1

  1. Ph. D. (Engineering) ( 2007.3   Nagoya University ) 

Research Interests 1

  1. Micro-Nano Robotics

Research Areas 1

  1. Others / Others  / Intelligent Mechanics/Mechanical System

Current Research Project and SDGs 3

  1. オプト・ケモロボットを用いたマルチスケール細胞解析システム

  2. 身体的フレイル予防・改善のための運動支援システム

  3. 超リアル手術シミュレーションのためのハイドロゲル生体モデル

Research History 18

  1. Meijo University

    2022.4 - 2023.3

  2. Chubu University

    2022.4 - 2023.3

  3. Chubu University

    2021.4 - 2022.3

  4. Meijo University

    2021.4 - 2022.3

  5. Meijo University

    2020.4 - 2021.3

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    Country:Japan

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Education 2

  1. Nagoya University   Graduate School, Division of Engineering   Micro-Nano Systems Engineering

    2004.4 - 2007.3

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    Country: Japan

  2. Nagoya University   Faculty of Engineering

    1998.4 - 2002.3

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    Country: Japan

Professional Memberships 5

  1. IEEE

  2. 日本機械学会

  3. 日本ロボット学会

  4. 化学とマイクロ・ナノシステム研究会

  5. 計測自動制御学会

Committee Memberships 40

  1. 日本機械学会ロボメカ部門   運営委員  

    2025.3 - 2028.3   

  2. 2025 IEEE/RSJ International Conference on Intelligent Robots and Systems   Editor  

    2025.1 - 2025.11   

  3.   General affair char  

    2024.3 - 2024.11   

  4. 2024 IEEE/RSJ International Conference on Intelligent Robots and Systems   Editor  

    2024.2 - 2024.11   

  5. 2024 IEEE International Conference on Cyborg and Bionic Systems   Program Chair  

    2024.1 - 2024.11   

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Awards 29

  1. MHS Distinguished Service Award

    2024.11   MHS2024 Organizing Comittee  

    Hisataka Maruyama

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    Award type:Award from international society, conference, symposium, etc.  Country:Japan

  2. 文部科学大臣表彰若手科学者賞

    2018.4   文部科学省   光操作・計測技術を利用した単一細胞解析に関する研究

    丸山央峰

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    Country:Japan

  3. Early Career Award

    2011.5  

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    Country:Japan

  4. 日本機械学会ロボティクス・メカトロニクス部門ベストプレゼンテーション表彰

    2023.6   日本機械学会   ハイドロゲルのマイクロ3次元造形を用いた光環境マイクロセンサの作製

    丸山央峰

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    Award type:Award from Japanese society, conference, symposium, etc.  Country:Japan

  5. Best Paper Awards

    2022.11   IEEE   High-speed liquid exchange using a 3D printed probe with dual pumps

    Xu Du, Shingo kaneko, Hisataka Maruyama, Hirotaka Sugiura, Fumihito Arai

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    Award type:Award from international society, conference, symposium, etc.  Country:Japan

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Papers 51

  1. Instantaneous extracellular solution exchange for concurrent evaluation of membrane permeability of single cells Reviewed International journal

    Kaneko, S; Hirotaka, S; Tsujii, M; Maruyama, H; Uozumi, N; Arai, F

    LAB ON A CHIP   Vol. 24 ( 2 ) page: 281 - 291   2024.1

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    Language:English   Publishing type:Research paper (scientific journal)  

    DOI: 10.1039/d3lc00633f

    Web of Science

    PubMed

  2. Exploring the Effects of Doll Therapy on Cerebral Blood Flow in Young Adult Women: A Preliminary Study Reviewed

    Eiko Takano, Kei Ito, Shota Suzumura, Yoko Nagakawa, Atsushi Tsukahara, Hisataka Maruyama, Isao Makino and Izumi Kondo

    Gerontology & Geriatrics Studies     2024.1

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    Language:English   Publishing type:Research paper (scientific journal)  

  3. User Experience of Older People While Using Digital Health Technologies: A Systematic Review Reviewed International journal Open Access

    Takano, E; Maruyama, H; Takahashi, T; Mori, K; Nishiyori, K; Morita, Y; Fukuda, T; Kondo, I; Ishibashi, Y

    APPLIED SCIENCES-BASEL   Vol. 13 ( 23 )   2023.12

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    Language:English   Publishing type:Research paper (scientific journal)  

    DOI: 10.3390/app132312815

    Open Access

    Web of Science

  4. Integration of Microfluidic Chip and Probe with a Dual Pump System for Measurement of Single Cells Transient Response

    Du Xu, Kaneko Shingo, Maruyama Hisataka, Sugiura Hirotaka, Tsujii Masaru, Uozumi Nobuyuki, Arai Fumihito

    MICROMACHINES   Vol. 14 ( 6 )   2023.6

  5. Weight Illusion Caused by Sinusoidal Vibration Correlates with Grip Force Adjustment Reviewed

    Kim Giryeon, Okamoto Shogo, Maruyama Hisataka

    APPLIED SCIENCES-BASEL   Vol. 13 ( 4 )   2023.2

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    Authorship:Last author   Language:English   Publishing type:Research paper (scientific journal)  

    DOI: 10.3390/app13042717

    Web of Science

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Books 7

  1. ロボット工学ハンドブック(第3版)

    丸山央峰( Role: Contributor ,  第Ⅳ編 ロボット応用 12.1 マイクロロボティクスとは 12.6 〔事例〕光環境センサ搭載マイクロロボット)

    コロナ社  2023.3 

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    Total pages:1086   Responsible for pages:6   Language:Japanese Book type:Dictionary, encyclopedia

  2. 光操作・計測による単一細胞解析,月刊 細胞

    丸山央峰( Role: Sole author)

    ニューサイエンス社  2020 

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    Language:Japanese Book type:Scholarly book

  3. 光技術コンタクト・バイオニックヒューマノイドによる医療革命

    原田香奈子,松永忠雄,芳賀洋一,光石衛,丸山央峰,新井史人( Role: Joint author)

    日本オプトメカトロニクス協会  2018.11 

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    Language:Japanese

  4. Light Robotics - Structure-mediated Nanobiophotonics 1st Edition

    Hayakawa Takeshi, Maruyama Hisataka, Arai Fumihito( Role: Joint author ,  Optically driven micro- and nanorobots)

    ELSEVIER  2017  ( ISBN:978-0-7020-7096-9

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    Language:English Book type:Scholarly book

  5. 細胞の蛍光計測,細胞の特性計測・操作と応用

    丸山央峰( Role: Sole author)

    コロナ社  2016 

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    Language:Japanese Book type:Scholarly book

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Presentations 145

  1. 電場によって誘起されるGO/Pyrene膜上のルミネッセンス増強

    佐々木 建, 丸山央峰, 星野 隆行

    第72回応用物理学会春季学術講演会  2025.3.17  日本応用物理学会

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    Event date: 2025.3

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:東京理科大学野田キャンパス   Country:Japan  

  2. ナノ複合現実にむけた力場呈示ディスプレイの画像フィードバック技術の開発

    梅村 悠斗, 佐々木 建,丸山央峰, 星野 隆行

    第72回応用物理学会春季学術講演会  2025.3.15  日本応用物理学会

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    Event date: 2025.3

    Language:Japanese   Presentation type:Poster presentation  

    Venue:東京理科大学野田キャンパス   Country:Japan  

  3. ノイズ除去確率拡散モデルを用いた植物の表面構造データ多様性の拡張と生物模倣技術への応用

    秋本 智哉, 丸山央峰,星野 隆行

    第72回応用物理学会春季学術講演会  2025.3.15  日本応用物理学会

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    Event date: 2025.3

    Language:Japanese   Presentation type:Poster presentation  

    Venue:東京理科大学野田キャンパス   Country:Japan  

  4. マイクロ切り紙足場による細胞牽引力の誘導と自発的三次元形状構築

    金 楊, 秋田谷 美乃, 丸山央峰,星野 隆行

    第72回応用物理学会春季学術講演会  2025.3.15  日本応用物理学会

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    Event date: 2025.3

    Language:Japanese   Presentation type:Poster presentation  

    Venue:東京理科大学野田キャンパス   Country:Japan  

  5. 単一筋管細胞誘導のための貫通スリット薄膜構造の作製と応用

    柴垣 竜資,秋田谷 美乃, 丸山央峰, 星野 隆行

    第72回応用物理学会春季学術講演会  2025.3.15  日本応用物理学会

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    Event date: 2025.3

    Language:Japanese   Presentation type:Oral presentation (general)  

    Venue:東京理科大学野田キャンパス   Country:Japan  

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Research Project for Joint Research, Competitive Funding, etc. 10

  1. 分散・協調遠隔操作による生体内CAの評価技術

    Grant number:2722JC367c   2022.12 - 2025.11

    ムーンショット型研究開発事業   受託研究

    丸山央峰

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    Authorship:Principal investigator  Grant type:Competitive

    Grant amount:\80000000 ( Direct Cost: \61539 、 Indirect Cost:\18461 )

  2. 次世代型手術シミュレータの事業化検証

    Grant number:Tongali2024_14  2025.6 - 2026.3

    大学発新産業創出基金事業 スタートアップ・エコシステム共創プログラム 「R6年度GAPファンドプログラム ステップ1」 

    丸山央峰

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    Authorship:Principal investigator  Grant type:Competitive

    Grant amount:\6500000 ( Direct Cost: \5000000 、 Indirect Cost:\150000 )

  3. 多感覚ICTを用いたフレイル予防・回復支援システムの研究開発

    Grant number:2722DA100c   2022.10 - 2025.3

    知の拠点愛知重点研究プロジェクト  共同研究

    丸山央峰,福田敏男

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    Authorship:Coinvestigator(s)  Grant type:Collaborative (industry/university)

    Grant amount:\10210334 ( Direct Cost: \8430986 、 Indirect Cost:\550384 )

  4. 潜在構造発見の能動的探索AI

    Grant number:2722JC284c  2022.4 - 2025.11

    ムーンショット型研究開発事業   受託研究

    丸山央峰

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    Authorship:Coinvestigator(s) 

  5. オプト・ケモロボットを用いたマルチスケール細胞解析システム

    2019.4 - 2022.3

    日本学術振興会  科学研究費補助金 基盤研究(B) 

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    Grant type:Competitive

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KAKENHI (Grants-in-Aid for Scientific Research) 15

  1. Investigation of Responsive Characteristics of Photosynthetic Cells to Environmental Stimuli by Using On-chip Local Environmental Control

    Grant number:21H04543  2021.4 - 2024.3

    Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (A)

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    Authorship:Coinvestigator(s) 

  2. Research on Recovery Behavior of Red Blood Cell with a Hundredfold Drastic Change

    Grant number:19H00749  2019.4 - 2023.3

    Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (A)

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    Authorship:Coinvestigator(s) 

  3. Multi-scale cell analysis system using opto-chemo robots

    Grant number:19H02096  2019.4 - 2022.3

    Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (B)

    Hisataka Maruyama

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    Authorship:Principal investigator 

    Grant amount:\15340000 ( Direct Cost: \11800000 、 Indirect Cost:\3540000 )

    In this research project, we developed two types of devices for measuring the physiological state of cells on a multi-scale from a single cell level to a group dell level. (1) a capsule-type opto-chemo robot that is driven, measured, and stimulated by using light with different wavelengths, which is fabricated from functional particles with photo-responsive reagents, and (2) a chip-type opto-chemo robot that is driven, measured, and stimulated by using light with different wavelengths. (2) a chip-type opto-chemo robot that is driven, measured, and stimulated using light of different wavelengths.
    As achievements, 1 um-diameter capsule-type optical sensor for intracellular measurement that has temperature measurement function, transportation using 1064 nm laser, and heating function using 808 nm laser were fabricated. And a chip-type opto-chemo robot for on-chip pH measurement with reference function for absolute measurement of pH has been successfully fabricated.

  4. Single cell analysis using microfluidic chip with optical manipulation and measurement

    Grant number:18K18834  2018.6 - 2020.3

    Grant-in-Aid for Challenging Research (Exploratory)

    Maruyama Hisataka

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    Authorship:Principal investigator  Grant type:Competitive

    Grant amount:\6240000 ( Direct Cost: \4800000 、 Indirect Cost:\1440000 )

    In this research, we conducted three projects. (1) A new method for the prolonged stable measurement of hydrogel fluorescence microsensors based on the measurement of fluorescence intensity was developed. Fluorescence recovery after photobleaching was used to compensate for the decrease in fluorescence intensity of microsensor. (2) The mass production method of the hydrogel fluorescence mcirosensor with uniformed size using a microfluidic chip was developed. Continuous fabrication of the hydrogel fluorescence microsensor of 10±0.5 um was succeeded. (3)The manipulation and cell injection of a fluorescent microsensor using multiple wavelengths of light was developed. By using this method, manipulation and injection of the microsensor into Madin-Darby canine kidney cell using 1064-nm and 808-nm lasers were succeeded.

  5. Functional analysis of environmental response of photosynthetic cells by on-chip spatiotemporal control

    Grant number:18H03762  2018.4 - 2021.3

    Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (A)

    Arai Fumihito

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    Authorship:Coinvestigator(s) 

    Mechanosensitive channel (MscL) is known as an ion channel of cyanobacteria. It is necessary for the regulation of osmotic pressure of cell and tension of the biomembrane. However, the mechanical property of whole cell for such osmoregulation is not well investigated. In this study, to overcome the difficulties caused by the small size of the cell, a measurement system is constructed. This system consists of a robot integrated microfluidic chip and an optical tweezers system. Using this system, change of the mechanical property of the cell caused by the absence of the MscL was clarified by the experiments.

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Industrial property rights 6

  1. 臓器モデル及びその製造方法

    丸山 央峰

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    Applicant:名古屋大学

    Application no:2024-203391  Date applied:2024.11

  2. 臓器モデル

    丸山 央峰

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    Applicant:名古屋大学

    Application no:特願2023-194976  Date applied:2023.11

  3. 細胞及び細胞集合体の蛍光酸素消費計測方法及び蛍光酸素消費計測システム

    丸山央峰,新井史人,鬼頭雅伸

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    Applicant:丸山央峰

    Application no:特願2014-119977  Date applied:2014.5

    Country of applicant:Domestic  

  4. 蛍光温度計測方法及び蛍光温度計測システム

    丸山央峰,新井史人

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    Applicant:国立大学法人名古屋大学

    Application no:2011-257730  Date applied:2011.11

    Country of applicant:Domestic  

  5. オンチップ微粒子連続選別・計測装置

    新井史人、丸山央峰,山西陽子

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    Applicant:東北大学

    Application no:2009-135632  Date applied:2009.6

    Country of applicant:Domestic  

    微粒子をサイズに応じて分離する

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Teaching Experience (On-campus) 35

  1. 創造設計製作

    2021

  2. バイオロボティクスセミナー2D

    2021

  3. 生体機能工学特論

    2021

  4. 機械・航空宇宙工学序論

    2021

  5. 医工連携セミナー

    2020

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Teaching Experience (Off-campus) 18

  1. 医療機械システム特論

    2024.10 - 2025.3 Meijo University)

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    Level:Postgraduate 

  2. ロボットフロンティア

    2024.4 - 2024.7 Chubu University)

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    Level:Postgraduate 

  3. 医療機械システム特論

    2023.10 - 2024.3 Meijo University)

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    Level:Postgraduate 

  4. ロボットフロンティア

    2023.4 - 2023.7 Chubu University)

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    Level:Postgraduate 

  5. 医療機械システム特論

    2022.10 - 2023.1 Meijo University)

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    Level:Postgraduate 

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Social Contribution 9

  1. ハイドロゲル臓器モデル展示

    Role(s):Demonstrator

    nano tech 実行委員会  nano tech 2025 第24回 国際ナノテクノロジー総合展・技術会議  2025.1

  2. 出前講義(刈谷北高校)

    Role(s):Lecturer

    2023.10

  3. 出前講義(桑名高校)

    Role(s):Lecturer

    2023.7

  4. 出前授業(西尾高校)

    Role(s):Lecturer

    2019.10

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    Audience: High school students

    Type:Visiting lecture

  5. 出前授業(岡崎北高校)

    Role(s):Lecturer

    岡崎北高校  2018.10

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    Audience: High school students

    Type:Visiting lecture

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