Rchr
J-GLOBAL ID:200901039609926246   Update date: Nov. 02, 2024

Michiwaki Yukihiro

ミチワキ ユキヒロ | Michiwaki Yukihiro
Affiliation and department:
Other affiliations (1):
  • 昭和大学  兼任講師
Research field  (2): Biomaterials ,  Biomedical engineering
Research theme for competitive and other funds  (33):
  • 2023 - 2027 嚥下ロボットとシミュレーションによる食品窒息のメカニズム解明と新規予防戦略
  • 2023 - 2027 嚥下ロボットとシミュレーションによる食品窒息のメカニズム解明と新規予防戦略
  • 2022 - 2027 Development of an AI application to support perioperative oral management based on the proven oral triage system
  • 2022 - 2025 嚥下運動における協調構造の解明と機能的電気刺激による補助 ・再建技術への応用
  • 2020 - 2023 近赤外蛍光検査システムを応用した新しい嚥下機能評価に関する基礎的研究
Show all
Papers (31):
  • Tetsu Kamiya, Yoshio Toyama, Keigo Hanyu, Takahiro Kikuchi, Yukihiro Michiwaki. Relationship Between Resultant Force Vector Acting on Human Organs From Food Bolus and the Bolus Configuration During Swallowing Using Numerical Swallowing Simulation With Moving Particle Simulation Method. Journal of Texture Studies. 2024. 55. 5
  • Takahiro Kikuchi, Yukihiro Michiwaki, Hideyuki Azegami. Identification of muscle activities involved in hyoid bone movement during swallowing using computer simulation. Computer Methods in Biomechanics and Biomedical Engineering: Imaging & Visualization. 2023. 11. 5. 1791-1802
  • Tetsu Kamiya, Yoshio Toyama, Keigo Hanyu, Takahiro Kikuchi, Yukihiro Michiwaki. Visualization of Aspiration due to Changes in Rheological and Tribological Parameters Using a Three-Dimensional Swallowing Simulator. Nihon Reoroji Gakkaishi. 2023. 51. 3. 149-156
  • Tetsu Kamiya, Yoshio Toyama, Keigo Hanyu, Takahiro Kikuchi, Yukihiro Michiwaki. Newtonian and non-Newtonian food bolus behaviors obtained from validated swallowing simulator based on moving particle simulation. Food Science and Technology Research. 2023. 29. 5. 385-402
  • Tetsu Kamiya, Yoshio Toyama, Keigo Hanyu, Takahiro Kikuchi, Yukihiro Michiwaki. Correlation between forces acting on bolus and bolus behavior during swallowing using graph matrix obtained from computer simulations with the MPS method. Food Science and Technology Research. 2023
more...
MISC (32):
  • Azegami Hideyuki, Ono Shinjiro, Takeuchi Kenzen, Michiwaki Yukihiro, Kikuchi Takahiro. Identification of muscle activity in swallow motion using medical image and anatomical data. The Proceedings of Mechanical Engineering Congress, Japan. 2020. 2020. J24102
  • Azegami Hideyuki, Kurimoto Ryota, Saito Genji, Takeuchi Kenzen, Michiwaki Yukihiro, Kikuchi Takahiro, Hanyuu Keigo, Kamiya Testu. Formulation of muscle activity identification problem from shape observation and its solution. The Proceedings of OPTIS. 2018. 2018. 212-212
  • 神谷 哲, 外山 義雄, 羽生 圭吾, 髙井 めぐみ, 菊地 貴博, 道脇 幸博. テクノロジーイノベーション 立体嚥下動態シミュレータを用いた食品開発・研究のテクニカル・イノベーション ヒトの"飲み込み"を数値的に可視化する. 化学と生物 : 日本農芸化学会会誌 : 生命・食・環境. 2017. 55. 10. 712-718
  • Kikuchi Takahiro, Michiwaki Yukihiro, Koshizuka Seiichi, Kamiya Tetsu, Toyama Yoshio, Hanyuu Keigo. 149 Organs and food bolus simulation during swallowing by fluid-structure coupling scheme. The Computational Mechanics Conference. 2015. 2015. 28. "149-1"-"149-2"
  • Swallowing Simulator Developed to Clarify Physical Features of Food Suitable for People with Swallowing Difficulties. 2015. 17. 35. 32-36
more...
Lectures and oral presentations  (10):
  • 誤嚥と窒息のメカニズム解明のための嚥下と呼吸のコンピュータ・シミュレーションの製作
    (第42回日本嚥下医学会総会ならびに学術講演会 2019)
  • 嚥下障害を早期に診断し,原因筋の異常を推定するためのコンピュータシミュレーション
    (第63回日本口腔外科学会総会・学術大会 2018)
  • 嚥下筋骨格モデルを用いた健常者と軽度誤嚥患者の筋活動の推定
    (第24回摂食嚥下リハビリテーション学会 2018)
  • 高齢者の誤嚥リスクを高める食塊側の要因-Swallow Vision®による検討-
    (第24回摂食嚥下リハビリテーション学会 2018)
  • 治療機器や食品を設計するためのプラットフォームSwallow Visionの開発
    (第24回摂食嚥下リハビリテーション学会 2018)
more...
Professional career (1):
  • 歯学博士 (昭和大学)
※ Researcher’s information displayed in J-GLOBAL is based on the information registered in researchmap. For details, see here.

Return to Previous Page