研究者業績
基本情報
- 所属
- 独立行政法人国立高等専門学校機構 機械工学科 教授藤田医科大学 客員講師
- 学位
- 博士(工学)(名古屋大学)
- J-GLOBAL ID
- 201601020710897357
- researchmap会員ID
- B000268815
- 外部リンク
経歴
8-
2025年4月 - 現在
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2016年4月 - 現在
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2011年4月 - 2025年3月
学歴
4-
1999年4月 - 2002年3月
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1997年4月 - 1999年3月
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1995年4月 - 1997年3月
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1990年4月 - 1995年3月
委員歴
3-
2022年4月 - 2025年3月
受賞
3論文
58-
European Archives of Oto-Rhino-Laryngology 2024年7月17日 査読有り
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Medicine and Health Sciences 18 12-16 2022年4月 査読有り筆頭著者
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Flow, Turbulence and Combustion 105(3) 699-713 2020年9月 査読有り
MISC
7-
Journal of Chemical Engineering of Japan 33(2) 142-150 2000年4月
書籍等出版物
2-
UTHM Publisher 2023年8月 (ISBN: 9786297566153)
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Intechopen 2012年2月24日 (ISBN: 9789535100522, 9535100521)
講演・口頭発表等
75-
International Symposium on Advances in Technology Education (ISATE) 2025 2025年9月10日
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The International Symposium on Advances in Technology Education (ISATE) 2024 2024年9月25日 Singapore PolytechnicPaper No.JP57
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The International Symposium on Advances in Technology Education (ISATE) 2024 2024年9月25日Paper No. JP56
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The 13th TSME International Conference on Mechanical Engineering 2023年12月14日
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4th INTERNATIONAL CONFERENCE ON BIOSCIENCES AND MEDICAL ENGINEERING 2022年6月21日 招待有り
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3rd International Biofluid Symposium 2021 2021年11月18日
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3rd International Biofluid Symposium 2021 2021年11月18日
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International Medical Devices and Technology Conference (iMEDiTEC) 2021 2021年6月30日
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Joint International Medical Devices and Technology Conference (iMEDiTEC) 2021 2021年6月30日
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The International Joint Conference on Medical Engineering, Sciences & Technology (iMEDiST 2021) 2021年6月
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TSME Int. Conf. Mechanical Engineering 2019年12月12日
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Int. Conf. on Biomedical Engineering 2019 2019年12月12日
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Environmental Sustainability, Disaster Prevention and Reduction, and Engineering Education (ESDPR&EE) 2019年1月17日 招待有り
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Environmental Sustainability, Disaster Prevention and Reduction, and Engineering Education (ESDPR&EE) 2019年1月17日 招待有り
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Environmental Sustainability, Disaster Prevention and Reduction, and Engineering Education (ESDPR&EE) 2019年1月17日 招待有り
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Environmental Sustainability, Disaster Prevention and Reduction, and Engineering Education (ESDPR&EE) 2019年1月17日 招待有り
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TSME International Conference on Mechanical Engineering 2018年12月13日
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TSME International Conference on Mechanical Engineering 2018年12月13日
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2nd Edition of Global Conference on Pharmaceutics and Drug Delivery Systems 2018年6月4日
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10th World Congress on Chemical Engineering 2017年10月1日
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10th World Congress on Chemical Engineering 2017年10月1日
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IFMBE Proceedings 2017年 Springer VerlagAerosol medicine exhalation through the nose (ETN) is one of promising and comprehensive treatment methods for Eosinophilic Chronic Rhinosinusitis (ECRS) with asthma. In this treatment, the patient inhales aerosol of inhaled corticosteroid (ICS) medicine from mouth using portable inhaler. Then a part of the aerosol still floats and remains in upper airway. When the patient exhales inhaled air through the nose, the aerosol is effectively transported on the walls of middle meatus and olfactory fissure. This study performed Computational Fluid Dynamics (CFD) analysis for the transport phenomena of aerosol medicine during exhalation period in order to evaluate the curative effect of ETN numerically. As a result of CFD analysis, ETN formed impinging flow toward upper wall of nasopharynx, subsequently complex swirl and circulation flow in the nasopharynx region. In addition, main flow of ETN passed upper region of nasal cavity. Such the tendencies affected on aerosol transport characteristics a part of aerosol particles moved into ethmoindal sinuses.
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TSME International Conference on Mechanical Engineering 2016年12月15日
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Int. Conf. on Biomechanical Engineering 2016年12月9日
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バイオエンジニアリング講演会講演論文集 2015年1月8日
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バイオエンジニアリング講演会講演論文集 2015年1月8日
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International Symposium on Technology for Sustainability (ISTS2012) 2012年
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年次大会 : Mechanical Engineering Congress, Japan 2011年9月11日Nebulizer treatment has been used for nasal diseases such as paranasal sinusitis, hypertrophic rhinitis and inferior concha inflammation. The effectiveness of the nebulizer treatment has been confirmed from clinical view points until now. However there are a few researches that evaluate the effect of the nebulizer treatment quantitatively, i.e., how medicinal mist transports and deposits on inflammation areas of nasal wall. Some researchers calculated intranasal transport phenomena of medicinal droplets using Computed Fluid Dynamics (CFD). However these researches analyzed a few cases. The individual difference was left out of consideration even though there were different shapes of nasal cavities and different grade of medical conditions. This study constructs three-dimensional geometry model of nasal cavity using an actual patient's CT data. The case undergoes deviated nasal septum, hypertrophic rhinitis, chronic sinusitis and bloating inferior nasal concha tumentia. This study analyzes the characteristics of airflow and medicinal droplet, especially focuses on local deposition characteristics. As a result airflow velocity and pressure drop increase in the narrowing region caused by jet effect. Inlet angle and velocity of nebulizer treatment can easily control medicinal droplet transport characteristics. The circulatory flow is able to contribute advances medicinal droplet transportation in widespread area of intranasal.
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熱工学コンファレンス講演論文集 2010年10月29日Controlling postoperative course is serious problem in liver transplantation. The transplantation changes blood flow balance in the liver consequently causes on local and overall swellings (deformation) of the transplanted liver. In order to prevent such the diseases prediction method is required before the transplantation surgery. This study build analytical method for blood flow in portal vein; geometric model was made from patient's CT image data and performed Computational Fluid Dynamics (CFD) analysis of blood flow in the portal vein. As a result of analysis, it was confirmed that this method was able to predict actual blood flow balance in the portal vein because the tendencies of calculation and measurement results conformed each other. In addition, blood flow in the left lobe of the portal vein showed different flow characteristics compared with right lobe; eddies were proceeded in the left lobe. These results mentioned here lead us detail blood flow characteristics in the portal vein and contribute to elucidation of the vascular disease.
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熱工学コンファレンス講演論文集 2010年10月29日Obstructive Sleep Apnea Syndrome (OSAS) is one of nasal disorders. In order to develop effective treatment for OSAS it is needed to discuss and survey not only from medical but also engineering points of views. The purpose of this study is to get the knowledge about the OSAS from engineering standpoint. This study made a three-dimensional geometry model of the respiratory organ which includes nasal, pharynx and larynx by means of OSAS patient's CT data, and performed Computational Fluid Dynamics (CFD) analysis for breathing air flow characteristics in respiration process. As the results of the analysis, this study confirmed eddies were generated and transported in all over the respiratory organs. In addition this study made clear that inhalation and exhalation wall share stresses. There were high wall share stress areas on anterior wall in the inhalation process, on the contrary posterior wall in the exhalation process. These characteristics affect on the development mechanism of OSAS.
担当経験のある科目(授業)
18所属学協会
3共同研究・競争的資金等の研究課題
15-
日本学術振興会 科学研究費助成事業 2025年1月 - 2028年3月
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小川科学技術財団 2025年度研究助成 2025年12月 - 2027年3月
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マツダ財団 科学技術振興助成 2022年10月 - 2024年3月
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中部科学技術センター 令和4年中部科学技術センター学術奨励研究助成 2022年12月 - 2023年11月
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小川科学技術財団 小川科学技術財団令和4年研究助成 2022年12月 - 2023年11月
