Rchr
J-GLOBAL ID:201901018381034196   Update date: Apr. 20, 2024

Miyamoto Satoshi

Miyamoto Satoshi
Affiliation and department:
Other affiliations (1):
Research field  (2): Biomaterials ,  Biomedical engineering
Research keywords  (2): 人工心肺 ,  臨床工学
Research theme for competitive and other funds  (3):
  • 2023 - 2026 体外循環中の血球形状の定量化:「血液粘度比」の応用展開
  • 2020 - 2023 連続血液粘度測定法に基づく人工心肺中のマイクロバブル発生予測のモデル化と臨床応用
  • 2019 - 2022 「血液粘度比」で人工肺不良の原因を検出する:連続評価可能な新指標の提案と臨床応用
Papers (45):
  • Shigeyuki Okahara, Satoshi Miyamoto, Zu Soh, Masaru Yoshino, Hidenobu Takahashi, Hideshi Itoh, Toshio Tsuji. Correlation Analysis Between Echinocytosis Stages and Blood Viscosity During Oxygenator Perfusion: An In Vitro Study. ASAIO journal (American Society for Artificial Internal Organs : 1992). 2024
  • Satoshi Miyamoto, Zu Soh, Shigeyuki Okahara, Akira Furui, Taiichi Takasaki, Keijiro Katayama, Shinya Takahashi, Toshio Tsuji. The Number of Microbubbles Generated During Cardiopulmonary Bypass Can Be Estimated Using Machine Learning From Suction Flow Rate, Venous Reservoir Level, Perfusion Flow Rate, Hematocrit Level, and Blood Temperature. IEEE open journal of engineering in medicine and biology. 2024. 5. 66-74
  • 岡原 重幸, 宮本 聡史, 吉野 将, 高橋 秀暢, 伊藤 英史, 曽 智, 辻 敏夫. 赤血球の形状変化による人工肺圧勾配の上昇. 人工臓器. 2023. 52. 1. 41-41
  • 岡原 重幸, 宮本 聡史, 吉野 将, 高橋 秀暢, 伊藤 英史, 曽 智, 辻 敏夫. 赤血球の形状変化による人工肺圧勾配の上昇. 人工臓器. 2023. 52. 1. 41-41
  • Hidenobu Takahashi, Takuya Kinoshita, Zu Soh, Shigeyuki Okahara, Satoshi Miyamoto, Shinji Ninomiya, Toshio Tsuji. Simultaneous Control of Venous Reservoir Level and Arterial Flow Rate in Cardiopulmonary Bypass With a Centrifugal Pump. IEEE journal of translational engineering in health and medicine. 2023. 11. 435-440
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MISC (50):
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Association Membership(s) (3):
The Japanese Circulation Society ,  JAPANESE HEART RHYTHM SOCIETY ,  JAPANESE SOCIETY FOR ARTIFICIAL ORGANS
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