研究者業績

河南 治

カワナミ オサム  (Osamu Kawanami)

基本情報

所属
兵庫県立大学 工学研究科 機械工学専攻 教授
学位
博士(工学)(2004年3月 大阪府立大学)

J-GLOBAL ID
200901018624326584
researchmap会員ID
5000085387

外部リンク

論文

 77
  • Shunsuke Matsushima, Mutsuki Noda, Sara Kubo, Hironaga Shiraki, Hironori Matsuhisa, Kenji Okada, Osamu Kawanami
    Interdisciplinary CardioVascular and Thoracic Surgery 41(3) 2026年3月2日  査読有り
    Abstract Objectives Various designs are proposed for pulmonary expanded polytetrafluoroethylene (ePTFE) conduits and have been applied in clinical practice. However, experimental data to support them are limited. We conducted an in vitro experiment using a circulatory simulator to evaluate their haemodynamic performance and hydrodynamic characteristics. Methods Three root models with a 24-mm basal ring (A, straight; B, with small sinuses; C, with large sinuses) were 3D-printed. Cusps were uniformly cut out from a 0.1-mm-thick ePTFE membrane and sewn to the inter wall of the models. Model A had a single suture on the free margins near the commissures. Each model was tested with a pump size of 70 mL, 70 beats/min, and arterial pressure of 30/10 mmHg. The valve behaviour was recorded by a high-speed camera, and particle image velocimetry (PIV) was performed in the region behind the model housing section. Results Peak transvalvular pressure gradients were 4.0, 4.8, and 4.3 mmHg (P = .95), and geometric orifice areas were 2.34, 2.38, and 2.46 cm2 (P = .96) in models A, B, and C, respectively. Particle image velocimetry revealed peak instantaneous velocity was 1.69, 1.69, and 1.65 m/s (P = .74) and peak Reynolds shear stress in the midsystolic phase was 56.8, 49.5, and 25.5 Pa (P = .05) in models A, B, and C, respectively. Model C tended to have a lower distribution of turbulent flow than the other models. Conclusions All models exhibited sufficient opening and acceptable Reynolds shear stress values. The sinus contributed to the suppression of turbulent flow, which may lead to an improvement of conduit durability, but its effect was dependent on the sinus size.
  • Tomoki Hirokawa, Tarou Imamura, Osamu Kawanami
    Applied Thermal Engineering 281 128708-128708 2025年12月  査読有り
  • Tomoki Hirokawa, Takuya Nakano, Osamu Kawanami
    International Journal of Thermal Sciences 211 2025年5月  査読有り
  • 河南 治, 木村 拓己, 今井 良二
    混相流 38(1) 32-39 2024年3月15日  筆頭著者責任著者
  • 浅野 等, 大田 治彦, 河南 治, 今井 良二, 井上 浩一, 鈴木 康一, 新本 康久, 松本 聡
    混相流 38(1) 7-14 2024年3月15日  

MISC

 73

講演・口頭発表等

 48

所属学協会

 5

共同研究・競争的資金等の研究課題

 13

産業財産権

 2

社会貢献活動

 17