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Fingerprint Dive into the research topics where Kiyotaka Iwasaki is active. These topic labels come from the works of this person. Together they form a unique fingerprint.

  • 3 Similar Profiles
Artificial Heart Medicine & Life Sciences
Artificial heart Engineering & Materials Science
Blood Engineering & Materials Science
Pumps Engineering & Materials Science
Stents Medicine & Life Sciences
Artificial organs Engineering & Materials Science
Pulsatile Flow Medicine & Life Sciences
Goats Medicine & Life Sciences

Network Recent external collaboration on country level. Dive into details by clicking on the dots.

Research Output 1998 2019

  • 387 Citations
  • 10 h-Index
  • 68 Article
  • 25 Conference contribution
  • 1 Chapter
  • 1 Conference article
Chimneys
Stents
Aortic Aneurysm
Renal Artery
Channel flow

In vitro flow and optical coherence tomography comparison of two bailout techniques after failed provisional stenting for bifurcation percutaneous coronary interventions

Adjedj, J., Picard, F., Mogi, S., Iwasaki, K., Aoumeur, H., Alansari, O., Agudze, E., Wijns, W. & Varenne, O., 2019 Jan 1, In : Catheterization and Cardiovascular Interventions. 93, 1, p. E8-E16

Research output: Contribution to journalArticle

Optical Coherence Tomography
Percutaneous Coronary Intervention
Stents
Rheology
Coronary Stenosis

One-point advice: Experimental comparison between the reimplantation method and remodeling method

Sasaki, K. & Iwasaki, K., 2019 Jan 25, Aortic Valve Preservation: Concepts and Approaches. Springer Singapore, p. 123-126 4 p.

Research output: Chapter in Book/Report/Conference proceedingChapter

Sophisticated hydrodynamic simulation of pulmonary circulation for the preclinical examination of right heart circulatory assist device

Tsuboko, Y., Shiraishi, Y., Yamada, A., Iwasaki, K., Umezu, M. & Yambe, T., 2019 Jan 1, In : IFMBE Proceedings. 68, 3, p. 717-720 4 p.

Research output: Contribution to journalConference article

Hydrodynamics
Heart valve prostheses
Polyesters
Catheters
Hemodynamics
Pulsatile Flow
Dilatation
Hemodynamics
Tomography
Patient Simulation