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Journal of Artificial Organs : the Official Journal of the Japanese Society for Artificial Organs|November 15, 2011
Alteration of LV end-diastolic volume by controlling the power of the continuous-flow LVAD, so it is synchronized with cardiac beat: development of a native heart load control system (NHLCS)Akihide Umeki, Takashi Nishimura, Masahiko Ando, et al.Circulation Journal : Official Journal of the Japanese Circulation Society|December 28, 2012
Change of coronary flow by continuous-flow left ventricular assist device with cardiac beat synchronizing system (native heart load control system) in acute ischemic heart failure modelAkihide Umeki, Takashi Nishimura, Masahiko Ando, et al.Journal of Artificial Organs : the Official Journal of the Japanese Society for Artificial Organs|April 7, 2021
Assessment of ocular blood flow in continuous-flow ventricular assist device by laser speckle flowgraphyJunichi Shimamura, Tomohiro Nishinaka, Toshihide Mizuno, et al.Artificial Organs|March 21, 2019
Miniaturized centrifugal ventricular assist device for bridge to decision: Preclinical chronic study in a bovine modelJunichi Shimamura, Toshihide Mizuno, Yoshiaki Takewa, et al.Artificial Organs|November 18, 2003
Design progress of the ultracompact integrated heart lung assist device--part 2: optimization of the diffuser vane profileTomonori Tsukiya, Eisuke Tatsumi, Tomohiro Nishinaka, et al.Journal of Artificial Organs : the Official Journal of the Japanese Society for Artificial Organs|May 16, 2016
Shifting the pulsatility by increasing the change in rotational speed for a rotary LVAD using a native heart load control systemKazuma Date, Takashi Nishimura, Yoshiaki Takewa, et al.Journal of Artificial Organs : the Official Journal of the Japanese Society for Artificial Organs|July 21, 2016
Changing pulsatility by delaying the rotational speed phasing of a rotary left ventricular assist deviceKazuma Date, Takashi Nishimura, Mamoru Arakawa, et al.Journal of Artificial Organs : the Official Journal of the Japanese Society for Artificial Organs|December 16, 2014
Development of a flow rate monitoring method for the wearable ventricular assist device driverKentaro Ohnuma, Akihiko Homma, Hirohito Sumikura, et al.Artificial Organs|August 20, 2020
Evaluation of cardiac beat synchronization control for a rotary blood pump on valvular regurgitation with a mathematical modelDaisuke Ogawa, Shinji Kobayashi, Kenji Yamazaki, et al.American Journal of Physiology. Heart and Circulatory Physiology|February 10, 2009
Mechanical work and energetic analysis of eccentric cardiac remodeling in a volume overload heart failure in ratsYoshiaki Takewa, Elie R Chemaly, Miyako Takaki, et al.Pageof 10