Literature DB >> 25182409

Concept of left atrial pressure estimation using its pulsatile amplitude in the helical flow total artificial heart.

Sheng-Yuan Wu1, Itsuro Saito, Takashi Isoyama, Yusuke Inoue, Masami Sato, Shintaro Hara, Xin-Yang Li, Terumi Yurimoto, Haruka Murakami, Yukino Kawase, Toshiya Ono, Yusuke Abe.   

Abstract

The total artificial heart (TAH) requires physiological control to respond to the metabolic demand of the body. To date, 1/R control is a single physiological control method that can control venous pressure. To realize an implantable 1/R control system, we are developing a new pressure measuring method using absolute pressure sensor. To find a method for absolute pressure sensor, which went well without calibration, concept of left atrial pressure (LAP) estimation using its pulsatile amplitude was proposed. Its possibility was investigated with two long-term survived goats whose hearts were replaced with the helical flow TAHs. In manual control condition, there existed a positive relation between mean LAP (mLAP) and normalized pulsatile amplitude (NPA). Percent systole revealed not to affect the relationship between mLAP and NPA. Dispersion was observed between different pulse rates. As for cardiac output difference (QLD) that is the difference of flow rate between systolic and diastolic phases, similar results were obtained except in low QLDs. In the 1/R control condition, relatively high correlation between mLAP and NPA could be obtained. In estimation of mLAP using the correlating function of individual goat, fairly good correlation was obtained between measured mLAP and estimated mLAP. Despite that further studies are necessary, it was demonstrated that the concept of the LAP estimation could be possible.

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Year:  2014        PMID: 25182409     DOI: 10.1007/s10047-014-0788-7

Source DB:  PubMed          Journal:  J Artif Organs        ISSN: 1434-7229            Impact factor:   1.731


  11 in total

1.  The relationship of cardiac output and venous pressure in long surviving calves with total artificial heart.

Authors:  E Hennig; C Grosse-Siestrup; W Krautzberger; H Kless; E S Bücherl
Journal:  Trans Am Soc Artif Intern Organs       Date:  1978

2.  Sensorless estimation of pressure head and flow of a continuous flow artificial heart based on input power and rotational speed.

Authors:  Makoto Yoshizawa; Tsutomu Sato; Akira Tanaka; Ken-ichi Abe; Hiroshi Takeda; Tomoyuki Yambe; Shin-ichi Nitta; Yukihiko Nosé
Journal:  ASAIO J       Date:  2002 Jul-Aug       Impact factor: 2.872

3.  An electrically powered total artificial heart. Over 1 year survival in the calf.

Authors:  A J Snyder; G Rosenberg; J Reibson; J H Donachy; G A Prophet; J Arenas; B Daily; S McGary; O Kawaguchi; R Quinn
Journal:  ASAIO J       Date:  1992 Jul-Sep       Impact factor: 2.872

4.  A servomechanism to drive an artificial heart inside the chest.

Authors:  K W HILLER; W SEIDEL; W J KOLFF
Journal:  Trans Am Soc Artif Intern Organs       Date:  1962

5.  Automatic calibration of the inlet pressure sensor for the implantable continuous-flow ventricular assist device.

Authors:  Wei Shi; Itsuro Saito; Takashi Isoyama; Hidemoto Nakagawa; Yusuke Inoue; Toshiya Ono; Akimasa Kouno; Kou Imachi; Yusuke Abe
Journal:  J Artif Organs       Date:  2011-03-05       Impact factor: 1.731

6.  The helical flow total artificial heart: implantation in goats.

Authors:  Yusuke Abe; Kohei Ishii; Takashi Isoyama; Itsuro Saito; Yusuke Inoue; Masami Sato; Shintaro Hara; Kyohei Hosoda; Koki Ariyoshi; Hidemoto Nakagawa; Toshiya Ono; Kyoko Fukazawa; Kazuhiko Ishihara; Kou Imachi
Journal:  Conf Proc IEEE Eng Med Biol Soc       Date:  2013

7.  Physiological control of a total artificial heart: conductance- and arterial pressure-based control.

Authors:  Y Abe; T Chinzei; K Mabuchi; A J Snyder; T Isoyama; K Imanishi; T Yonezawa; H Matsuura; A Kouno; T Ono; K Atsumi; I Fujimasa; K Imachi
Journal:  J Appl Physiol (1985)       Date:  1998-03

8.  Long-term survival with a pneumatic artificial heart.

Authors:  T X Aufiero; J A Magovern; G Rosenberg; W E Pae; J H Donachy; W S Pierce
Journal:  ASAIO Trans       Date:  1987 Jul-Sep

9.  Optimum control mode for a total artificial heart.

Authors:  S Takatani; H Harasaki; S Koike; I Yada; R Yozu; L Fujimoto; S Murabayashi; G Jacobs; R Kiraly; Y Nosé
Journal:  Trans Am Soc Artif Intern Organs       Date:  1982

10.  Automatic control of the artificial heart.

Authors:  W S Pierce; D Landis; W O'Bannon; J H Donachy; W White; W Phillips; J A Brighton
Journal:  Trans Am Soc Artif Intern Organs       Date:  1976
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  2 in total

1.  Journal of Artificial Organs 2014: the year in review.

Authors:  Y Sawa; K Matsuda; E Tatsumi; G Matsumiya; T Abe; K Fukunaga; A Kishida; K Kokubo; T Masuzawa; A Myoui; M Nishimura; T Nishimura; T Nishinaka; E Okamoto; S Tokunaga; T Tomo; T Tsukiya; Y Yagi; T Yamaoka
Journal:  J Artif Organs       Date:  2015-02-21       Impact factor: 1.731

Review 2.  Artificial hearts-recent progress: republication of the article published in the Japanese Journal of Artificial Organs.

Authors:  Masahiro Nishida
Journal:  J Artif Organs       Date:  2017-06-15       Impact factor: 1.731

  2 in total

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