Literature DB >> 426086

Total mechanical energy of a ventricle model and cardiac oxygen consumption.

H Suga.   

Abstract

Mechanical energy (ENG) required by a time-varying elastance model of the ventricle was compared with oxygen consumption per beat (VO2) of the canine left ventricle contracting under a variety of loading conditions. ENG needed for this model to increase its elastance during systole is shown to be equal to the sum of the potential energy built in the elastance during systole plus the external mechanical stroke work. This ENG is equivalent to the area (PVA) bounded by the end-systolic and end-diastolic P-V curves and the systolic limb of the P-V loop trajectory in the P-V plane. There was a high correlation (r = 0.89) between VO2s documented in the literature and PVAs assessed by the author from the accompanying P-V data from both isovolumic and ejecting contractions in 11 hearts. A linear regression analysis yielded an empirical equation: VO2 (ml O2/beat) = a . PVA (mmHg . ml/beat) + b, where a = 1.37 X 10(-5) and b = 0.027, which can be used to predict VO2 from PVA. A preliminary experimental study in my laboratory confirmed the validity of this empirical equation.

Entities:  

Mesh:

Year:  1979        PMID: 426086     DOI: 10.1152/ajpheart.1979.236.3.H498

Source DB:  PubMed          Journal:  Am J Physiol        ISSN: 0002-9513


  88 in total

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3.  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).

Authors:  Akihide Umeki; Takashi Nishimura; Masahiko Ando; Yoshiaki Takewa; Kenji Yamazaki; Shunei Kyo; Minoru Ono; Tomonori Tsukiya; Toshihide Mizuno; Yoshiyuki Taenaka; Eisuke Tatsumi
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4.  Systolic pressure-volume area (PVA) as the energy of contraction in Starling's law of the heart.

Authors:  H Suga; Y Goto; S Futaki; O Kawaguchi; H Yaku; K Hata; T Takasago
Journal:  Heart Vessels       Date:  1991       Impact factor: 2.037

5.  "Starling's Law of the Heart" a historical misinterpretation.

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Journal:  Basic Res Cardiol       Date:  1989 Jan-Feb       Impact factor: 17.165

6.  Effect of Interleukin-1 Blockade on Left Ventricular Systolic Performance and Work: A Post Hoc Pooled Analysis of 2 Clinical Trials.

Authors:  Leo F Buckley; Salvatore Carbone; Cory R Trankle; Justin M Canada; Claudia Oddi Erdle; Jessica A Regan; Michele M Viscusi; Dinesh Kadariya; Hayley Billingsley; Ross Arena; Antonio Abbate; Benjamin W Van Tassell
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7.  Myocardial twitch duration and the dependence of oxygen consumption on pressure-volume area: experiments and modelling.

Authors:  J-C Han; K Tran; A J Taberner; D P Nickerson; R S Kirton; P M F Nielsen; M-L Ward; M P Nash; E J Crampin; D S Loiselle
Journal:  J Physiol       Date:  2012-05-08       Impact factor: 5.182

8.  Multiscale structure-function relationships in right ventricular failure due to pressure overload.

Authors:  Tik-Chee Cheng; Jennifer L Philip; Diana M Tabima; Timothy A Hacker; Naomi C Chesler
Journal:  Am J Physiol Heart Circ Physiol       Date:  2018-06-08       Impact factor: 4.733

9.  Change in myocardial oxygen consumption employing continuous-flow LVAD with cardiac beat synchronizing system, in acute ischemic heart failure models.

Authors:  Akihide Umeki; Takashi Nishimura; Yoshiaki Takewa; Masahiko Ando; Mamoru Arakawa; Yuichiro Kishimoto; Tomonori Tsukiya; Toshihide Mizuno; Shunei Kyo; Minoru Ono; Yoshiyuki Taenaka; Eisuke Tatsumi
Journal:  J Artif Organs       Date:  2013-01-17       Impact factor: 1.731

10.  The energy expenditure of actomyosin-ATPase, Ca(2+)-ATPase and Na+,K(+)-ATPase in guinea-pig cardiac ventricular muscle.

Authors:  M Schramm; H G Klieber; J Daut
Journal:  J Physiol       Date:  1994-12-15       Impact factor: 5.182

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