Amir Landesberg and Samuel Sideman

نویسندگان

  • Amir Landesberg
  • Samuel Sideman
چکیده

[PDF] [Full Text] [Abstract] , January 1, 2004; 286 (1): H434-H441. Am J Physiol Heart Circ Physiol C. Levy and A. Landesberg tetanized rat trabeculae Hystereses in the force-length relation and regulation of cross-bridge recruitment in [PDF] [Full Text] [Abstract] , January 1, 2005; 288 (1): H389-H399. Am J Physiol Heart Circ Physiol Y. Yaniv, R. Sivan and A. Landesberg Analysis of hystereses in force length and force calcium relations [PDF] [Full Text] [Abstract] , November 1, 2005; 289 (5): H2176-H2182. Am J Physiol Heart Circ Physiol O. Tchaicheeyan and A. Landesberg Regulation of energy liberation during steady sarcomere shortening

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منابع مشابه

AHEART Mar. 45/3

Landesberg, Amir, and Samuel Sideman. Regulation of energy consumption in cardiac muscle: analysis of isometric contractions. Am. J. Physiol. 276 (Heart Circ. Physiol. 45): H998–H1011, 1999.—The well-known linear relationship between oxygen consumption and force-length area or the force-time integral is analyzed here for isometric contractions. The analysis, which is based on a biochemical mode...

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AHEART April 47/4

Landesberg, Amir, and Samuel Sideman. Force-velocity relationship and biochemical-to-mechanical energy conversion by the sarcomere. Am J Physiol Heart Circ Physiol 278: H1274–H1284, 2000.—The intracellular control mechanism leading to the well-known linear relationship between energy consumption by the sarcomere and the generated mechanical energy is analyzed here by coupling calcium kinetics w...

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Regulation of energy consumption in cardiac muscle: analysis of isometric contractions.

The well-known linear relationship between oxygen consumption and force-length area or the force-time integral is analyzed here for isometric contractions. The analysis, which is based on a biochemical model that couples calcium kinetics with cross-bridge cycling, indicates that the change in the number of force-generating cross bridges with the change in the sarcomere length depends on the for...

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Force-velocity relationship and biochemical-to-mechanical energy conversion by the sarcomere.

The intracellular control mechanism leading to the well-known linear relationship between energy consumption by the sarcomere and the generated mechanical energy is analyzed here by coupling calcium kinetics with cross-bridge cycling. A key element in the control of the biochemical-to-mechanical energy conversion is the effect of filament sliding velocity on cross-bridge cycling. Our earlier st...

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تاریخ انتشار 2000