Historical Perspectives The force-frequency relationship: insights from mathematical modeling
نویسندگان
چکیده
Puglisi JL, Negroni JA, Chen-Izu Y, Bers DM. The forcefrequency relationship: insights from mathematical modeling. Adv Physiol Educ 37: 28–34, 2013; doi:10.1152/advan.00072.2011.—The force-frequency relationship has intrigued researchers since its discovery by Bowditch in 1871. Many attempts have been made to construct mathematical descriptions of this phenomenon, beginning with the simple formulation of Koch-Wesser and Blinks in 1963 to the most sophisticated ones of today. This property of cardiac muscle is amplified by -adrenergic stimulation, and, in a coordinated way, the neurohumoral state alters both frequency (acting on the sinoatrial node) as well as force generation (modifying ventricular myocytes). This synchronized tuning is needed to meet new metabolic demands. Cardiac modelers have already linked mechanical and electrical activity in their formulations and showed how those activities feedback on each other. However, now it is necessary to include neurological control to have a complete description of heart performance, especially when changes in frequency are involved. Study of arrhythmias (or antiarrhythmic drugs) based on mathematical models should incorporate this effect to make useful predictions or point out potential pharmaceutical targets.
منابع مشابه
The force-frequency relationship: insights from mathematical modeling.
The force-frequency relationship has intrigued researchers since its discovery by Bowditch in 1871. Many attempts have been made to construct mathematical descriptions of this phenomenon, beginning with the simple formulation of Koch-Wesser and Blinks in 1963 to the most sophisticated ones of today. This property of cardiac muscle is amplified by β-adrenergic stimulation, and, in a coordinated ...
متن کاملModeling and analysis of a three-component piezoelectric force sensor
This paper presents a mathematical model for the vibration analysis of a three-component piezoelectric force sensor. The cubic theory of weakly nonlinear electroelasticity is applied to the model for describing the electromechanical coupling effect in the piezoelectric sensing elements which operate in thickness-shear and thickness-stretch vibration modes. Hamilton's principle is used to derive...
متن کاملCorrigendum to “Peak Vertical Ground Reaction Force during Two-Leg Landing: A Systematic Review and Mathematical Modeling”
OBJECTIVES (1) To systematically review peak vertical ground reaction force (PvGRF) during two-leg drop landing from specific drop height (DH), (2) to construct a mathematical model describing correlations between PvGRF and DH, and (3) to analyze the effects of some factors on the pooled PvGRF regardless of DH. METHODS A computerized bibliographical search was conducted to extract PvGRF data ...
متن کاملMathematical and Physical Modeling of Actin Dynamics in Motile Cells
Mathematical modeling has been very instrumental in aiding traditional experimental methods in uncovering the mysteries of actin dynamics. Here we review recent quantitative models of actin dynamics focusing on ATP hydrolysis effects, force generation by single actin filaments and networks, self-organization and dynamics of actin networks, dynamics of lamellipodia, filopodia and lamella, and in...
متن کاملInvestigating the relationship between frequency components of ground reaction force and sport shoe insoles comfort during stance phase of running
Introduction: Shoe insoles are widely recommended to increase sport shoes comfort during running. However, relationship between ground reaction force frequency and perceived comfort is still unclear. The purpose of this study was to evaluate the relationship between ground reaction force frequency changes and perceived comfort during stance phase of running. Methods: 30 female students (mean...
متن کامل