This study was designed to gain additional insight into the mechanism of the slow force response (SFR) to stretch of cardiac muscle. SFR and changes in intracellular Na+ concentration ([Na+]i) were assessed in cat papillary muscles stretched from 92% to ≈98% of Lmax. The SFR was 120±0.6% (n=5) of the rapid initial phase and coincided with an increase in [Na+]i. The SFR was markedly depressed by Na+-H+ exchanger inhibition, AT1 receptor blockade, nonselective endothelin-receptor blockade and selective ETA-receptor blockade, extracellular Na+ removal and inhibition of the reverse mode of the Na+-Ca2+ exchange by KB-R7943. KB-R7943 prevented the SFR but not the increase in [Na+]i. Inhibition of endothelin-converting enzyme activity by phosphor...
The stretch of cardiac muscle increases developed force in two phases. The first phase, which occurs...
In most mammalian species, an increase in stimulation frequency (ISF) produces an increase in contra...
In this chapter the enhanced activity of the cardiac Na+/H+ exchanger (NHE-1) after myocardial stret...
This study was designed to gain additional insight into the mechanism of the slow force response (SF...
The stretch of the cardiac muscle is immediately followed by an increase in the contraction strength...
The stretch of the cardiac muscle is immediately followed by an increase in the contraction strength...
Previous work demonstrated that the slow force response (SFR) to stretch is due to the increase in c...
Previous work demonstrated that the slow force response (SFR) to stretch is due to the increase in c...
Abstract—Previous work demonstrated that the slow force response (SFR) to stretch is due to the incr...
Myocardial strain triggers an autocrine/paracrine mechanism known to participate in myocardial hyper...
An autocrine/paracrine mechanism is triggered by stretching the myocardium. This mechanism involves ...
When the length of the myocardium is increased, a biphasic response to stretch occurs involving an i...
The stretch of cardiac muscle increases developed force in two phases. The first phase, which occurs...
The slow force response (SFR) to stretch is an important adaptive mechanism of the heart. The SFR ma...
AbstractWe developed a model of the rat ventricular myocyte at room temperature to predict the relat...
The stretch of cardiac muscle increases developed force in two phases. The first phase, which occurs...
In most mammalian species, an increase in stimulation frequency (ISF) produces an increase in contra...
In this chapter the enhanced activity of the cardiac Na+/H+ exchanger (NHE-1) after myocardial stret...
This study was designed to gain additional insight into the mechanism of the slow force response (SF...
The stretch of the cardiac muscle is immediately followed by an increase in the contraction strength...
The stretch of the cardiac muscle is immediately followed by an increase in the contraction strength...
Previous work demonstrated that the slow force response (SFR) to stretch is due to the increase in c...
Previous work demonstrated that the slow force response (SFR) to stretch is due to the increase in c...
Abstract—Previous work demonstrated that the slow force response (SFR) to stretch is due to the incr...
Myocardial strain triggers an autocrine/paracrine mechanism known to participate in myocardial hyper...
An autocrine/paracrine mechanism is triggered by stretching the myocardium. This mechanism involves ...
When the length of the myocardium is increased, a biphasic response to stretch occurs involving an i...
The stretch of cardiac muscle increases developed force in two phases. The first phase, which occurs...
The slow force response (SFR) to stretch is an important adaptive mechanism of the heart. The SFR ma...
AbstractWe developed a model of the rat ventricular myocyte at room temperature to predict the relat...
The stretch of cardiac muscle increases developed force in two phases. The first phase, which occurs...
In most mammalian species, an increase in stimulation frequency (ISF) produces an increase in contra...
In this chapter the enhanced activity of the cardiac Na+/H+ exchanger (NHE-1) after myocardial stret...