A control mechanism for the control of coronary blood flow (especially coronary autoregulation), presuming that interstitial osmotic pressure determines vascular resistance, was critically examined. A theoretical model of the control mechanism was made and the most important parameters of this theoretical model were estimated from published data. The parameters are the slope of coronary autoregulation curves, the sensitivity of coronary resistance to plasma oncotic pressure and capillary resistance. It appeared that the gains of this control loop were not large enough to allow for a dominant role of interstitial osmolarity in coronary autoregulatio
Coronary blood flow adapts to metabolic demand ("metabolic regulation") and remains relatively const...
Experiments were performed to assess the role of extravascular compression (EVC) in the regulation o...
Previous work from this laboratory and others has shown that powerful autonomic influences modulate ...
• Autoregulation is the term applied to the mechanism (s) which maintain blood flow through an organ...
When the isolated heart is perfused with a constant flow, the perfusion pressure (PI) can be conside...
Coronary blood flow can always be matched to the metabolic demand of the myocardium due to the regul...
Coronary blood flow can always be matched to the metabolic demand of the myocardium due to the regul...
This study was designed to define more accurately the respective influences of perfusion pressure an...
Myogenic response, flow-dependent dilation, and direct metabolic control are important mechanisms co...
SUMMARY. We analyzed the relationship between diastolic coronary artery pressure and flow in the can...
The mechanism of local metabolic regulation of coronary blood flow is still unclear. It is still un...
Large proximal and smaller distal coronary arteries respond differently to pharma-cologic agents, bu...
Myogenic responses (pressure-dependent contractions) of coronary arterioles play a role in autoregul...
SUMMARY To investigate how autoregulation affects transmural myocardial blood flow, we studied 21 op...
The coronary circulation is tightly regulated in order to ensure an adequate matching between myocar...
Coronary blood flow adapts to metabolic demand ("metabolic regulation") and remains relatively const...
Experiments were performed to assess the role of extravascular compression (EVC) in the regulation o...
Previous work from this laboratory and others has shown that powerful autonomic influences modulate ...
• Autoregulation is the term applied to the mechanism (s) which maintain blood flow through an organ...
When the isolated heart is perfused with a constant flow, the perfusion pressure (PI) can be conside...
Coronary blood flow can always be matched to the metabolic demand of the myocardium due to the regul...
Coronary blood flow can always be matched to the metabolic demand of the myocardium due to the regul...
This study was designed to define more accurately the respective influences of perfusion pressure an...
Myogenic response, flow-dependent dilation, and direct metabolic control are important mechanisms co...
SUMMARY. We analyzed the relationship between diastolic coronary artery pressure and flow in the can...
The mechanism of local metabolic regulation of coronary blood flow is still unclear. It is still un...
Large proximal and smaller distal coronary arteries respond differently to pharma-cologic agents, bu...
Myogenic responses (pressure-dependent contractions) of coronary arterioles play a role in autoregul...
SUMMARY To investigate how autoregulation affects transmural myocardial blood flow, we studied 21 op...
The coronary circulation is tightly regulated in order to ensure an adequate matching between myocar...
Coronary blood flow adapts to metabolic demand ("metabolic regulation") and remains relatively const...
Experiments were performed to assess the role of extravascular compression (EVC) in the regulation o...
Previous work from this laboratory and others has shown that powerful autonomic influences modulate ...