The supply of oxygen in sufficient quantity is vital for the correct functioning of all organs in the human body, in particular for skeletal muscle during exercise. Disease is often associated with both an inhibition of the microvascular supply capability and is thought to relate to changes in the structure of blood vessel networks. Different methods exist to investigate the influence of the microvascular structure on tissue oxygenation, varying over a range of application areas, i.e., biological in vivo and in vitro experiments, imaging and mathematical modelling. Ideally, all of these methods should be combined within the same framework in order to fully understand the processes involved. This review discusses the mathematical models of s...
On the basis of experimental studies, the intracellular O(2) (iPo(2))-work rate (WR) relationship in...
A model of combined convective and diffusive O2 transport to tissue is suggested which allows for th...
Capillary perfusion in skeletal muscle is highly coordinated both spatially and temporally with the ...
The supply of oxygen in sufficient quantity is vital for the correct functioning of all organs in th...
Maximal oxygen consumption rates in exercising skeletal muscle are studied using a Krogh-type cylind...
Identifying structural limitations in O2 transport is primarily restricted by current methods employ...
Identifying structural limitations in O2 transport is primarily restricted by current methods employ...
Identifying structural limitations in O2 transport is primarily restricted by current methods employ...
High myoglobin content and low blood flow in skeletal muscle invalidates the results of the steady-s...
Intravital microscopy has proven to be a powerful tool for studying microvascular physiology. In thi...
Oxygen availability is regarded as a critical factor to metabolically regulate systemic blood flow. ...
<div><p>The process of oxygen delivery from capillary to muscle fiber is essential for a tissue with...
PurposeThe objective of this study was to develop a new noncontrast method to directly quantify regi...
The aim of this study was to investigate the response of human skeletal muscle to exercise, training...
In skeletal muscle (SM), the microcirculation distributes blood flow to capillary networks to meet l...
On the basis of experimental studies, the intracellular O(2) (iPo(2))-work rate (WR) relationship in...
A model of combined convective and diffusive O2 transport to tissue is suggested which allows for th...
Capillary perfusion in skeletal muscle is highly coordinated both spatially and temporally with the ...
The supply of oxygen in sufficient quantity is vital for the correct functioning of all organs in th...
Maximal oxygen consumption rates in exercising skeletal muscle are studied using a Krogh-type cylind...
Identifying structural limitations in O2 transport is primarily restricted by current methods employ...
Identifying structural limitations in O2 transport is primarily restricted by current methods employ...
Identifying structural limitations in O2 transport is primarily restricted by current methods employ...
High myoglobin content and low blood flow in skeletal muscle invalidates the results of the steady-s...
Intravital microscopy has proven to be a powerful tool for studying microvascular physiology. In thi...
Oxygen availability is regarded as a critical factor to metabolically regulate systemic blood flow. ...
<div><p>The process of oxygen delivery from capillary to muscle fiber is essential for a tissue with...
PurposeThe objective of this study was to develop a new noncontrast method to directly quantify regi...
The aim of this study was to investigate the response of human skeletal muscle to exercise, training...
In skeletal muscle (SM), the microcirculation distributes blood flow to capillary networks to meet l...
On the basis of experimental studies, the intracellular O(2) (iPo(2))-work rate (WR) relationship in...
A model of combined convective and diffusive O2 transport to tissue is suggested which allows for th...
Capillary perfusion in skeletal muscle is highly coordinated both spatially and temporally with the ...