To what extent microvascular rarefaction contributes to impaired skeletal muscle function remains unknown. Our understanding of whether pathological changes in the microcirculation can be reversed remains limited by a lack of basic physiological data in otherwise healthy tissue. Principal objectives were: 1) quantify the effect of random microvascular rarefaction on limb perfusion and muscle performance; 2) determine if these changes could be reversed. We developed a novel protocol in rats whereby microspheres injected into the femoral artery allowed a unilateral reduction in functional capillary density in the extensor digitorum longus (EDL), and assessed acute and chronic effects on muscle function. Simultaneous bilateral EDL force and hi...
NEW FINDINGS: What is the central question of this study? Dose VEGF expressed by both endothelial ce...
The matching of capillary blood flow to metabolic rate of the cells within organs and tissues is a c...
OBJECTIVES: To develop a model of peripheral arterial disease (PAD) in rat skeletal muscle with sust...
KEY POINTS:Loss of skeletal muscle capillaries is thought to contribute to a reduction in exercise t...
KEY POINTS: Loss of skeletal muscle capillaries is thought to contribute to a reduction in exercise ...
Microvascular rarefaction may contribute to declining skeletal muscle performance in cardiac and vas...
Key points: Capillary rarefaction is hypothesized to contribute to impaired exercise tolerance in ca...
It is widely acknowledged that maintenance of muscle, size, strength and endurance is necessary for ...
Objective Adequacy of the microcirculation is essential for maintaining repetitive skeletal muscle ...
Skeletal muscle is among the most plastic of tissues, remodelling to accommodate altered demands. Ex...
Skeletal muscle is spatially heterogeneous in muscle fibre type composition and microvascular supply...
The role of capillaries is to serve as the interface for delivery of oxygen and removal of metabolit...
The role of capillaries is to serve as the interface for delivery of oxygen and removal of metabolit...
Over the course of the last 20 years, the OZR model of the metabolic syndrome has proven to be an ex...
Capillary perfusion in skeletal muscle is highly coordinated both spatially and temporally with the ...
NEW FINDINGS: What is the central question of this study? Dose VEGF expressed by both endothelial ce...
The matching of capillary blood flow to metabolic rate of the cells within organs and tissues is a c...
OBJECTIVES: To develop a model of peripheral arterial disease (PAD) in rat skeletal muscle with sust...
KEY POINTS:Loss of skeletal muscle capillaries is thought to contribute to a reduction in exercise t...
KEY POINTS: Loss of skeletal muscle capillaries is thought to contribute to a reduction in exercise ...
Microvascular rarefaction may contribute to declining skeletal muscle performance in cardiac and vas...
Key points: Capillary rarefaction is hypothesized to contribute to impaired exercise tolerance in ca...
It is widely acknowledged that maintenance of muscle, size, strength and endurance is necessary for ...
Objective Adequacy of the microcirculation is essential for maintaining repetitive skeletal muscle ...
Skeletal muscle is among the most plastic of tissues, remodelling to accommodate altered demands. Ex...
Skeletal muscle is spatially heterogeneous in muscle fibre type composition and microvascular supply...
The role of capillaries is to serve as the interface for delivery of oxygen and removal of metabolit...
The role of capillaries is to serve as the interface for delivery of oxygen and removal of metabolit...
Over the course of the last 20 years, the OZR model of the metabolic syndrome has proven to be an ex...
Capillary perfusion in skeletal muscle is highly coordinated both spatially and temporally with the ...
NEW FINDINGS: What is the central question of this study? Dose VEGF expressed by both endothelial ce...
The matching of capillary blood flow to metabolic rate of the cells within organs and tissues is a c...
OBJECTIVES: To develop a model of peripheral arterial disease (PAD) in rat skeletal muscle with sust...