The applicability of (H2O)-O-15-positron emission tomographic (PET) imaging for the assessment of skeletal muscle perfusion during exercise was investigated in five healthy subjects performing intermittent isometric contractions on a calf ergometer. The workload of the left calf muscles was kept constant in all exercises, while that of the right calf muscles was varied. During exercise (H2O)-O-15 distribution in the calf muscles was measured by PET. Radioactivity measured in the left calf muscles was used as a reference for the radioactivity measured in the right calf muscles. In all studies, muscles were delineated by uptake of radioactivity. Four subjects demonstrated high radioactivity in the gastrocnemius medialis muscle, in one subject...
Regional blood flow distribution in animal skeletal muscle is markedly uneven at rest and during var...
Regional blood flow distribution in animal skeletal muscle is markedly uneven at rest and during var...
Regional blood flow distribution in animal skeletal muscle is markedly uneven at rest and during var...
The applicability of (H2O)-O-15-positron emission tomographic (PET) imaging for the assessment of sk...
The applicability of (H2O)-O-15-positron emission tomographic (PET) imaging for the assessment of sk...
The applicability of (H2O)-O-15-positron emission tomographic (PET) imaging for the assessment of sk...
The applicability of (H2O)-O-15-positron emission tomographic (PET) imaging for the assessment of sk...
The applicability of (H2O)-O-15-positron emission tomographic (PET) imaging for the assessment of sk...
The study was perjiormed to evaluate if skeletal muscle perjhsion can be determined during exercise ...
Blood flow is the main regulator of skeletal muscle's oxygen supply, and several studies have shown ...
In order to evaluate regional muscle blood flow and oxygen utilization, we study with positron emiss...
In order to evaluate regional muscle blood flow and oxygen utilization, we study with positron emiss...
PET with three-dimensional data acquisition using 18F-fluorode-oxyglucose (FDG) was applied to evalu...
PurposeThe objective of this study was to develop a new noncontrast method to directly quantify regi...
PURPOSE: This study aimed to determine the contribution of each muscle of the lower limb to walking ...
Regional blood flow distribution in animal skeletal muscle is markedly uneven at rest and during var...
Regional blood flow distribution in animal skeletal muscle is markedly uneven at rest and during var...
Regional blood flow distribution in animal skeletal muscle is markedly uneven at rest and during var...
The applicability of (H2O)-O-15-positron emission tomographic (PET) imaging for the assessment of sk...
The applicability of (H2O)-O-15-positron emission tomographic (PET) imaging for the assessment of sk...
The applicability of (H2O)-O-15-positron emission tomographic (PET) imaging for the assessment of sk...
The applicability of (H2O)-O-15-positron emission tomographic (PET) imaging for the assessment of sk...
The applicability of (H2O)-O-15-positron emission tomographic (PET) imaging for the assessment of sk...
The study was perjiormed to evaluate if skeletal muscle perjhsion can be determined during exercise ...
Blood flow is the main regulator of skeletal muscle's oxygen supply, and several studies have shown ...
In order to evaluate regional muscle blood flow and oxygen utilization, we study with positron emiss...
In order to evaluate regional muscle blood flow and oxygen utilization, we study with positron emiss...
PET with three-dimensional data acquisition using 18F-fluorode-oxyglucose (FDG) was applied to evalu...
PurposeThe objective of this study was to develop a new noncontrast method to directly quantify regi...
PURPOSE: This study aimed to determine the contribution of each muscle of the lower limb to walking ...
Regional blood flow distribution in animal skeletal muscle is markedly uneven at rest and during var...
Regional blood flow distribution in animal skeletal muscle is markedly uneven at rest and during var...
Regional blood flow distribution in animal skeletal muscle is markedly uneven at rest and during var...