Insulin has a marked effect to stimulate the transport and metabolism of glucose in skeletal muscle in healthy individuals, whereas an impaired response, termed insulin resistance, is a major risk factor for diabetes mellitus and other metabolic diseases. Studies of the molecular physiology of insulin action in skeletal muscle indicate that a principal loci of control resides within the proximal steps of glucose transport and phosphorylation. Deoxyglucose, the metabolism of which is limited to these proximal steps, is widely used for in vitro studies of insulin action on glucose transport. The technologies of PET imaging provide a unique opportunity to carry out similar studies in vivo in human skeletal muscle. In this instance, a short-liv...
In order to evaluate factors regulating substrate metabolism in vivo positron emitting radionuclides...
We tested the hypothesis that weight loss alleviates insulin resistance in skeletal muscle within th...
The quantification and variability of skeletal muscle glucose utilization (SMGU) in healthy subjects...
Insulin-stimulated glucose transport in skeletal muscle is regarded as a key determinant of insulin ...
Insulin-stimulated glucose transport in skeletal muscle is regarded as a key determinant of insulin ...
A controversial area in understanding the contribution of obesity to skeletal muscle insulin resista...
A controversial area in understanding the contribution of obesity to skeletal muscle insulin resista...
Glucose transport is regarded as the principal rate control step governing insulin-stimulated glucos...
Skeletal muscle accounts for a large proportion of insulin-stimulated glucose utilization. It is gen...
Skeletal muscle accounts for a large proportion of insulin-stimulated glucose utilization. It is gen...
Dynamic positron emission tomography (PET) imaging was performed using sequential tracer injections ...
We are developing amethodology for the noninvasive imaging of glucose transport in vivo with PET and...
We are developing amethodology for the noninvasive imaging of glucose transport in vivo with PET and...
Various modeling strategies have been developed to convert regional [(18)F]fluorodeoxyglucose ([(18)...
In order to evaluate factors regulating substrate metabolism in vivo positron emitting radionuclides...
In order to evaluate factors regulating substrate metabolism in vivo positron emitting radionuclides...
We tested the hypothesis that weight loss alleviates insulin resistance in skeletal muscle within th...
The quantification and variability of skeletal muscle glucose utilization (SMGU) in healthy subjects...
Insulin-stimulated glucose transport in skeletal muscle is regarded as a key determinant of insulin ...
Insulin-stimulated glucose transport in skeletal muscle is regarded as a key determinant of insulin ...
A controversial area in understanding the contribution of obesity to skeletal muscle insulin resista...
A controversial area in understanding the contribution of obesity to skeletal muscle insulin resista...
Glucose transport is regarded as the principal rate control step governing insulin-stimulated glucos...
Skeletal muscle accounts for a large proportion of insulin-stimulated glucose utilization. It is gen...
Skeletal muscle accounts for a large proportion of insulin-stimulated glucose utilization. It is gen...
Dynamic positron emission tomography (PET) imaging was performed using sequential tracer injections ...
We are developing amethodology for the noninvasive imaging of glucose transport in vivo with PET and...
We are developing amethodology for the noninvasive imaging of glucose transport in vivo with PET and...
Various modeling strategies have been developed to convert regional [(18)F]fluorodeoxyglucose ([(18)...
In order to evaluate factors regulating substrate metabolism in vivo positron emitting radionuclides...
In order to evaluate factors regulating substrate metabolism in vivo positron emitting radionuclides...
We tested the hypothesis that weight loss alleviates insulin resistance in skeletal muscle within th...
The quantification and variability of skeletal muscle glucose utilization (SMGU) in healthy subjects...