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Furthermore, we could demonstrate that local glucose consumption in the medial frontal gyrus, posterior cingulate cortex and left angular gyrus was associated with functional connectivity within the DMN.
The wire beam electrode (WBE) method was first used to study the activity of local glucose oxidase (GOD) on stainless steel surface in seawater.
Our model incorporates a realistic description of primary energy metabolism within reaction diffusion equations to predict local glucose, oxygen, and lactate concentrations and an overall spheroid growth rate.
The use of glucose analogue 2-[18 F]fluoro-2-deoxy-d-glucose (18 F-FDG) for the in vivo measurement of local glucose utilization rate in oncological animal models has been a valuable tool for evaluation of treatment response.
Dynamic positron emission tomography (dyn-PET) acquisitions using the radiotracer 18F-deoxyglucose (18F-FDG) are mainly developed in research studies of brain PET in kinetic modelling to determine the local glucose consumption rate.
To investigate more directly the association between local glucose consumption, local glutamatergic neurotransmission and DMN functional connectivity during rest, the present study combined for the first time 2-Deoxy-2-[18F]fluoroglucose 2-Deoxy-2-[18F]fluoroglucose 2-Deoxy-2-[18F]fluoroglucose 2-Deoxy-2-[18F]fluoroglucose), and resting-state functional magnetic resonance imaging (rs-fMRI).
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Those investigators suggested that an increase in local cerebral glucose utilization and reduced glucose transfer rate is associated with an increase in GLUT1 glucose transporter in rats pre-exposed to nicotine for one week [ 22, 23].
While local extracellular glucose is a functionally important parameter that reveals the availability of glucose in brain tissue, its level depends upon two opposing variables: glucose entry from cerebral circulation and glucose consumption due to metabolic activity of brain cells.
F-FDG micro-PET was conducted to assess the local metabolic glucose uptake in the contaminated tissue, since infection is associated with an increased metabolic glucose turnover.
For example, in combination with PET, the shunt allows the calculation of local cerebral glucose metabolism and kinetic rate constants in FDG studies using fully quantitative two-compartmental modeling approaches.
Many kinetic models, for example those used in the quantitative measurement of local cerebral glucose metabolism or measurement of radiotracer receptor binding, require the accurate measurement of the time-activity curve of the tracer in plasma, known as the input function (IF).
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