For the absolute quantification of regional cerebral blood flow (rCBF) by means of H2 15 O positron emission tomography (PET) and kinetic modeling, arterial input function should be determined accurately. Even if arterial blood sampling, as an input function, provides an accurate time-activity curve (TAC), it is invasive and delay from carotid artery to radial artery should be corrected. Since the TAC from the region of interest (ROI) drawn on the small area containing carotid artery could not be determined objectively, more reproducible and objective method for noninvasive derivation of the input function is required. We applied independent component analysis (ICA) to dynamic brain H2 15O PET image (canine study) to obtain input function f...
There is a growing interest in using 18F-DPA-714 PET to study neuroinflammation and microglial activ...
The quantitative determination of regional cerebral blood flow (rCBF) is important in certain clinic...
Positron emission tomography (PET) is an important tool for enabling quantification of human brain f...
Kinetic analysis of (18)F-fluorodeoxyglucose positron emission tomography data requires an accurate ...
<div><p>In [<sup>18</sup>F]-FEPPA positron emission topography (PET) imaging, automatic blood sampli...
Quantification of regional cerebral blood flow (CBF) using [O-15]H2O positron emission tomography (P...
[[abstract]]©2006 Elsevier - Quantification of cerebral blood flow (CBF) with dynamic susceptibility...
Cerebral blood flow (CBF) can be measured with dynamic positron emission tomography (PET) of 15O-lab...
Quantitative positron emission tomography (PET) analysis with a compartment model requires a plasma ...
peer reviewedQuantitative positron emission tomography (PET) brain studies often require an input fu...
Purpose. Quantitative cerebral blood flow (CBF) measurement using dynamic susceptibility contrast- (...
AbstractA semi-automated MR-guided technique has been evaluated for non-invasive estimation of cereb...
Background Obtaining the arterial input function (AIF) from image data in dynamic positron emission...
In [18F]-FEPPA positron emission topography (PET) imaging, automatic blood sampling system (ABSS) is...
Abstract—Positron emission tomography (PET) is an important tool for enabling quantification of huma...
There is a growing interest in using 18F-DPA-714 PET to study neuroinflammation and microglial activ...
The quantitative determination of regional cerebral blood flow (rCBF) is important in certain clinic...
Positron emission tomography (PET) is an important tool for enabling quantification of human brain f...
Kinetic analysis of (18)F-fluorodeoxyglucose positron emission tomography data requires an accurate ...
<div><p>In [<sup>18</sup>F]-FEPPA positron emission topography (PET) imaging, automatic blood sampli...
Quantification of regional cerebral blood flow (CBF) using [O-15]H2O positron emission tomography (P...
[[abstract]]©2006 Elsevier - Quantification of cerebral blood flow (CBF) with dynamic susceptibility...
Cerebral blood flow (CBF) can be measured with dynamic positron emission tomography (PET) of 15O-lab...
Quantitative positron emission tomography (PET) analysis with a compartment model requires a plasma ...
peer reviewedQuantitative positron emission tomography (PET) brain studies often require an input fu...
Purpose. Quantitative cerebral blood flow (CBF) measurement using dynamic susceptibility contrast- (...
AbstractA semi-automated MR-guided technique has been evaluated for non-invasive estimation of cereb...
Background Obtaining the arterial input function (AIF) from image data in dynamic positron emission...
In [18F]-FEPPA positron emission topography (PET) imaging, automatic blood sampling system (ABSS) is...
Abstract—Positron emission tomography (PET) is an important tool for enabling quantification of huma...
There is a growing interest in using 18F-DPA-714 PET to study neuroinflammation and microglial activ...
The quantitative determination of regional cerebral blood flow (rCBF) is important in certain clinic...
Positron emission tomography (PET) is an important tool for enabling quantification of human brain f...