We recently developed a dynamic multi-bed PET data acquisition framework to translate the quantitative benefits of Patlak voxel-wise analysis to the domain of routine clinical whole-body (WB) imaging. The standard Patlak (sPatlak) linear graphical analysis assumes irreversible PET tracer uptake, ignoring the effect of FDG dephosphorylation, which has been suggested by a number of PET studies. In this work: (i) a non-linear generalized Patlak (gPatlak) model is utilized, including a net efflux rate constant k(loss), and (ii) a hybrid (s/g) Patlak (hPatlak) imaging technique is introduced to enhance contrast to noise ratios (CNRs) of uptake rate K-i images. Representative set of kinetic parameter values and the XCAT phantom were employed to g...
<p>(a) The Patlak influx constant was computed using noisy, Gaussian-denoised, PCA-denoised, HYPR-d...
Detecting cancerous lesions is a major clinical application of emission tomography. In a previous wo...
Currently, kinetic analyses using dynamic positron emission tomography (PET) experience very limited...
We recently developed a dynamic multi-bed PET data acquisition framework to translate the quantitati...
We recently developed a dynamic multi-bed PET data acquisition framework to translate the quantitati...
Whole-body (WB) dynamic PET has recently demonstrated its potential in translating the quantitative ...
Purpose This study proposed and investigated the feasibility of estimating Patlak-derived influx rat...
Purpose Hybrid dynamic imaging allows not only the estimation of whole-body (WB) macroparametric map...
International audienceAbstract Dynamic whole body (DWB) PET acquisition protocols enable the use of ...
Current clinical whole-body PET imaging protocols reflect the trend followed in conventional nuclear...
2014-08-11We investigate using list‐mode PET data to perform Patlak and Logan modeling. We first pro...
The Patlak graphical method is widely used in parametric imaging for modeling irreversible radiotrac...
<p>(a) The Patlak influx constant was computed using noisy, Gaussian-denoised, PCA-denoised, HYPR-d...
Detecting cancerous lesions is a major clinical application of emission tomography. In a previous wo...
Currently, kinetic analyses using dynamic positron emission tomography (PET) experience very limited...
We recently developed a dynamic multi-bed PET data acquisition framework to translate the quantitati...
We recently developed a dynamic multi-bed PET data acquisition framework to translate the quantitati...
Whole-body (WB) dynamic PET has recently demonstrated its potential in translating the quantitative ...
Purpose This study proposed and investigated the feasibility of estimating Patlak-derived influx rat...
Purpose Hybrid dynamic imaging allows not only the estimation of whole-body (WB) macroparametric map...
International audienceAbstract Dynamic whole body (DWB) PET acquisition protocols enable the use of ...
Current clinical whole-body PET imaging protocols reflect the trend followed in conventional nuclear...
2014-08-11We investigate using list‐mode PET data to perform Patlak and Logan modeling. We first pro...
The Patlak graphical method is widely used in parametric imaging for modeling irreversible radiotrac...
<p>(a) The Patlak influx constant was computed using noisy, Gaussian-denoised, PCA-denoised, HYPR-d...
Detecting cancerous lesions is a major clinical application of emission tomography. In a previous wo...
Currently, kinetic analyses using dynamic positron emission tomography (PET) experience very limited...