A new algorithm to suppress spillover fraction for 11C-Hydroxyephedrine myocardial 3D PET: Non-uniform least squared method with a weighted function using blood …

C Katoh, K Kasai, K Yoshinaga, O Manabe, K Magota… - 2011 - Soc Nuclear Med
2061 Objectives Three-dimensional (3D) PET with 11C-Hydroxyephedrine (HED) yields
myocardial image data with much spillover fraction from the blood. To estimate the …

The algorithm to quantify the myocardial sympathetic nerve function with 11C-Hydroxyephedrine (HED) and 3D-PET

C Katoh, K Kasai, Y Tomiyama, O Manabe, K Magota… - 2012 - Soc Nuclear Med
2242 Objectives Three-dimensional (3D) PET with 11C-Hydroxyephedrine (HED) yields
myocardial image data with much spillover fraction from the blood. To estimate the …

A new algorithm to suppress spillover fraction from the blood radioactivity for 82Rb myocardial 3D PET: Non-uniform least squared method with a weighted function …

C Katoh, K Yoshinaga, O Manabe, N Tamaki - 2010 - Soc Nuclear Med
474 Objectives Three-dimensional (3D) PET with 82Rb yields myocardial image with much
spillover fraction from the blood. To calculate the regional myocardial blood flow (MBF) with …

Quantification of Myocardial blood flow with 11C-hydroxyephedrine Dynamic PET: comparison with 15O-H2O PET

Y Hiroshima, M Naya, T Aikawa, M Obara, K Yoshinaga… - 2016 - Soc Nuclear Med
2703 Objectives Mismatch between areas of reduced myocardial blood flow (MBF) and
disordered sympathetic nerve system area may be used to estimate the risk for ventricular …

Development of a new protocol to evaluate the pancreatic sympathetic nervous system using 11C-HED with 3D PET

C Katoh, N Hattori, K Kasai, K Magota, K Yoshinaga… - 2011 - Soc Nuclear Med
2069 Objectives To estimate the pancreatic sympathetic nerve function using 11C-
hydroxyephedrine (HED) with 3-dimensional (3D) PET, we developed a new protocol to …

Quantification of myocardial blood flow with 11C-hydroxyephedrine dynamic PET: comparison with 15O-H2O PET

Y Hiroshima, O Manabe, M Naya, Y Tomiyama… - Journal of Nuclear …, 2020 - Elsevier
Abstract Background 11 C-hydroxyephedrine (HED) PET has been used to evaluate the
myocardial sympathetic nervous system (SNS). Here we sought to establish a simultaneous …

[HTML][HTML] Reproducible quantification of cardiac sympathetic innervation using graphical modeling of carbon-11-meta-hydroxyephedrine kinetics with dynamic PET-CT …

T Wang, KY Wu, RC Miner, JM Renaud… - EJNMMI research, 2018 - Springer
Background Graphical methods of radiotracer kinetic modeling in PET are ideal for
parametric imaging and data quality assurance but can suffer from noise bias. This study …

Reliable quantification of myocardial sympathetic innervation and regional denervation using [11C]meta-hydroxyephedrine PET

KY Wu, JGE Zelt, T Wang, V Dinculescu… - European Journal of …, 2020 - Springer
Purpose Cardiac sympathetic nervous system (SNS) dysfunction is associated with poor
prognosis in chronic heart failure patients. This study characterized the reproducibility and …

Reproducibility and repeatability of cardiac 11C-Hydroxyephedrine PET sympathetic nervous system imaging and kinetics

KY Wu, T Wang, V Dinculescu, R Miner, J Renaud… - 2018 - Soc Nuclear Med
232 Objectives: Dysfunction in the cardiac sympathetic nervous system (SNS) has been
associated with poor prognosis in patients with chronic heart failure. The purpose of this …

Noninvasive quantification of myocardial 11C-meta-hydroxyephedrine kinetics

HJ Harms, MC Huisman, MT Rijnierse… - Journal of Nuclear …, 2016 - Soc Nuclear Med
11C-meta-hydroxyephedrine (11C-HED) kinetics in the myocardium can be quantified using
a single-tissue-compartment model together with a metabolite-corrected arterial blood …