Toward truly combined PET/CT imaging using PET detectors and photon counting CT with iterative reconstruction implementing physical detector response

2012 ◽  
Vol 39 (9) ◽  
pp. 5697-5707 ◽  
Author(s):  
Christian Thibaudeau ◽  
Philippe Bérard ◽  
Marc-André Tétrault ◽  
Jean-Daniel Leroux ◽  
Mélanie Bergeron ◽  
...  
2019 ◽  
Author(s):  
Darin P. Clark ◽  
Matthew Holbrook ◽  
Chang-Lung Lee ◽  
Cristian T. Badea

AbstractThe maturation of photon-counting detector (PCD) technology promises to enhance routine CT imaging applications with high-fidelity spectral information. In this paper, we demonstrate the power of this synergy and our complementary reconstruction techniques, performing 4D, cardiac PCD-CT data acquisition and reconstruction in a mouse model of atherosclerosis, including calcified plaque. Specifically,in vivocardiac micro-CT scans were performed in four ApoE knockout mice, following their development of calcified plaques. The scans were performed with a prototype PCD (DECTRIS, Ltd.) with 4 energy thresholds. Projection sampling was performed with 10 ms temporal resolution, allowing the reconstruction of 10 cardiac phases at each of 4 energies (40, 3D volumes per mouse scan). Reconstruction was performed iteratively using the split Bregman method with constraints on spectral rank and spatio-temporal gradient sparsity. The reconstructed images represent the firstin vivo, 4D PCD-CT data in a mouse model of atherosclerosis. Robust regularization during iterative reconstruction yields high-fidelity results: an 8-fold reduction in noise standard deviation for the highest energy threshold (relative to algebraic reconstruction), while absolute spectral bias measurements remain below 13 Hounsfield units across all energy thresholds and scans. Qualitatively, image domain material decomposition results show clear separation of iodinated contrast and soft tissue from calcified plaque in thein vivodata. Quantitatively, spatial, spectral, and temporal fidelity are verified through a water phantom scan and a realistic MOBY phantom simulation experiment: spatial resolution is robustly preserved by iterative reconstruction (10% MTF: 2.8-3.0 lp/mm), left-ventricle, cardiac functional metrics can be measured from iodine map segmentations with ∼1% error, and small calcifications (615 μm) can be detected during slow moving phases of the cardiac cycle. Given these preliminary results, we believe that PCD technology will enhance dynamic CT imaging applications with high-fidelity spectral and material information.


2011 ◽  
Vol 27 ◽  
pp. S18
Author(s):  
D. Bourhis ◽  
A. Andrieux ◽  
R. Abgrall ◽  
P.-Y. Salaün ◽  
E. Chesnay ◽  
...  

2005 ◽  
Vol 44 (S 01) ◽  
pp. S58-S60 ◽  
Author(s):  
W. Mohnike

Summary:PET is being considered a diagnostic commodity in clinical practice worldwide and thus receives increasing attention by health insurances and governmental organizations. In Germany, however, neither PET nor PET/CT are subject to reimbursement. This renders clinical PET and PET/CT imaging a challenge both in a general hospital environment and in private practice. This article describes briefly these challenges, which are not solely related to turf battles and associated costs.


2019 ◽  
Author(s):  
W van Boxtel ◽  
S Lütje ◽  
AC van Engen-van Grunsven ◽  
GW Verhaegh ◽  
JA Schalken ◽  
...  

Diabetes ◽  
2018 ◽  
Vol 67 (Supplement 1) ◽  
pp. 2145-P
Author(s):  
ELIZABETH SANCHEZ RANGEL ◽  
JASON BINI ◽  
NABEEL B. NABULSI ◽  
YIYUN HUANG ◽  
KEVAN C. HEROLD ◽  
...  

2007 ◽  
Author(s):  
Stefan Krüger ◽  
S. Pauls ◽  
Felix M. Mottaghy ◽  
Andreas K. Buck ◽  
Hubert Schelzig ◽  
...  

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