most citedAnalysis framework for the J-PET scanner

28 citations · 102 across the 5 of their papers we have counts for

collaborators

5 papers

physics.med-ph201512 cited

3D PET image reconstruction based on Maximum Likelihood Estimation Method (MLEM) algorithm

Artur Słomski, Zbigniew Rudy, Tomasz Bednarski +23

Positron emission tomographs (PET) do not measure an image directly. Instead, they measure at the boundary of the field-of-view (FOV) of PET tomograph a sinogram that consists of m…

physics.ins-det201526 cited

Plastic scintillators for positron emission tomography obtained by the bulk polymerization method

Łukasz Kapłon, Andrzej Kochanowski, Marcin Molenda +24

This paper describes three methods regarding the production of plastic scintillators. One method appears to be suitable for the manufacturing of plastic scintillator, revealing pro…

physics.ins-det201521 cited

Multiple scattering and accidental coincidences in the J-PET detector simulated using GATE package

P. Kowalski, P. Moskal, W. Wiślicki +28

Novel Positron Emission Tomography system, based on plastic scintillators, is developed by the J-PET collaboration. In order to optimize geometrical configuration of built device,…

physics.ins-det201528 cited

Analysis framework for the J-PET scanner

W. Krzemień, A. Gajos, A. Gruntowski +28

J-PET analysis framework is a flexible, lightweight, ROOT-based software package which provides the tools to develop reconstruction and calibration procedures for PET tomography. I…

physics.ins-det201515 cited

A pilot study of the novel J-PET plastic scintillator with 2-(4-styrylphenyl)benzoxazole as a wavelength shifter

A. Wieczorek, P. Moskal, Sz. Niedźwiecki +30

For the first time a molecule of 2-(4-styrylphenyl)benzoxazole containing benzoxazole and stilbene groups is applied as a scintillator dopant acting as a wavelength shifter. In thi…