most citedCompressive Sensing of Signals Generated in Plastic Scintillators in a Novel J-PET Instrument

54 citations · 94 across the 4 of their papers we have counts for

collaborators

5 papers

cs.MA20162 cited

Modelling movement for collective adaptive systems with CARMA

Natalia Zoń, Vashti Galpin, Stephen Gilmore

Space and movement through space play an important role in many collective adaptive systems (CAS). CAS consist of multiple components interacting to achieve some goal in a system o…

physics.ins-det2016

Time resolution of the plastic scintillator strips with matrix photomultiplier readout for J-PET tomograph

P. Moskal, O. Rundel, D. Alfs +27

Recent tests of a single module of the Jagiellonian Positron Emission Tomography system (J-PET) consisting of 30 cm long plastic scintillator strips have proven its applicability f…

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-det201554 cited

Compressive Sensing of Signals Generated in Plastic Scintillators in a Novel J-PET Instrument

L. Raczynski, P. Moskal, P. Kowalski +25

The J-PET scanner, which allows for single bed imaging of the whole human body, is currently under development at the Jagiellonian University. The dis- cussed detector offers impro…