activity
20142020
most citedTest of a single module of the J-PET scanner based on plastic scintillators

219 citations · 452 across the 9 of their papers we have counts for

collaborators

5 papers

physics.ins-det2016

Semi-automatic charge and mass identification in two-dimensional matrices

D. Gruyer, E. Bonnet, A. Chbihi +15

This article presents a new semi-automatic method for charge and mass identification in two-dimensional matrices. The proposed algorithm is based on the matrix's properties and use…

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…

physics.ins-det201499 cited

A novel method for the line-of-response and time-of-flight reconstruction in TOF-PET detectors based on a library of synchronized model signals

P. Moskal, N. Zoń, T. Bednarski +26

A novel method of hit time and hit position reconstruction in scintillator detectors is described. The method is based on comparison of detector signals with results stored in a li…

physics.ins-det2014219 cited

Test of a single module of the J-PET scanner based on plastic scintillators

P. Moskal, Sz. Niedźwiecki, T. Bednarski +27

Time of Flight Positron Emission Tomography scanner based on plastic scintillators is being developed at the Jagiellonian University by the J-PET collaboration. The main challenge…

physics.ins-det201460 cited

Novel method for hit-position reconstruction using voltage signals in plastic scintillators and its application to Positron Emission Tomography

L. Raczynski, P. Moskal, P. Kowalski +26

Currently inorganic scintillator detectors are used in all commercial Time of Flight Positron Emission Tomograph (TOF-PET) devices. The J-PET collaboration investigates a possibili…