2024
DOI: 10.1371/journal.pone.0296357
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Impact of improved dead time correction on the quantification accuracy of a dedicated BrainPET scanner

Ahlam Said Mohamad Issa,
Jürgen Scheins,
Lutz Tellmann
et al.

Abstract: Objective Quantitative values derived from PET brain images are of high interest for neuroscientific applications. Insufficient DT correction (DTC) can lead to a systematic bias of the output parameters obtained by a detailed analysis of the time activity curves (TACs). The DTC method currently used for the Siemens 3T MR BrainPET insert is global, i.e., differences in DT losses between detector blocks are not considered, leading to inaccurate DTC and, consequently, to inaccurate measurements masked by a bias. … Show more

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