研究目的
To address the issue of inappropriate data acquisition (DAQ) using a multichannel waveform digitizer based on the domino-ring-sampler 4 (DRS4) chip leading to considerable error when determining coincidence resolving time (CRT) in positron emission tomography (PET) detectors.
研究成果
The inter-chip CRT measurement provided the reliable estimation of timing resolution and could prevent the high-frequency signal crosstalk among input channels within the DRS4 chip. It is recommended to avoid the intra-chip measurement when evaluating the timing resolution of PET detectors with fast scintillation crystals and photosensors, unless the proper time calibration is performed.
研究不足
The intra-chip CRT measurement exhibited unusual streak patterns in the 2D CRT map and yielded the artificially-low CRT information in PET detector pairs. The high-frequency signal crosstalk among input channels within the DRS4 chip may compromise the estimation reliability of timing resolution.
1:Experimental Design and Method Selection:
Utilized a pair of Hamamatsu R9800 photomultiplier tube based PET detectors and a 16-channel waveform digitizer endowed with a DRS4 chip. Four different combinations of input channels into the CAEN DT5742B waveform digitizer were employed for intra- and inter-chip CRT measurements.
2:Sample Selection and Data Sources:
A high voltage of 1300 V was supplied to both PMTs. An MMS06-022 22Na point source was used for coincidence detection of annihilated gamma photons.
3:List of Experimental Equipment and Materials:
Hamamatsu R9800 PMT, CAEN DT5742B waveform digitizer, N625 fan-in/fan-out units, N843 constant fraction discriminator modules, N455 AND module.
4:Experimental Procedures and Operational Workflow:
The energy of annihilated gamma photons was estimated as the area under the curve during 160 ns. The arrival time of the photons was derived from the PMT dynode signal by applying a digital LED method with varying thresholds.
5:Data Analysis Methods:
Generated 2D CRT maps according to the LED thresholds to demonstrate the appropriateness of each DAQ scheme.
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