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Performance measurements of a depth-encoding PET detector module based on position-sensitive avalanche photodiode read-out

P A Dokhale1, R W Silverman2, K S Shah3, R Grazioso3, R Farrell3, J Glodo3, M A McClish3, G Entine3, V-H Tran1 and S R Cherry1

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We are developing a high-resolution, high-efficiency positron emission tomography (PET) detector module with depth of interaction (DOI) capability based on a lutetium oxyorthosilicate (LSO) scintillator array coupled at both ends to position-sensitive avalanche photodiodes (PSAPDs). In this paper we present the DOI resolution, energy resolution and timing resolution results for complete detector modules. The detector module consists of a 7 × 7 matrix of LSO scintillator crystals (1 × 1 × 20 mm3 in dimension) coupled to 8 × 8 mm2 PSAPDs at both ends. Flood histograms were acquired and used to generate crystal look-up tables. The DOI resolution was measured for individual crystals within the array by using the ratio of the signal amplitudes from the two PSAPDs on an event-by-event basis. A measure of the total scintillation light produced was obtained by summing the signal amplitudes from the two PSAPDs. This summed signal was used to measure the energy resolution. The DOI resolution was measured to be 3–4 mm FWHM irrespective of the position of the crystal within the array, or the interaction location along the length of the crystal. The total light signal and energy resolution was almost independent of the depth of interaction. The measured energy resolution averaged 14% FWHM. The coincidence timing resolution measured using a pair of identical detector modules was 4.5 ns FWHM. These results are consistent with the design goals and the performance required of a compact, high-resolution and high-efficiency PET detector module for small animal and breast imaging applications.


PACS

87.57.uk Positron emission tomography (PET)

29.40.Gx Tracking and position-sensitive detectors

29.40.Mc Scintillation detectors

87.57.U- Nuclear medicine imaging

85.60.Dw Photodiodes; phototransistors; photoresistors

Subjects

Accelerators, beams and electromagnetism

Electronics and devices

Nuclear physics

Instrumentation and measurement

Optics, quantum optics and lasers

Medical physics

Particle physics and field theory

Dates

Issue 18 (21 September 2004)

Received 20 May 2004

Published 3 September 2004



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