Performance of a 0.4 mm Pixelated Ce:GAGG Block Detector with Digital Silicon Photomultiplier

  • Pratiwi, Eva
  • Leem, Hyun Tae
  • Park, Jin Ho
  • Choi, Yong
  • Yamamoto, Seiichi
  • 외 3명
Citations

SCOPUS

5

초록

The intrinsic spatial resolution of the detector is an important aspect to reconstruct high quality nuclear medicine images. In order to realize a high spatial resolution, small pixelated Cerium doped Gd<inf>3</inf>Al<inf>2</inf>Ga<inf>3</inf>O<inf>12</inf> (Ce:GAGG) scintillators-known for their high light output, high density and relatively fast decay time, were coupled to a digital silicon photomultiplier (dSiPM) for read out. This detector module consists of a 24×24 Ce:GAGG scintillator block of 0.4 mm×0.4mm ×5mm crystal elements and a 2 mm thick light guide made of acrylic resin. The digital silicon photomultiplier (dSiPM), DPC-3200-22-44, was used to acquire 2-D position histogram, energy resolution and coincidence timing resolution. The 2-dimensional position histogram of the Ce:GAGG block detector irradiated with 22Na gamma photons showed that most pixels were clearly resolved with an average peak-to-valley (P/V) ratio of 3.4. The average energy resolution of the Ce:GAGG block detector was 17.8%. At trigger scheme 1 (1st photon trigger), the coincidence timing resolution was 342 ± 7 ps FHWM when acquired in coincidence with a 2 mm×2mm×6mm LSO crystal (after skew correction). This study demonstrates that a pixelated Ce:GAGG block coupled with dSiPM provides good position performance and time resolution. We conclude that the highly pixelated Ce:GAGG detector module may be a good candidate for implementing ultrahigh resolution nuclear medicine systems and applications requiring good timing resolution. © 2017 IEEE.

키워드

Ce:GAGGdigital silicon photomultiplierhigh resolution detectorScintillators
제목
Performance of a 0.4 mm Pixelated Ce:GAGG Block Detector with Digital Silicon Photomultiplier
저자
Pratiwi, EvaLeem, Hyun TaePark, Jin HoChoi, YongYamamoto, SeiichiKamada, KeiYoshikawa, AkiraYeom, Jung Yeol
DOI
10.1109/TNS.2016.2620480
발행일
2017-01
유형
Article
저널명
IEEE Transactions on Radiation and Plasma Medical Sciences
1
1
페이지
30 ~ 35