DocumentCode :
1307516
Title :
Development of PET Detectors Using Monolithic Scintillation Crystals Processed With Sub-Surface Laser Engraving Technique
Author :
Moriya, T. ; Fukumitsu, K. ; Sakai, T. ; Ohsuka, S. ; Okamoto, T. ; Takahashi, H. ; Watanabe, M. ; Yamashita, T.
Author_Institution :
Central Res. Lab., Hamamatsu Photonics K.K., Hamamatsu, Japan
Volume :
57
Issue :
5
fYear :
2010
Firstpage :
2455
Lastpage :
2459
Abstract :
New monolithic scintillation detectors for PET have been developed, where the crystals are processed using an internally focused laser processing technique called sub-surface laser engraving (SSLE). When high intensity light pulses of short duration from a laser are focused into a scintillation crystal, they induce multi-photon absorption at the focal point and result in refractive index changes or micro-cracks inside the crystal. By applying the SSLE technique to a monolithic scintillation block, fine segmentation in the crystal can be formed without inter-pixel gaps. We have fabricated 2D segmented arrays by using a Nd:YAG laser to engrave various patterns of micro-cracks inside monolithic LYSO crystal blocks. The processed crystal array, segmented to 12 × 12 with 1.67 mm pitch, has been evaluated by coupling to a position-sensitive photomultiplier tube (PS-PMT). The 2D position histograms were measured for uniform irradiation of gamma rays, and each crystal segment was clearly separated. The average energy resolution was 9.7%, similar to that of the conventional arrays, so the laser-processed LYSO crystals have kept their primary scintillation properties. We have also evaluated the laser-processed crystals by using multi-pixel photon counters (MPPCs) to investigate their possibility as a future PET detector. The results suggest that it is possible to fabricate high performance PET detectors using the SSLE technique.
Keywords :
microcracks; photomultipliers; position sensitive particle detectors; positron emission tomography; refractive index; scintillation counters; 2D position histograms; 2D segmented arrays; MPPC; Nd:YAG laser; PET detectors; PS-PMT; SSLE; focal point; focused laser processing technique; gamma rays; interpixel gaps; monolithic LYSO crystal blocks; monolithic scintillation block; monolithic scintillation crystals; monolithic scintillation detectors; multiphoton absorption; multipixel photon counters; position-sensitive photomultiplier tube; positron emission tomography; refractive index; scintillation crystal; subsurface laser engraving technique; Crystals; Detectors; Image segmentation; Laser beams; Lasers; Positron emission tomography; Laser materials-processing applications; nuclear imaging; positron emission tomography; scintillation detectors;
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/TNS.2010.2056387
Filename :
5559467
Link To Document :
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