L. Kaplon, J. Baran, N. Chug, A. Coussat, C. Curceanu, E. Czerwinski, M. Dadgar, K. Dulski, J. Gajewski, A. Gajos, B. Hiesmayr, E. Kavya Valsan, K. Klimaszewski, G. Korcyl, T. Kozik, W. Krzemien, D. Kumar, G. Moskal, S. Niedzwiecki, D. Panek, S. Parzych, E. Perez del Rio, L. Raczynski, A. Rucinski, S. Sharma, S. Shivani, R. Shopa, M. Silarski, M. Skurzok, E. Stepien, F. Tayefi Ardebili, K. Tayefi Ardebili, W. Wislicki, P. Moskal
{"title":"用于全身 J-PET 扫描仪的高技术衰减长度塑料闪烁条的比较研究","authors":"L. Kaplon, J. Baran, N. Chug, A. Coussat, C. Curceanu, E. Czerwinski, M. Dadgar, K. Dulski, J. Gajewski, A. Gajos, B. Hiesmayr, E. Kavya Valsan, K. Klimaszewski, G. Korcyl, T. Kozik, W. Krzemien, D. Kumar, G. Moskal, S. Niedzwiecki, D. Panek, S. Parzych, E. Perez del Rio, L. Raczynski, A. Rucinski, S. Sharma, S. Shivani, R. Shopa, M. Silarski, M. Skurzok, E. Stepien, F. Tayefi Ardebili, K. Tayefi Ardebili, W. Wislicki, P. Moskal","doi":"arxiv-2407.19465","DOIUrl":null,"url":null,"abstract":"Plastic scintillator strips are considered as one of the promising solutions\nfor the cost-effective construction of total-body positron emission tomography,\n(PET) system. The purpose of the performed measurements is to compare the\ntransparency of long plastic scintillators with dimensions 6 mm x 24 mm x 1000\nmm and with all surfaces polished. Six different types of commercial, general\npurpose, blue-emitting plastic scintillators with low attenuation of visible\nlight were tested, namely: polyvinyl toluene-based BC-408, EJ-200, RP-408, and\npolystyrene-based Epic, SP32 and UPS-923A. For determination of the best type\nof plastic scintillator for totalbody Jagiellonian positron emission tomograph\n(TB-J-PET) construction, emission and transmission spectra, and technical\nattenuation length (TAL) of blue light-emitting by the scintillators were\nmeasured and compared. The TAL values were determined with the use of UV lamp\nas excitation source, and photodiode as light detector. Emission spectra of\ninvestigated scintillators have maxima in the range from 420 nm to 429 nm. The\nBC-408 and EJ-200 have the highest transmittance values of about 90% at the\nmaximum emission wavelength measured through a 6 mm thick scintillator strip\nand the highest technical attenuation length reaching about 2000 mm, allowing\nassembly of long detection modules for time-of-flight (TOF) J-PET scanners.\nInfluence of the 6 mm x 6 mm, 12 mm x 6 mm, 24 mm x 6 mm cross-sections of the\n1000 mm long EJ-200 plastic scintillator on the TAL and signal intensity was\nmeasured. The highest TAL value was determined for samples with 24 mm x 6 mm\ncross-section.","PeriodicalId":501374,"journal":{"name":"arXiv - PHYS - Instrumentation and Detectors","volume":"51 1","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2024-07-28","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Comparative studies of plastic scintillator strips with high technical attenuation length for the total-body J-PET scanner\",\"authors\":\"L. Kaplon, J. Baran, N. Chug, A. Coussat, C. Curceanu, E. Czerwinski, M. Dadgar, K. Dulski, J. Gajewski, A. Gajos, B. Hiesmayr, E. Kavya Valsan, K. Klimaszewski, G. Korcyl, T. Kozik, W. Krzemien, D. Kumar, G. Moskal, S. Niedzwiecki, D. Panek, S. Parzych, E. Perez del Rio, L. Raczynski, A. Rucinski, S. Sharma, S. Shivani, R. Shopa, M. Silarski, M. Skurzok, E. Stepien, F. Tayefi Ardebili, K. Tayefi Ardebili, W. Wislicki, P. 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The TAL values were determined with the use of UV lamp\\nas excitation source, and photodiode as light detector. Emission spectra of\\ninvestigated scintillators have maxima in the range from 420 nm to 429 nm. The\\nBC-408 and EJ-200 have the highest transmittance values of about 90% at the\\nmaximum emission wavelength measured through a 6 mm thick scintillator strip\\nand the highest technical attenuation length reaching about 2000 mm, allowing\\nassembly of long detection modules for time-of-flight (TOF) J-PET scanners.\\nInfluence of the 6 mm x 6 mm, 12 mm x 6 mm, 24 mm x 6 mm cross-sections of the\\n1000 mm long EJ-200 plastic scintillator on the TAL and signal intensity was\\nmeasured. 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引用次数: 0
摘要
塑料闪烁体条带被认为是经济高效地构建全身正电子发射断层扫描(PET)系统的理想解决方案之一。本次测量的目的是比较尺寸为 6 毫米 x 24 毫米 x 1000 毫米且所有表面均抛光的长塑料闪烁体的透明度。测试了六种不同类型的商用、通用、低可见光衰减蓝色发光塑料闪烁体,即:聚乙烯甲苯基 BC-408、EJ-200、RP-408 和聚苯乙烯基 Epic、SP32 和 UPS-923A。为了确定用于制造全身雅盖隆正电子发射断层显像仪(TB-J-PET)的最佳塑料闪烁体类型,对闪烁体发射的蓝光的发射和透射光谱以及技术衰减长度(TAL)进行了测量和比较。TAL 值是在使用紫外灯作为激发光源和光电二极管作为光检测器的情况下测定的。所研究闪烁体的发射光谱最大值在 420 纳米到 429 纳米之间。通过 6 毫米厚的闪烁体条带测量,BC-408 和 EJ-200 在最大发射波长处的透射率最高,约为 90%,技术衰减长度最高,约为 2000 毫米,因此可以为飞行时间(TOF)J-PET 扫描仪组装长检测模块。横截面为 24 毫米 x 6 毫米的样品的 TAL 值最高。
Comparative studies of plastic scintillator strips with high technical attenuation length for the total-body J-PET scanner
Plastic scintillator strips are considered as one of the promising solutions
for the cost-effective construction of total-body positron emission tomography,
(PET) system. The purpose of the performed measurements is to compare the
transparency of long plastic scintillators with dimensions 6 mm x 24 mm x 1000
mm and with all surfaces polished. Six different types of commercial, general
purpose, blue-emitting plastic scintillators with low attenuation of visible
light were tested, namely: polyvinyl toluene-based BC-408, EJ-200, RP-408, and
polystyrene-based Epic, SP32 and UPS-923A. For determination of the best type
of plastic scintillator for totalbody Jagiellonian positron emission tomograph
(TB-J-PET) construction, emission and transmission spectra, and technical
attenuation length (TAL) of blue light-emitting by the scintillators were
measured and compared. The TAL values were determined with the use of UV lamp
as excitation source, and photodiode as light detector. Emission spectra of
investigated scintillators have maxima in the range from 420 nm to 429 nm. The
BC-408 and EJ-200 have the highest transmittance values of about 90% at the
maximum emission wavelength measured through a 6 mm thick scintillator strip
and the highest technical attenuation length reaching about 2000 mm, allowing
assembly of long detection modules for time-of-flight (TOF) J-PET scanners.
Influence of the 6 mm x 6 mm, 12 mm x 6 mm, 24 mm x 6 mm cross-sections of the
1000 mm long EJ-200 plastic scintillator on the TAL and signal intensity was
measured. The highest TAL value was determined for samples with 24 mm x 6 mm
cross-section.