Evaluation of 3D Printed Anthropomorphic Head Phantom for Calibration of TLD in Eye Lens Dosimeter

被引:0
|
作者
Endarko E. [1 ]
Pitaloka A.W. [1 ]
Inayah A.A. [1 ]
Ramadhan F.R. [1 ]
Kardianto K. [2 ]
Rahayuningsih B. [2 ]
机构
[1] Department of Physics, Institut Teknologi Sepuluh Nopember, Kampus ITS-Sukolilo, East Java, Surabaya
[2] Balai Pengamanan Fasilitas Kesehatan Gubeng, East Java, Surabaya
来源
关键词
Calibration; Dosimetry; Phantom; Radiation; Thermoluminescent Dosimetry;
D O I
10.31661/jbpe.v0i0.2109-1401
中图分类号
学科分类号
摘要
Background: Calibration of Thermo Luminescent Dosimetry (TLD) in eye lens dosimeter requires a standard phantom. The use of anthropomorphic phantoms in calibration needs evaluation. Objective: This study aimed to analyze the angular response of the TLD on the fabricated 3D anthropomorphic head phantom and Computerized Imaging Reference Systems (CIRS)-Computed Tomography (CT) dose phantom as a standard phantom irradiated with Cs-137 and to compare the absorbed dose and linear attenuation for both phantoms. Hp (3) analysis, conversion coefficient (hpK (3)), and calibration factor (CF) are also investigated. Material and Methods: In this experimental study, the fabricated 3D printed anthropomorphic head phantom was analyzed using polylactic acid (PLA) with the skull and then filled with the artificial brain and cerebrospinal fluid (CSF) as a test phantom. TLD-700H and TLD Reader Harshaw 6600 plus were used to analyze the angular response of Cs-137 radiation and to determine the absorbed dose and linear attenuation coefficient of test and standard phantoms. Results: The effect of the angle of radiation source towards TLD reading at the anthropomorphic head phantom has a similar value to the standard phantom with a calibration factor ranging from 0.82 to 1. The absorbed dose measurement and the linear attenuation coefficient of the anthropomorphic head phantom with the standard phantom have different values of 2.52 and 3.78%, respectively. Conclusion: The fabricated 3D printed anthropomorphic head phantom has good potential as an alternative to standard phantoms for TLD calibration in eye lens do-simeter. © 2023, Shiraz University of Medical Sciences. All rights reserved.
引用
收藏
页码:193 / 202
页数:9
相关论文
共 50 条
  • [31] 3D Printed Rotman Lens
    Hoel, Karina Vieira
    Kristoffersen, Stein
    Jastram, Nathan
    Filipovic, Dejan S.
    2017 47TH EUROPEAN MICROWAVE CONFERENCE (EUMC), 2017, : 125 - 128
  • [32] An Improved 3D Printed Cardiac Phantom
    Grice, Jared
    Green, Samantha
    Yuhas, Abigail
    JOURNAL OF NUCLEAR MEDICINE, 2020, 61
  • [33] Utilisation of 3D Printing in the Manufacturing of an Anthropomorphic Paediatric Head Phantom for the Optimisation of Scanning Parameters in CT
    Jusufbegovic, Merim
    Pandzic, Adi
    Busuladzic, Mustafa
    Civa, Lejla M.
    Gazibegovic-Busuladzic, Azra
    Sehic, Adnan
    Vegar-Zubovic, Sandra
    Jasic, Rahima
    Beganovic, Adnan
    DIAGNOSTICS, 2023, 13 (02)
  • [34] FlexyDos3D: a deformable anthropomorphic 3D radiation dosimeter: radiation properties
    De Deene, Y.
    Skyt, P. S.
    Hil, R.
    Booth, J. T.
    PHYSICS IN MEDICINE AND BIOLOGY, 2015, 60 (04): : 1543 - 1563
  • [35] A 3D Printing-based Realistic Anthropomorphic Dental Phantom and its imaging Evaluation
    Lee, Do Il
    Yang, Zepa
    Kim, Jong Hyo
    INTERNATIONAL FORUM ON MEDICAL IMAGING IN ASIA 2019, 2019, 11050
  • [36] A 3D Printing-based Realistic Anthropomorphic Dental Phantom and its imaging Evaluation
    Lee, Do Il
    Yang, Zepa
    Kim, Jong Hyo
    MEDICAL IMAGING 2019: IMAGING INFORMATICS FOR HEALTHCARE, RESEARCH, AND APPLICATIONS, 2019, 10954
  • [37] Elekta Hounsfield Unit Calibration and 3D Printed Phantom for CBCT-Based Dose
    Baron, June Cheng
    Neath, Catherine
    MEDICAL PHYSICS, 2024, 51 (08) : 5813 - 5814
  • [38] CT phantom with 3D anthropomorphic, contrast-enhanced texture
    Pegues, Hope
    Tong, Huayu
    Wiley, Benjamin J.
    Samei, Ehsan
    Lo, Joseph Y.
    MEDICAL IMAGING 2020: PHYSICS OF MEDICAL IMAGING, 2020, 11312
  • [39] Making a copy of conventional anthropomorphic phantom section by 3D printing
    Stuchebrov, S.
    Bulavskaya, A.
    Cherepennikov, Y.
    Grigorieva, A.
    Miloichikova, I.
    Gargioni, E.
    EUROPEAN JOURNAL OF NUCLEAR MEDICINE AND MOLECULAR IMAGING, 2020, 47 (SUPPL 1) : S313 - S314
  • [40] Progress Toward the Development of a Deformable Anthropomorphic 3D Dosimetric Phantom
    Juang, T.
    Das, S.
    Adamovics, J.
    Oldham, M.
    MEDICAL PHYSICS, 2013, 40 (06)