Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

PENENTUAN KEMURNIAN RADIONUKLIDA DARI PRODUK GENERATOR Mo-99/Tc-99m NON-FISI MENGGUNAKAN SPEKTROMETER GAMMA

View through CrossRef
The medical radionuclide technetium-99m (Tc-99m) is the type of radionuclide that is most widely used in diagnostic processes in the world of nuclear medicine. This is related to its characteristic of having a half-life of 6 hours and releasing a single gamma energy (E ) of 140 keV. Tc-99m is a product of the Mo-99/ Tc-99m generator and is a decay child of molybdenum-99 (Mo-99) which has a half-life of 66 hours. The Mo-99  radionuclide can be produced via a neutron activation reaction which requires the non-fission natural target molybdenum trioxide (MoO3) as a target in a nuclear reactor, so it is called a non-fission Mo-99/Tc-99m generator. The aim of this research is to determine the purity value of the Tc-99m product from the non-fission Mo-99/Tc-99m generator using the gamma spectrometer method. This is done by analyzing the energy and efficiency calibration of the gamma spectrometer using a liquid standard source (Liquid Source) of a mixture of Ba-133  and Eu-152, and a point standard source (Point Source) of Eu-152, according to the geometry for the measurements of Mo-99 breakthrough and Tc-99m products respectively for each three-generator elution process. The neutron activation process of natural molybdenum (MoO3) was carried out in the nuclear reactor G.A. Siwabessy, Indonesia. The purity of the Tc-99m  product radionuclide from the non-fission Mo-99/Tc-99m generator was obtained at 99.999% for each elution while the largest Mo-99 breakthrough was 0,0018 µCi Mo-99/mCi Tc-99m and the lowest was 1,04 x 10-4 µCi Mo-99/mCi Tc-99m. The Mo-99 breakthrough results obtained were below the value of 0,15 µCi Mo-99/mCi Tc-99m set by the US Pharmacopoeia, so the resulting product of Tc-99m was good, and showed that the product could be used for the labeling process to become a radiopharmaceutical. This radionuclide purity measurement method can be used to determine quality control parameters for non-fission Mo-99/Tc-99m generator products.
Title: PENENTUAN KEMURNIAN RADIONUKLIDA DARI PRODUK GENERATOR Mo-99/Tc-99m NON-FISI MENGGUNAKAN SPEKTROMETER GAMMA
Description:
The medical radionuclide technetium-99m (Tc-99m) is the type of radionuclide that is most widely used in diagnostic processes in the world of nuclear medicine.
This is related to its characteristic of having a half-life of 6 hours and releasing a single gamma energy (E ) of 140 keV.
Tc-99m is a product of the Mo-99/ Tc-99m generator and is a decay child of molybdenum-99 (Mo-99) which has a half-life of 66 hours.
The Mo-99  radionuclide can be produced via a neutron activation reaction which requires the non-fission natural target molybdenum trioxide (MoO3) as a target in a nuclear reactor, so it is called a non-fission Mo-99/Tc-99m generator.
The aim of this research is to determine the purity value of the Tc-99m product from the non-fission Mo-99/Tc-99m generator using the gamma spectrometer method.
This is done by analyzing the energy and efficiency calibration of the gamma spectrometer using a liquid standard source (Liquid Source) of a mixture of Ba-133  and Eu-152, and a point standard source (Point Source) of Eu-152, according to the geometry for the measurements of Mo-99 breakthrough and Tc-99m products respectively for each three-generator elution process.
The neutron activation process of natural molybdenum (MoO3) was carried out in the nuclear reactor G.
A.
Siwabessy, Indonesia.
The purity of the Tc-99m  product radionuclide from the non-fission Mo-99/Tc-99m generator was obtained at 99.
999% for each elution while the largest Mo-99 breakthrough was 0,0018 µCi Mo-99/mCi Tc-99m and the lowest was 1,04 x 10-4 µCi Mo-99/mCi Tc-99m.
The Mo-99 breakthrough results obtained were below the value of 0,15 µCi Mo-99/mCi Tc-99m set by the US Pharmacopoeia, so the resulting product of Tc-99m was good, and showed that the product could be used for the labeling process to become a radiopharmaceutical.
This radionuclide purity measurement method can be used to determine quality control parameters for non-fission Mo-99/Tc-99m generator products.

Related Results

RADIONUCLIDE CHARACTERISTICS OF RDE SPENT FUELS
RADIONUCLIDE CHARACTERISTICS OF RDE SPENT FUELS
Reaktor Daya Eksperimental (RDE) is a 10 MWth pebble-bed High Temperature Gas-cooled Reactor that is planned to be constructed by National Nuclear Energy Agency of Indonesia (BATAN...
L᾽«unilinguisme» officiel de Constantinople byzantine (VIIe-XIIe s.)
L᾽«unilinguisme» officiel de Constantinople byzantine (VIIe-XIIe s.)
&nbsp; <p>&Nu;ί&kappa;&omicron;&sigmaf; &Omicron;&iota;&kappa;&omicron;&nu;&omicron;&mu;ί&delta;&eta;&sigmaf;</...
North Syrian Mortaria and Other Late Roman Personal and Utility Objects Bearing Inscriptions of Good Luck
North Syrian Mortaria and Other Late Roman Personal and Utility Objects Bearing Inscriptions of Good Luck
<span style="font-size: 11pt; color: black; font-family: 'Times New Roman','serif'">&Pi;&Eta;&Lambda;&Iota;&Nu;&Alpha; &Iota;&Gamma;&Delta...
Proteksi Radiasi Pada Terapi Radionuklida
Proteksi Radiasi Pada Terapi Radionuklida
Terapi radionuklida merupakan salah satu pemanfaatan sumber radiasi, yang juga disebut sebagai radionuklida, di bidang medis. Sumber radionuklida tersebut diikat kuat dengan suatu ...
Functional comparison of Fc epsilon RI, Fc gamma RII, and Fc gamma RIII in mast cells
Functional comparison of Fc epsilon RI, Fc gamma RII, and Fc gamma RIII in mast cells
Abstract The cellular responses initiated by cross-linking rodent Fc gamma RII-b1, Fc gamma RII-b2, Fc gamma RIII, and Fc epsilon RI in mast cells were compared. Ind...
Analisa Pengaruh Tegangan Harmonik Terhadap Regulasi Tegangan Eksitasi Generator Satu Fasa
Analisa Pengaruh Tegangan Harmonik Terhadap Regulasi Tegangan Eksitasi Generator Satu Fasa
Esensinya setiap generator listrik satu fasa maupun tiga fasa telah dilengkapi dengan sistem eksitasi. Sistem eksitasi generator ada tiga, yaitu sistem eksitasi statis, dinamis, da...

Back to Top