Article
Open Access
Radiotracers for SPECT imaging: current scenario and future prospects
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Sudeshna Adak
, R. Bhalla , K. K. Vijaya Raj , S. Mandal , R. Pickett and S. K. Luthra
Published/Copyright:
January 16, 2012
Published Online: 2012-01-16
Published in Print: 2012-02
© by Oldenbourg Wissenschaftsverlag, Bangalore, 560066, Germany
Articles in the same Issue
- Preface
- Superheavy elements at GSI: a broad research program with element 114 in the focus of physics and chemistry
- Nuclear structure and reaction studies near doubly magic 270Hs
- Recent developments in nuclear data measurements and chemical separation methods in accelerator production of astatine and technetium radionuclides
- Radiotracers for SPECT imaging: current scenario and future prospects
- Recoil and conversion electron considerations of the 166Dy/166Ho in vivo generator
- Emergence and present status of Lu-177 in targeted radiotherapy: the Indian scenario
- Nuclear radioactive techniques applied to materials research
- Applications of thin layer activation technique for the measurement of surface loss of materials: an Indian perspective
- Surface and volume characterization of TiO2 nanomaterials by 44Ti time differential perturbed angular correlation
Keywords for this article
Nuclear medicine;
99m-Technetium;
123-Iodine;
Oncological imaging;
Neurological imaging
Articles in the same Issue
- Preface
- Superheavy elements at GSI: a broad research program with element 114 in the focus of physics and chemistry
- Nuclear structure and reaction studies near doubly magic 270Hs
- Recent developments in nuclear data measurements and chemical separation methods in accelerator production of astatine and technetium radionuclides
- Radiotracers for SPECT imaging: current scenario and future prospects
- Recoil and conversion electron considerations of the 166Dy/166Ho in vivo generator
- Emergence and present status of Lu-177 in targeted radiotherapy: the Indian scenario
- Nuclear radioactive techniques applied to materials research
- Applications of thin layer activation technique for the measurement of surface loss of materials: an Indian perspective
- Surface and volume characterization of TiO2 nanomaterials by 44Ti time differential perturbed angular correlation