Radionuclides of very high specific activity A(S)(t) have great relevance for applications in the life sciences. Updated definitions of A(S) are given. The real A(S)(t) must be measured by analytical and radioanalytical techniques. No-carrier-added (NCA) radionuclides have A(S)(NCA) sometimes close to the carrier-free (CF) value A(S)(CF). The accurate knowledge of excitation functions of nuclear reactions vs. ion beam energy is mandatory to maximize A(S)(NCA); the minimization of isotopic dilution factor IDF(t) has been achieved too. A range of accelerator production and radioanalytical QC methods for A(S)(NCA) optimization and determination is presented
High specific activity radionuclides (HSARN) are a powerful tool to label a large range of chemistry...
This work reviews the more recent advances in this field carried out by the authors groups. High sp...
Low- and medium-energy accelerators and sometimes thermal nuclear reactor, allow production of very...
The use of High Specific Activity Radionuclides HSARNs, obtained by either proton, deuteron or alph...
The use of High Specific Activity Radionuclides HSARNs, obtained by either proton, deuteron or alpha...
The use of High Specific Activity Radiotracers, obtained by either proton or alpha cyclotron irradia...
A range of high specific activity accelerator-produced radionuclides in no-carrier-added (NCA) form,...
After the deployment of the “radiotracer technique” in the 1920s by the Hungarian born radiochemist ...
Selected results are presented and discussed concerning nuclear data relevant to the production of i...
Prodn. and quality assurance methods for short-lived and high specific activity radionuclides were d...
High sp. activity radionuclides are a powerful tool for labeling a large range of inorganic and orga...
High specific activity radiotracers, used in studies related to trace elements and human health, mus...
The use of radionuclides plays a crucial role in Life Science: this use is applied in nuclear medici...
In this paper are presented the production methods for very "high specific activity" radionuclides (...
The applications of the radionuclides play a fundamental role in life sciences; their greater user i...
High specific activity radionuclides (HSARN) are a powerful tool to label a large range of chemistry...
This work reviews the more recent advances in this field carried out by the authors groups. High sp...
Low- and medium-energy accelerators and sometimes thermal nuclear reactor, allow production of very...
The use of High Specific Activity Radionuclides HSARNs, obtained by either proton, deuteron or alph...
The use of High Specific Activity Radionuclides HSARNs, obtained by either proton, deuteron or alpha...
The use of High Specific Activity Radiotracers, obtained by either proton or alpha cyclotron irradia...
A range of high specific activity accelerator-produced radionuclides in no-carrier-added (NCA) form,...
After the deployment of the “radiotracer technique” in the 1920s by the Hungarian born radiochemist ...
Selected results are presented and discussed concerning nuclear data relevant to the production of i...
Prodn. and quality assurance methods for short-lived and high specific activity radionuclides were d...
High sp. activity radionuclides are a powerful tool for labeling a large range of inorganic and orga...
High specific activity radiotracers, used in studies related to trace elements and human health, mus...
The use of radionuclides plays a crucial role in Life Science: this use is applied in nuclear medici...
In this paper are presented the production methods for very "high specific activity" radionuclides (...
The applications of the radionuclides play a fundamental role in life sciences; their greater user i...
High specific activity radionuclides (HSARN) are a powerful tool to label a large range of chemistry...
This work reviews the more recent advances in this field carried out by the authors groups. High sp...
Low- and medium-energy accelerators and sometimes thermal nuclear reactor, allow production of very...