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– Development of a novel concept of efficient superconducting magnet for radioisotope production Cyclotron.

Development of a novel concept of efficient superconducting magnet for radioisotope production Cyclotron. Javier Munilla López, Dr. Fernando Toral Fernández, Dr. Mario Castro Ponce… Radioisotopes are nowadays extensively used in several applications, including material science, industry or nuclear medicine. In the specific case of nuclear medicine, radioisotopes play an essential role which can be classified …

– Development of a novel concept of efficient superconducting magnet for radioisotope production Cyclotron. Leer más »

– Validation test of the forced-flow cooling concept for the superconducting magnet of AMIT Cyclotron.

Validation test of the forced-flow cooling concept for the superconducting magnet of AMIT Cyclotron. Javier Munilla, Pablo Abramian, Jesus Calero, Luis García-Tabarés, Jose L. Gutierrez… Advanced Molecular Imaging Techniques cyclotron is a compact device aimed to produce radioisotopes for medical imaging. A uniform 4-T field is created by means of two NbTi coils in a …

– Validation test of the forced-flow cooling concept for the superconducting magnet of AMIT Cyclotron. Leer más »

– Fabrication and tests of a RF Cavity for a novel compact superconducting Cyclotron for a radioisotope production*.

Fabrication and test of a RF cavity for a novel compact superconducting Cyclotron for radioisotope production*. D. Gavela†, J. Calero, L. García-Tabarés, P. Gómez, D. López, D. Obradors-Campos… The AMIT cyclotron will be a 8.5 MeV, 10 μA, CW, H- accelerator for radioisotope production, including a superconducting, weak focusing, 4 T magnet, allowing for a …

– Fabrication and tests of a RF Cavity for a novel compact superconducting Cyclotron for a radioisotope production*. Leer más »

– Optimizing the radioisotope production with a weak focusing compact Cyclotron*.

Optimizing the radioisotope production with a weak focusing compact Cyclotron*. C. Oliver, P. Abramian, B. Ahedo, P. Arce, J.M. Barcala, J. Calero, E. Calvo… A classical weak focusing cyclotron can result in a simple and compact design for the radioisotope production for medical applications. Two main drawbacks arise from this type of machine. The energy …

– Optimizing the radioisotope production with a weak focusing compact Cyclotron*. Leer más »

– Cold tests and magnetic characterization of a superconducting magnet for a compact Cyclotron for radioisotope production.

Cold tests and magnetic characterization of a superconducting magnet for a compact Cyclotron for radioisotope production. Javier Munilla , Pablo Abramian, Miguel J. Barcala, Jesus Calero, Manuel Domínguez… Abstract—A superconducting magnet able to provide the required field of 4 T has been developed for a compact cyclotron to produce radioisotopes for medical imaging, in the …

– Cold tests and magnetic characterization of a superconducting magnet for a compact Cyclotron for radioisotope production. Leer más »

– Characterization of the AMIT internal ion source with a devoted dc extraction test bench*

Characterization of the AMIT internal ion source with a devoted dc extraction test bench*. D. Obradors†, M.B. Ahedo, P. Arce, J.M. Barcala, J. Calero, P. Calvo… With the main aim of a compact machine for 18F and 11C radioisotope production, AMIT cyclotron relies on a superconducting 4T magnet with an internal cold cathode PIG ion …

– Characterization of the AMIT internal ion source with a devoted dc extraction test bench* Leer más »

– Beam diagnostics design for a compact superconducting Cyclotron for radioisotope production*

Beam diagnostics design for a compact superconducting Cyclotron for radioisotope production*. R. Varela†, P. Abramian, J. Calero, P. Calvo, M. Domínguez, A. Estévez… The aim of the AMIT cyclotron is to deliver an 8.5 MeV, 10 μA CW proton beam to a target to produce radioisotopes for PET diagnostics. Such a small cyclotron poses some …

– Beam diagnostics design for a compact superconducting Cyclotron for radioisotope production* Leer más »

– Beam diagnostics for commissioning and operation of a novel compact Cyclotron for radioisotope production*

Beam diagnostics for commissioning and operation of a novel compact Cyclotron for radioisotope production* I. Podadera†, B. Ahedo, P. Arce, L. García-Tabares, D. Gavela… The AMIT cyclotron will be a 8.5 MeV, 10 μA CW H− accelerator which aims to deliver a beam for radioisotope production. In order to properly validate all the beam commissioning …

– Beam diagnostics for commissioning and operation of a novel compact Cyclotron for radioisotope production* Leer más »

– Calculation and design of a RF cavity for a novel compact superconducting Cyclotron for radioisotope production (AMIT)*

Calculation and design of a RF cavity for a novel compact superconducting Cyclotron for radioisotope production (AMIT)* D. Gavela, J. Calero, L. García-Tabarés, A. Guirao, D. Obradors-Campos… The AMIT (Advanced Molecular Imaging Techniques) cyclotron will be a 8.5 MeV, 10 μA, CW, H- accelerator for the purpose of radioisotope production. It includes a superconducting, weak …

– Calculation and design of a RF cavity for a novel compact superconducting Cyclotron for radioisotope production (AMIT)* Leer más »

– The present paper describes the development process of a low critical temperature superconducting magnet to be in- stalled in a compact cyclotron producing single-dose radioisotopes for clinical and preclinical applications.

Development of a superconducting magnet for acompact Cyclotron for radioisotope production. Luis García-Tabarés, Pablo Abramian, Jesús Calero, José L. Gutiérrez… The present paper describes the development process of a low critical temperature superconducting magnet to be installed in a compact cyclotron producing single-dose radioisotopes for clinical and preclinical applications. DOWNLOAD FULL PDF Comments Cyclomed Technologies Applications …

– The present paper describes the development process of a low critical temperature superconducting magnet to be in- stalled in a compact cyclotron producing single-dose radioisotopes for clinical and preclinical applications. Leer más »