Letteratura scientifica selezionata sul tema "Caméra TEMP CzT 360°"
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Articoli di riviste sul tema "Caméra TEMP CzT 360°"
Piatkova, Y., P. Payoux, C. Boursier, P. Gantet, M. Bordonné, V. Roch, L. Imbert e A. Verger. "Comparaison de l’imagerie TEMP au 123I-FP-CIT obtenue avec une caméra CZT 360° et une caméra conventionnelle : étude prospective". Médecine Nucléaire 45, n. 4 (luglio 2021): 182. http://dx.doi.org/10.1016/j.mednuc.2021.06.021.
Testo completoBlanc, P., E. Cassol, E. Ouhayoun e P. Payoux. "Gamma caméra CZT 360° VERITON-CT : expérience toulousaine". Médecine Nucléaire 45, n. 4 (luglio 2021): 240–44. http://dx.doi.org/10.1016/j.mednuc.2021.06.001.
Testo completoEsnault, M., D. Legallois, P. Richard, D. Agostini e A. Manrique. "Évaluation des artefacts et des faux positifs de la TEMP myocardique sur caméra CZT D-SPECT". Médecine Nucléaire 47, n. 2 (marzo 2023): 53. http://dx.doi.org/10.1016/j.mednuc.2023.01.028.
Testo completoEsnault, M., D. Legallois, P. Richard, D. Agostini e A. Manrique. "Facteurs prédictifs de la positivité de la TEMP de perfusion myocardique sur caméra CZT D-SPECT chez des patients adressés pour l’évaluation de la perfusion coronaire". Médecine Nucléaire 47, n. 2 (marzo 2023): 53. http://dx.doi.org/10.1016/j.mednuc.2023.01.029.
Testo completod’Estanque, E., C. Hedon, B. Lattuca, A. Bourdon, M. Benkiran, D. De Verbizier, D. Ilonca, E. Barbotte, F. Roubille e D. Mariano-Goulart. "Optimisation de la TEMP myocardique double isotope 201Tl/123I-MIBG sur caméra CZT dans l’exploration des zones gâchettes post-infarctus : les acquisitions tardives et la correction du diffusé sont-elles nécessaires ?" Médecine Nucléaire 39, n. 3 (maggio 2015): 208. http://dx.doi.org/10.1016/j.mednuc.2015.03.010.
Testo completoTesi sul tema "Caméra TEMP CzT 360°"
Desmonts, Cedric. "Apport des technologies TEMP et TEP numériques en médecine nucléaire dans le domaine de l’oncologie clinique et préclinique". Electronic Thesis or Diss., Normandie, 2023. http://www.theses.fr/2023NORMC429.
Testo completoIn recent years, nuclear medicine has undergone significant technological advances with the introduction of digital cameras based on the use of semiconductor detectors. In single-photon emission computed tomography (SPECT), this technology was first introduced on dedicated cardiac CzT cameras. More recently, 360° CzT cameras with extended field-of-view have been developed to enable whole-body tomographic explorations. Similarly, the cameras used in positron emission tomography (PET) have undergone a transition to digital technologies thanks to the use of new SiPM-based detectors. This work has allowed for the evaluation of the performance of these digital SPECT and PET cameras in nuclear medicine, within the field of clinical and preclinical oncology. We have thus demonstrated the improvements in sensitivity, energy resolution, and image contrast achieved through the use of 360° CzT cameras compared to conventional Anger cameras. Additionally, we demonstrated the feasibility of using this type of camera developed for humans, to perform preclinical imaging in small animals. Furthermore, we have evaluated SiPM-based PET cameras using phantoms for potential preclinical applications. We have thus measured performance approaching that obtained with dedicated microPET cameras, enabling simultaneous imaging of four animals, and demonstrated the ability to perform accurate quantification in preclinical oncology