Mostrando 141 - 156 Resultados de 156 Para Buscar '"Paul Scherrer"', tiempo de consulta: 0.82s Limitar resultados
  1. 141
    “…Thulium-167 production yield was also measured irradiating five different target materials ((167) Er (2) O (3), (168) Er (2) O (3), ( nat ) Tm (2) O (3), ( nat ) Yb (2) O (3), (171) Yb (2) O (3)) with proton beams up to 63 MeV at the Injector II cyclotron of Paul Scherrer Institute. Results and Discussion: Our experiments showed that an 8-h irradiation of enriched ytterbium-171 oxide produced about 420 MBq of thulium-167 with a radionuclidic purity of 99.95% after 5 days of cooling time with a proton beam of about 53 MeV. …”
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  2. 142
  3. 143
    por Zander, Anette
    Publicado 2001
    “…To test the radiation hardness of the 18 modules, they were taken to the the Paul Scherrer Institut to be irradiated for 376 hours under LHC-like conditions in the so-called 'mf2 milestone'. 16 of the detectors were found to be of good quality and were chosen to participate in the milestone. …”
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  4. 144
    por Altmannshofer, W., Gori, S., Godoy, M., Grillo, A., Mazza, S., Ott, J., Schumm, B., Seiden, A., Tarka, M., Binney, H., Garcia, A., Hertzog, D., Hodge, Z., Kammel, P., LaBounty, J., Roehnelt, R., Blucher, E., Bryman, D., Chen, S., Cirigliano, V., Corrodi, S., Hernandez, C. Ortega, Cuen-Rochin, S., Czarnecki, A., DiCanto, A., Jaffe, D., Kettel, S., Tischenko, V., Tricoli, A., Worcester, E., Doria, L., Gorchtein, M., Ries, D., Gaponenko, A., Kiburg, B., Mott, J., Polly, C., Gibbons, L., Labe, K., Glaser, C., Počanić, D., Gorringe, T., Hoferichter, M., Ito, S., Mihara, S., Iwamoto, T., Mori, T., Ootani, W., Wataru, T., Langenegger, U., Schwendimann, P., Langenegger, U., Malbrunot, C., Mischke, R., Numao, T., Pachal, K., Sher, A., Velghe, B., Wong, V., Soter, A., Shrock, R., Sullivan, T.
    Publicado 2022
    “…The experiment design benefits from experience with the recent PIENU and PEN experiments at TRIUMF and the Paul Scherrer Institut (PSI). Excellent energy and time resolutions, greatly increased calorimeter depth, high-speed detector and electronics response, large solid angle coverage, and complete event reconstruction are all critical aspects of the approach. …”
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  5. 145
    “…In this retrospective study, we assess the clinical outcome including the quality of life (QoL) of patients with intracranial meningiomas treated with PBS PT between 1997 and 2022 at the Centre for Proton Therapy of the Paul Scherrer Institute. In 200 patients, we observed a high local control and survival, especially in patients with grade 1 tumors as well as a low rate of high-grade toxicity and stable QoL over the years after treatment. …”
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  6. 146
    “…The chemical separation was performed at Paul Scherrer Institute using chromatographic methods, as previously reported. (152)Tb was employed for labeling PSMA-617, and the radioligand was extensively investigated in vitro to demonstrate similar characteristics to its (177)Lu-labeled counterpart. …”
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  7. 147
    “…METHODS: Between 1997–2018, 176 AYAs were treated with PT at the Paul Scherrer Institute. Median age was 30 years (range, 15–39) and the male/female ratio was 0.8. …”
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  8. 148
    “…Material and Methods: A retrospective, comparative study was conducted in UM patients who underwent PT at the Ocular Oncology Unit of the Jules-Gonin Eye Hospital (University of Lausanne, Lausanne, Switzerland) and the Paul Scherrer Institute (PSI); (Villigen, Switzerland) between January 1997 and December 2007. …”
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  9. 149
  10. 150
    “…This was analyzed for the first time for its elemental composition by using the non-destructive technique of Muon Induced X-ray Emission (MIXE) in the continuous muon beam facility at the Paul Scherrer Institute (PSI). In the present work, the detection limit is 0.4 wt% with [Formula: see text] 1.5 hours of measurement time. …”
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  11. 151
    por Guerrero, C, Lerendegui-Marco, J, Paul, M, Tessler, M, Heinitz, S, Domingo-Pardo, C, Cristallo, S, Dressler, R, Halfon, S, Kivel, N, Köster, U, Maugeri, E A, Palchan-Hazan, T, Quesada, J M, Rochman, D, Schumann, D, Weissman, L, Aberle, O, Amaducci, S, Andrzejewski, J, Audouin, L, Bécares, V, Bacak, M, Balibrea, J, Barak, A, Barbagallo, M, Barros, S, Bečvář, F, Beinrucker, C, Berkovits, D, Berthoumieux, E, Billowes, J, Bosnar, D, Brugger, M, Buzaglo, Y, Caamaño, M, Calviño, F, Calviani, M, Cano-Ott, D, Cardella, R, Casanovas, A, Castelluccio, D M, Cerutti, F, Chen, Y H, Chiaveri, E, Colonna, N, Cortés, G, Cortés-Giraldo, M A, Cosentino, L, Dafna, H, Damone, A, Diakaki, M, Dietz, M, Dupont, E, Durán, I, Eisen, Y, Fernández-Domínguez, B, Ferrari, A, Ferreira, P, Finocchiaro, P, Furman, V, Göbel, K, García, A R, Gawlik, A, Glodariu, T, Gonçalves, I F, González-Romero, E, Goverdovski, A, Griesmayer, E, Gunsing, F, Harada, H, Heftrich, T, Heyse, J, Hirsh, T, Jenkins, D G, Jericha, E, Käppeler, F, Kadi, Y, Kaizer, B, Katabuchi, T, Kavrigin, P, Ketlerov, V, Khryachkov, V, Kijel, D, Kimura, A, Kokkoris, M, Kriesel, A, Krtička, M, Leal-Cidoncha, E, Lederer-Woods, C, Leeb, H, Lo Meo, S, Lonsdale, S J, Losito, R, Macina, D, Manna, A, Marganiec, J, Martínez, T, Massimi, C, Mastinu, P, Mastromarco, M, Matteucci, F, Mendoza, E, Mengoni, A, Milazzo, P M, Millán-Callado, M A, Mingrone, F, Mirea, M, Montesano, S, Musumarra, A, Nolte, R, Oprea, A, Patronis, N, Pavlik, A, Perkowski, J, Piersanti, L, Porras, I, Praena, J, Rajeev, K, Rauscher, T, Reifarth, R, Rodríguez-González, T, Rout, P C, Rubbia, C, Ryan, J A, Sabaté-Gilarte, M, Saxena, A, Schillebeeckx, P, Schmidt, S, Shor, A, Sedyshev, P, Smith, A G, Stamatopoulos, A, Tagliente, G, Tain, J L, Tarifeño-Saldivia, A, Tassan-Got, L, Tsinganis, A, Valenta, S, Vannini, G, Variale, V, Vaz, P, Ventura, A, Vlachoudis, V, Vlastou, R, Wallner, A, Warren, S, Weigand, M, Weiss, C, Wolf, C, Woods, P J, Wright, T, Žugec, P
    Publicado 2020
    “…In this work, following the production for the first time of more than 5 mg of Tm171 at the high-flux reactor Institut Laue-Langevin in France, a sample was produced at the Paul Scherrer Institute in Switzerland. Two complementary experiments were carried out at the neutron time-of-flight facility (n_TOF) at CERN in Switzerland and at the SARAF liquid lithium target facility at Soreq Nuclear Research Center in Israel by time of flight and activation, respectively. …”
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  12. 152
  13. 153
    “…Crucial part of the upgrade is the new readout chip (ROC) for the silicon sensor, psi46digV2respin, designed at the Paul Scherrer Institute (PSI) with a 250 nm CMOS technology. …”
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  14. 154
    “…The aim of this retrospective study was to report the clinical and patient-reported outcomes of a cohort of 10 children and adolescents with intracranial meningioma treated with Pencil Beam Scanning Proton Therapy (PBS-PT) at the Paul Scherrer Institute between 1996 and 2022. The local control rates at three and five years were modest, yet overall survival remained excellent. …”
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  15. 155
    por Fernandes, Sandrina
    Publicado 2010
    “…Materials such as SiC, Al2O3, Y2O3, C and Ta in a variety of forms were irradiated at the 72 MeV proton irradiation station of injector 1 at PSI (Paul Scherrer Institute). The effects of radiation damage on these materials were evaluated from microstructure and chemical analyses before and after irradiation by visual inspection, gamma spectroscopy, scanning electronic microscopy and electron dispersive X-ray analysis on a case-by-case basis. …”
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  16. 156
    por Piwek, Mateusz
    Publicado 2017
    “…The software chose by the collaboration for logbook keeping is devel- oped at Swiss Paul Scherrer Institut program „ Elog”. The web based application called „ ElogLooker” developed as a part of my master thesis extends the Elog by a data statistics presentation functionality. 4 / 5 3. …”
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