Muestra métricas de impacto externas asociadas a la publicación. Para mayor detalle:
| Indexado |
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| DOI | 10.1002/MRM.27830 | ||||
| Año | 2019 | ||||
| Tipo | artículo de investigación |
Citas Totales
Autores Afiliación Chile
Instituciones Chile
% Participación
Internacional
Autores
Afiliación Extranjera
Instituciones
Extranjeras
Conclusion: 3D Cartesian FISS is feasible and offers homogeneous intrinsic fat suppression for selected imaging parameters without the need for dedicated preparation pulses, making it a promising candidate for free-running fat-suppressed imaging.
| Ord. | Autor | Género | Institución - País |
|---|---|---|---|
| 1 | Kustner, Thomas | Hombre |
Kings Coll London - Reino Unido
King's College London - Reino Unido St Thomas' Hospital - Reino Unido |
| 2 | Bustin, Aurelien | Hombre |
Kings Coll London - Reino Unido
King's College London - Reino Unido St Thomas' Hospital - Reino Unido |
| 3 | Jaubert, Olivier | Hombre |
Kings Coll London - Reino Unido
King's College London - Reino Unido St Thomas' Hospital - Reino Unido |
| 4 | Neji, Radhouene | - |
Kings Coll London - Reino Unido
Siemens Healthcare Ltd - Reino Unido King's College London - Reino Unido Siemens Healthcare Limited - Reino Unido St Thomas' Hospital - Reino Unido |
| 5 | PRIETO-VASQUEZ, CLAUDIA DEL CARMEN | Mujer |
Kings Coll London - Reino Unido
Pontificia Universidad Católica de Chile - Chile King's College London - Reino Unido St Thomas' Hospital - Reino Unido |
| 6 | Botnar, Reneprime M. | Hombre |
Kings Coll London - Reino Unido
Pontificia Universidad Católica de Chile - Chile King's College London - Reino Unido St Thomas' Hospital - Reino Unido |
| Fuente |
|---|
| National Institutes of Health |
| EPSRC |
| Engineering and Physical Sciences Research Council |
| Wellcome EPSRC Centre for Medical Engineering |
| King's College London |
| King's College Hospital NHS Foundation Trust |
| Department of Health by National Institute for Health Research (NIHR) Cardiovascular Health Technology Cooperative (HTC) |
| Wellcome EPSRC Center for Medical Engineering |
| comprehensive Biomedical Research Centre |
| Sackler Institute for Translational Neurodevelopment, King's College London |
| National Institute for Health Research |
| Heart of England NHS Foundation Trust |
| NIHR Biomedical Research Centre, Royal Marsden NHS Foundation Trust/Institute of Cancer Research |
| King’s College London |
| Department of Health, Australian Government |
| King’s College London |
| Wellcome EPSRC |
| King’s College Hospital NHS Foundation Trust |
| Manchester Biomedical Research Centre |
| HTC |
| Cardiovascular Health Technology Cooperative |
| EPSRC Centre for Medical Engineering |
| EPSRC EP/P032311/1 |
| EPSRC Center for Medical Engineering |
| Agradecimiento |
|---|
| This work was supported by the following grants: (1) EPSRC EP/P032311/1, EP/P001009/1, and EP/P007619/1, (2) Wellcome EPSRC Center for Medical Engineering (NS/A000049/1), and (3) the Department of Health by means of the National Institute for Health Research (NIHR) Cardiovascular Health Technology Cooperative (HTC) and comprehensive Biomedical Research Centre awarded to Guy's & St Thomas' NHS Foundation Trust in partnership with King's College London and King's College Hospital NHS Foundation Trust. |
| This work was supported by the following grants: (1) EPSRC EP/P032311/1, EP/ P001009/1, and EP/P007619/1, (2) Wellcome EPSRC Center for Medical Engineering (NS/A000049/1), and (3) the Department of Health by means of the National Institute for Health Research (NIHR) Cardiovascular Health Technology Cooperative (HTC) and comprehensive Biomedical Research Centre awarded to Guy’s & St Thomas’ NHS Foundation Trust in partnership with King’s College London and King’s College Hospital NHS Foundation Trust. |