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IN SITU IMAGING OF LIVING TISSUES WITH CELLULAR SPATIAL RESOLUTION

Leistungen

Data Management Plan

This document will describe in detail the strategy to manage all the data produced in the project

Data Management Plan 3

Third version of the Data Management Plan 2

Data Management Plan 2

Second version of the Data Management Plan

Prototype of High Frequency Pulsed Power Supply Technology

This prototype will include all elements developed in the tasks 3.1 and 3.2 and will include the software to control the gradient and RF amplifier parameters

Prototype of the full magnet system

A full magnet system including the magnet and RF coils will be developed

Proof of Concept of new MRI Technology Built

This deliverable consists on the complete proof of concept system, that integrates all magnet systems, the pre-polarizer, the evolution field magnet, the gradients and the RF coils

Gender Action Plan

This document will include an analysis of the gender distribution within the consortium and will include a list of actions to be implemented to improve gender equality

Report on Quality Assurance, Safety and PNS/SAR compliance of new Technology

This deliverable includes the results of the tests performed in tasks 5.2 Quality Assurance and 5.3 Safety and PNS/SAR Compliance

Report on the simulation results for magnet and RF coils

This document will include the results of the detailed electromagnetic simulations that will be performed using the CST software package available at LUMC in order to design transmit/receive coil

Report on Proof of Concept Results

This deliverable includes the results of the tests applied to the visualization of the brain of a mouse

Dissemination Plan

This document will include a description of the strategy for the dissemination of the project results

Web site and logo

This deliverable will include the web site and the logo of the project

Veröffentlichungen

Gradient Coil Design and Realization for a Halbach-Based MRI System

Autoren: Bart de Vos, Patrick Fuchs, Thomas O'Reilly, Andrew Webb, Rob Remis
Veröffentlicht in: IEEE Transactions on Magnetics, Issue 56/3, 2020, Page(s) 1-8, ISSN 0018-9464
Herausgeber: Institute of Electrical and Electronics Engineers
DOI: 10.1109/tmag.2019.2958561

Simultaneous imaging of hard and soft biological tissues in a low-field dental MRI scanner

Autoren: José M. Algarín, Elena Díaz-Caballero, José Borreguero, Fernando Galve, Daniel Grau-Ruiz, Juan P. Rigla, Rubén Bosch, José M. González, Eduardo Pallás, Miguel Corberán, Carlos Gramage, Santiago Aja-Fernández, Alfonso Ríos, José M. Benlloch, Joseba Alonso
Veröffentlicht in: Scientific Reports, Issue 10/1, 2020, ISSN 2045-2322
Herausgeber: Nature Publishing Group
DOI: 10.1038/s41598-020-78456-2

Platform for Image-Guided Noninvasive Brain Delivery of Magnetic Particles: Concept and Technical Progress

Autoren: Irving N. Weinberg, Lamar O. Mair, Sahar Jafari, Sagar Chowdhury, James Baker-McKay, Brad English, Pulkit Malik, Aleksandar Nacev, Ryan Hilaman, Said Ijanaten, Jose Algarin, Jose M. Benlloch Baviera
Veröffentlicht in: IEEE Magnetics Letters, Issue 9, 2018, Page(s) 1-5, ISSN 1949-307X
Herausgeber: Institute of Electrical and Electronics Engineers
DOI: 10.1109/lmag.2018.2837649

Three-dimensional MRI in a homogenous 27 cm diameter bore Halbach array magnet

Autoren: T. O'Reilly, W.M. Teeuwisse, A.G. Webb
Veröffentlicht in: Journal of Magnetic Resonance, Issue 307, 2019, Page(s) 106578, ISSN 1090-7807
Herausgeber: Academic Press
DOI: 10.1016/j.jmr.2019.106578

Deconstructing and reconstructing MRI hardware

Autoren: Thomas O'Reilly, Andrew Webb
Veröffentlicht in: Journal of Magnetic Resonance, Issue 306, 2019, Page(s) 134-138, ISSN 1090-7807
Herausgeber: Academic Press
DOI: 10.1016/j.jmr.2019.07.014

Low-Field Rampable Magnet for a High-Resolution MRI System

Autoren: Juan P. Rigla, Jose M. Algarin, Alfonso Rios, Jose M. Benlloch, Joseba Alonso, Franz Bodker, Amir Anari, Eduardo Pallas, Daniel Grau, Guillermo Puchalt, Jose M. Gonzalez, Miguel Corberan, Elena Diaz
Veröffentlicht in: IEEE Transactions on Magnetics, Issue 56/2, 2020, Page(s) 1-7, ISSN 0018-9464
Herausgeber: Institute of Electrical and Electronics Engineers
DOI: 10.1109/tmag.2019.2950891

A Fast 0.5 T Prepolarizer Module for Preclinical Magnetic Resonance Imaging

Autoren: Juan P. Rigla, Jose Borreguero, Carlos Gramage, Eduardo Pallas, Jose M. Gonzalez, Ruben Bosch, Jose M. Algarin, Juan V. Sanchez-Andres, Fernando Galve, Daniel Grau-Ruiz, Ruben Pellicer, Alfonso Rios, Jose M. Benlloch, Joseba Alonso
Veröffentlicht in: IEEE Transactions on Magnetics, 2021, Page(s) 1-1, ISSN 0018-9464
Herausgeber: Institute of Electrical and Electronics Engineers
DOI: 10.1109/tmag.2021.3080840

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