Flexible High Performance Magnetic Field Sensors (eBook, PDF)
On-Scalp Magnetoencephalography and Other Applications
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Flexible High Performance Magnetic Field Sensors (eBook, PDF)
On-Scalp Magnetoencephalography and Other Applications
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This contributed volume reviews the latest advances in all the new technologies currently developed for MagnetoEncephaloGraphy (MEG) recordings, as well as sensor technologies and integrated sensor arrays for on-scalp MEG. The book gives an account of the first MEG imaging studies and explores the new field of feasible, experimental paradigms of on-scalp MEG. This is an ideal book for engineers, researchers, and students in the neurosciences interested in MEG imaging.
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This contributed volume reviews the latest advances in all the new technologies currently developed for MagnetoEncephaloGraphy (MEG) recordings, as well as sensor technologies and integrated sensor arrays for on-scalp MEG. The book gives an account of the first MEG imaging studies and explores the new field of feasible, experimental paradigms of on-scalp MEG. This is an ideal book for engineers, researchers, and students in the neurosciences interested in MEG imaging.
Produktdetails
- Produktdetails
- Verlag: Springer International Publishing
- Erscheinungstermin: 26. August 2022
- Englisch
- ISBN-13: 9783031053634
- Artikelnr.: 65463745
- Verlag: Springer International Publishing
- Erscheinungstermin: 26. August 2022
- Englisch
- ISBN-13: 9783031053634
- Artikelnr.: 65463745
Dr. Etienne Labyt is a Senior Expert Engineer in MEG/EEG imaging at the French Alternative Energies and Atomic Energy Commission. He is also from February 2022 the Chief Medical Officer of Mag4Health company.
Dr. Tilmann Sanders-Thommes is a staff scientist in the Biosignals and Magentoencephalography section at Physikalish-Technische Bundesantalt, and is the Senior Scientist in the working group "Optical Magnetometry."
Prof. Ronald T. Wakai is a Professor in the Department of Medical Physics at the University of Wisconsin.
Dr. Tilmann Sanders-Thommes is a staff scientist in the Biosignals and Magentoencephalography section at Physikalish-Technische Bundesantalt, and is the Senior Scientist in the working group "Optical Magnetometry."
Prof. Ronald T. Wakai is a Professor in the Department of Medical Physics at the University of Wisconsin.
Part 1.- Optically-Pumped Magnetometers Compatible with Large Transient Magnetic Fields.- Small animal biomagnetism applications.- Supine OPM-MEG in Multi-layer Cylindrical Shield.- Ambulatory MEG Arrays.- Part 2.- "Tri-axial helium-4 optically-pumped.- magnetometers for MEG".- Person-Sized Magnetoencephalography Systems with Optically Pumped Magnetometers.- On-scalp MEG with High-Tc SQUIDs.- "Fiber Coupled OPM in Purely Coil.- Shielded Environment".- SERF-OPM usability for MEG in two-layer shielded rooms.- Turning OPM-MEG into a Wearable Technology.- Part 3.- OPM Gradiometer for Magnetorelaxometry.- Unshielded High Bandwidth Magnetorelaxometry of Magnetic Nanoparticles with Optically Pumped Magnetometers.- Adult Magnetocardiography: Principles and Clinical Practice.- Fetal Magnetocardiography with OPMs.- Emerging MR sensors for biomagnetic measurements.- Index.
Part 1.- Optically-Pumped Magnetometers Compatible with Large Transient Magnetic Fields.- Small animal biomagnetism applications.- Supine OPM-MEG in Multi-layer Cylindrical Shield.- Ambulatory MEG Arrays.- Part 2.- "Tri-axial helium-4 optically-pumped.- magnetometers for MEG".- Person-Sized Magnetoencephalography Systems with Optically Pumped Magnetometers.- On-scalp MEG with High-Tc SQUIDs.- "Fiber Coupled OPM in Purely Coil.- Shielded Environment".- SERF-OPM usability for MEG in two-layer shielded rooms.- Turning OPM-MEG into a Wearable Technology.- Part 3.- OPM Gradiometer for Magnetorelaxometry.- Unshielded High Bandwidth Magnetorelaxometry of Magnetic Nanoparticles with Optically Pumped Magnetometers.- Adult Magnetocardiography: Principles and Clinical Practice.- Fetal Magnetocardiography with OPMs.- Emerging MR sensors for biomagnetic measurements.- Index.
Part 1.- Optically-Pumped Magnetometers Compatible with Large Transient Magnetic Fields.- Small animal biomagnetism applications.- Supine OPM-MEG in Multi-layer Cylindrical Shield.- Ambulatory MEG Arrays.- Part 2.- "Tri-axial helium-4 optically-pumped.- magnetometers for MEG".- Person-Sized Magnetoencephalography Systems with Optically Pumped Magnetometers.- On-scalp MEG with High-Tc SQUIDs.- "Fiber Coupled OPM in Purely Coil.- Shielded Environment".- SERF-OPM usability for MEG in two-layer shielded rooms.- Turning OPM-MEG into a Wearable Technology.- Part 3.- OPM Gradiometer for Magnetorelaxometry.- Unshielded High Bandwidth Magnetorelaxometry of Magnetic Nanoparticles with Optically Pumped Magnetometers.- Adult Magnetocardiography: Principles and Clinical Practice.- Fetal Magnetocardiography with OPMs.- Emerging MR sensors for biomagnetic measurements.- Index.
Part 1.- Optically-Pumped Magnetometers Compatible with Large Transient Magnetic Fields.- Small animal biomagnetism applications.- Supine OPM-MEG in Multi-layer Cylindrical Shield.- Ambulatory MEG Arrays.- Part 2.- "Tri-axial helium-4 optically-pumped.- magnetometers for MEG".- Person-Sized Magnetoencephalography Systems with Optically Pumped Magnetometers.- On-scalp MEG with High-Tc SQUIDs.- "Fiber Coupled OPM in Purely Coil.- Shielded Environment".- SERF-OPM usability for MEG in two-layer shielded rooms.- Turning OPM-MEG into a Wearable Technology.- Part 3.- OPM Gradiometer for Magnetorelaxometry.- Unshielded High Bandwidth Magnetorelaxometry of Magnetic Nanoparticles with Optically Pumped Magnetometers.- Adult Magnetocardiography: Principles and Clinical Practice.- Fetal Magnetocardiography with OPMs.- Emerging MR sensors for biomagnetic measurements.- Index.