Ultrasensitive Magnetic Field Sensors for Biomedical Applications

Ультрачувствительные датчики магнитного поля для биомедицинских приложений
L.V. Panina, Valeria Rodionova, Dmitry Murzin, Desmond J. Mapps, Kateryna Levada, V. K. Belyaev, Alexander Omelyanchik
2020-03-11

biomedical applicationsmagnetocardiographymagnetoneurographynitrogen-vacancy centersultrasensitive magnetic field sensors
The development of magnetic field sensors for biomedical applications primarily focuses on equivalent magnetic noise reduction or overall design improvement in order to make them smaller and cheaper while keeping the required values of a limit of detection. One of the cutting-edge topics today is the use of magnetic field sensors for applications such as magnetocardiography, magnetotomography, magnetomyography, magnetoneurography, or their application in point-of-care devices. This introductory review focuses on modern magnetic field sensors suitable for biomedicine applications from a physical point of view and provides an overview of recent studies in this field. Types of magnetic field sensors include direct current superconducting quantum interference devices, search coil, fluxgate, magnetoelectric, giant magneto-impedance, anisotropic/giant/tunneling magnetoresistance, optically pumped, cavity optomechanical, Hall effect, magnetoelastic, spin wave interferometry, and those based on the behavior of nitrogen-vacancy centers in the atomic lattice of diamond.
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A wide variety of sensor technologies are relevant for biomedicine: SQUIDs, search coil, fluxgate, magnetoelectric, giant magneto-impedance, anisotropic/giant/tunneling magnetoresistance, optically pumped, cavity optomechanical, Hall effect, magnetoelastic, spin wave interferometry, and nitrogen-vacancy diamond-based sensors.
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Key biomedical applications include magnetocardiography, magnetotomography, magnetomyography, magnetoneurography, and point-of-care devices.
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Magnetic field sensor development for biomedical applications emphasizes reducing equivalent magnetic noise and improving overall design to make sensors smaller and cheaper while maintaining detection limits.
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The review provides a physical-perspective overview of modern magnetic sensors suitable for biomedicine, summarizing recent studies in the field.

Modern ultrasensitive magnetic field sensors for biomedical applications

Physical characteristics and noise-performance (equivalent magnetic noise reduction), design trade-offs and suitability of these sensors for biomedical uses such as magnetocardiography, magnetotomography, magnetomyography, magnetoneurography and point-of-care devices

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2020-03-11
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L.V. Panina
Valeria Rodionova
Dmitry Murzin
Desmond J. Mapps
Kateryna Levada
V. K. Belyaev
Alexander Omelyanchik
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