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- W2076940609 abstract "Electrical conductivity can be measured using the ultrasonically-induced Lorentz force. An ultrasonic wave is passed through tissue in the presence of a magnetic field. Moving charges in a magnetic field are subject to the Lorentz force, which acts as the source of current and potential. This paper shows that ultrasonically-induced Lorentz force imaging can be formulated in a way that makes it similar to tomography: an image can be reconstructed using waves propagating in various directions. More specifically, measuring the dipole strength for a particular direction and wavelength is equivalent to measuring the Fourier transform of the conductivity distribution at one point in frequency space. Measurements at a variety of wavelengths and directions are equivalent to mapping the Fourier transform of the conductivity distribution. The conductivity can then be found by an inverse Fourier transform." @default.
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- W2076940609 date "2009-03-27" @default.
- W2076940609 modified "2023-09-26" @default.
- W2076940609 title "Ultrasonically-induced Lorentz force tomography" @default.
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- W2076940609 doi "https://doi.org/10.1007/s11517-009-0476-6" @default.
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