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Tanvir Baig

Researcher at Case Western Reserve University

Publications -  43
Citations -  509

Tanvir Baig is an academic researcher from Case Western Reserve University. The author has contributed to research in topics: Magnet & Electromagnetic coil. The author has an hindex of 11, co-authored 41 publications receiving 397 citations. Previous affiliations of Tanvir Baig include University of Pittsburgh & University of Dhaka.

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Active-passive gradient shielding for MRI acoustic noise reduction

TL;DR: Finite‐element (FE) calculations for a z‐gradient indicate that a 2‐mm‐thick Cu layer wrapped on the gradient assembly can decrease mechanical power deposition in the warm bore and reduce warm‐bore acoustic noise production by about 25 dB.
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Conduction cooled magnet design for 1.5 T, 3.0 T and 7.0 T MRI systems

TL;DR: In this article, electromagnetic designs for conduction cooled main magnets over the range of medium field strengths (1.5 T) to ultra high field strength (7.0 T) are presented.
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Conceptual designs of conduction cooled MgB2 magnets for 1.5 and 3.0 T full body MRI systems

TL;DR: This comprehensive set of magnet design considerations and analyses demonstrate the overall viability of 1.5 and 3.0 T MgB2 magnet designs and conclude there would be no damage to such a magnet during the manufacturing or operating stages, and that the magnet would survive various quench scenarios.
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Computational homogenization of the elastic and thermal properties of superconducting composite MgB2 wire

TL;DR: In this article, the temperature dependent elastic modulus, Poisson's ratio, thermal expansion coefficients, thermal conductivity, and specific heat are estimated using Finite Element Analysis (FEA) and compared to analytical approaches.
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Measurements and simulation of RF heating of implanted stereo-electroencephalography electrodes during MR scans.

TL;DR: To assess RF‐induced heating during MRI of patients with implanted stereo‐electroencephalography electrodes, radiofrequency interference is measured during MRI in order to assess the effects of radiation on the nervous system.