With this paper, we will report about the feasibility study of a novel device which will be capable of performing the follow-up of a brain stroke event in the post-acute stage. The underlying technology, used in the device under design, is microwave imaging, which exploits the difference in dielectric properties of tissues. Numerical full-wave simulations, with realistic 3-D phantoms of the human head, will show the potential capabilities of the microwave imaging device.

A feasibility study for cerebrovascular diseases monitoring via microwave imaging / Vasquez, J.A.T., Scapaticci, R., Turvani, G., Vacca, M., Sarwar, I., Casu, M.R., Dassano, G., Joachimowicz, N., Duchene, B., Bellizzi, G., Tedeschi, E., Crocco, L., Vipiana, F.. - (2017), pp. 1280-1282. (19th International Conference on Electromagnetics in Advanced Applications, ICEAA 2017 ita 2017) [10.1109/ICEAA.2017.8065506].

A feasibility study for cerebrovascular diseases monitoring via microwave imaging

Bellizzi G.;Tedeschi E.;
2017

Abstract

With this paper, we will report about the feasibility study of a novel device which will be capable of performing the follow-up of a brain stroke event in the post-acute stage. The underlying technology, used in the device under design, is microwave imaging, which exploits the difference in dielectric properties of tissues. Numerical full-wave simulations, with realistic 3-D phantoms of the human head, will show the potential capabilities of the microwave imaging device.
2017
978-1-5090-4451-1
A feasibility study for cerebrovascular diseases monitoring via microwave imaging / Vasquez, J.A.T., Scapaticci, R., Turvani, G., Vacca, M., Sarwar, I., Casu, M.R., Dassano, G., Joachimowicz, N., Duchene, B., Bellizzi, G., Tedeschi, E., Crocco, L., Vipiana, F.. - (2017), pp. 1280-1282. (19th International Conference on Electromagnetics in Advanced Applications, ICEAA 2017 ita 2017) [10.1109/ICEAA.2017.8065506].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/817394
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