This paper presents the design and optimization of a waveguide applicator for exposure of cell cultures to RF-EMF at 3. 5 GHz, an operative frequency of 5 G technologies. In accordance with the requirements for an RF applicator, numerical dosimetry analysis was carried out to maximize uniformity of SAR distribution in the cell monolayer and the number of samples to be exposed simultaneously.
Design and optimization of a waveguide applicator for cell cultures exposure in the FR1 Band of 5G signals / Romeo, S., Zeni, O., Sannino, A., Liberti, M., Apollonio, F., Paffi, A., Scarfi, M.R.. - (2026), pp. 1-3. (2026 IEEE MTT-S International Microwave Biomedical Conference, IMBioC 2026 Cosenza; Italy ) [10.1109/IMBioC69142.2026.11541141].
Design and optimization of a waveguide applicator for cell cultures exposure in the FR1 Band of 5G signals
Liberti M.;Apollonio F.;Paffi A.;
2026
Abstract
This paper presents the design and optimization of a waveguide applicator for exposure of cell cultures to RF-EMF at 3. 5 GHz, an operative frequency of 5 G technologies. In accordance with the requirements for an RF applicator, numerical dosimetry analysis was carried out to maximize uniformity of SAR distribution in the cell monolayer and the number of samples to be exposed simultaneously.| File | Dimensione | Formato | |
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