Temperature elevation in the human brain and skin with thermoregulation during exposure to RF energy

Título

Temperature elevation in the human brain and skin with thermoregulation during exposure to RF energy

Autor

Sachiko Kodera, José Gómez-Tames, Akimasa Hirata

Descripción

Abstract Background Two international guidelines/standards for human protection from electromagnetic fields define the specific absorption rate (SAR) averaged over 10 g of tissue as a metric for protection against localized radio frequency field exposure due to portable devices operating below 3–10 GHz. Temperature elevation is suggested to be a dominant effect for exposure at frequencies higher than 100 kHz. No previous studies have evaluated temperature elevation in the human head for local exposure considering thermoregulation. This study aims to discuss the temperature elevation in a human head model considering vasodilation, to discuss the conservativeness of the current limit. Methods This study computes the temperature elevations in an anatomical human head model exposed to radiation from a dipole antenna and truncated plane waves at 300 MHz–10GHz. The SARs in the human model are first computed using a finite-difference time-domain method. The temperature elevation is calculated by solving the bioheat transfer equation by considering the thermoregulation that simulates the vasodilation. Results The maximum temperature elevation in the brain appeared around its periphery. At exposures with higher intensity, the temperature elevation became larger and reached around 40 °C at the peak SAR of 100 W/kg, and became lower at higher frequencies. The temperature elevation in the brain at the current limit of 10 W/kg is at most 0.93 °C. The effect of vasodilation became notable for tissue temperature elevations higher than 1–2 °C and for an SAR of 10 W/kg. The temperature at the periphery was below the basal brain temperature (37 °C). Conclusions The temperature elevation under the current guideline for occupational exposure is within the ranges of brain temperature variability for environmental changes in daily life. The effect of vasodilation is significant, especially at higher frequencies where skin temperature elevation is dominant.

Fecha

2018

Materia

Human safety, Safety guidelines, Computational dosimetry, vasodilation, bioheat equation

Identificador

DOI: 10.1186/s12938-017-0432-x

Fuente

BioMedical Engineering OnLine

Editor

BMC

Cobertura

Medical technology

Idioma

EN

Archivos

https://socictopen.socict.org/files/to_import/pdfs/article 1915.pdf

Colección

Citación

Sachiko Kodera, José Gómez-Tames, Akimasa Hirata, “Temperature elevation in the human brain and skin with thermoregulation during exposure to RF energy,” SOCICT Open, consulta 16 de abril de 2026, https://www.socictopen.socict.org/items/show/1865.

Formatos de Salida

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