International audienceIn this study, we quantify microscale heating at the level of cutaneous nerves and capillaries due to continuous and pulsed plane-wave exposure at 60 GHz. The thermal properties of the nerves and capillaries were derived using mixture equations based on their water content. The electromagnetic problem was solved in conjunction with Pennes bioheat equation and Arrhenius equation using finite element method to evaluate the spatial and temporal evolution of temperature along with thermal damage within cutaneous nerves and capillaries. Although, the maximum power density within the nerve (41.6 kW/m 3 ) and capillary (20 kW/m 3 ) was 37.3% and 30.2% higher than surrounding skin for a continuous exposure at 10 W/m 2 , the pe...
International audienceThe purpose of this work is to evaluate local power and electric field distrib...
International audienceThe purpose of this work is to evaluate local power and electric field distrib...
International audienceThe purpose of this work is to evaluate local power and electric field distrib...
International audienceIn this study, we quantify microscale heating at the level of cutaneous nerves...
International audienceIn this study, we quantify microscale heating at the level of cutaneous nerves...
International audienceIn this study, we quantify microscale heating at the level of cutaneous nerves...
International audienceIn this study, we quantify microscale heating at the level of cutaneous nerves...
In this study, we quantify microscale heating at the level of cutaneous nerves and capillaries due t...
Millimeter microwaves (MMWs) are a subset of RF in the 30-300-GHz range. The proliferation of device...
International audienceThis study demonstrates that 20-100 GHz range can be used for spatially-accura...
International audienceThis study demonstrates that 20-100 GHz range can be used for spatially-accura...
International audienceThis study demonstrates that 20-100 GHz range can be used for spatially-accura...
International audienceThis study demonstrates that 20-100 GHz range can be used for spatially-accura...
International audienceThis study demonstrates that 20-100 GHz range can be used for spatially-accura...
We have previously reported species differences in the rate of skin heating in response to millimete...
International audienceThe purpose of this work is to evaluate local power and electric field distrib...
International audienceThe purpose of this work is to evaluate local power and electric field distrib...
International audienceThe purpose of this work is to evaluate local power and electric field distrib...
International audienceIn this study, we quantify microscale heating at the level of cutaneous nerves...
International audienceIn this study, we quantify microscale heating at the level of cutaneous nerves...
International audienceIn this study, we quantify microscale heating at the level of cutaneous nerves...
International audienceIn this study, we quantify microscale heating at the level of cutaneous nerves...
In this study, we quantify microscale heating at the level of cutaneous nerves and capillaries due t...
Millimeter microwaves (MMWs) are a subset of RF in the 30-300-GHz range. The proliferation of device...
International audienceThis study demonstrates that 20-100 GHz range can be used for spatially-accura...
International audienceThis study demonstrates that 20-100 GHz range can be used for spatially-accura...
International audienceThis study demonstrates that 20-100 GHz range can be used for spatially-accura...
International audienceThis study demonstrates that 20-100 GHz range can be used for spatially-accura...
International audienceThis study demonstrates that 20-100 GHz range can be used for spatially-accura...
We have previously reported species differences in the rate of skin heating in response to millimete...
International audienceThe purpose of this work is to evaluate local power and electric field distrib...
International audienceThe purpose of this work is to evaluate local power and electric field distrib...
International audienceThe purpose of this work is to evaluate local power and electric field distrib...