María Elena López Martín
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María Elena López Martín is a Profesora Titular de Universidad at the Universidade de Santiago de Compostela, Spain. Her research areas include antenna array design, electromagnetic field effects on biological systems, and radiation pattern optimization. Recent work focuses on topics such as the influence of measurement distance on Taylor patterns and the impact of black carbon and radiofrequency fields on cell death.
Recent Grants
Grant: Close
Medida de la constante dieléctrica en entornos gaseosos mediante agrupaciones de antenas para exploración espacial, ciencias ambientales y potencial detección de SARS-CoV-2
Open Date: 2021-07-01
Close Date: 2024-08-01
Grant: Close
Determinación del nivel de concentración de partículas atmosféricas con antenas: método de monitorización para desarrollar una estrategia de protección integral del ciudadano
Open Date: 2018-01-01
Close Date: 2020-01-01
Grant: Close
Integración de sensores, software y antenas: una nueva red inalámbrica para la seguridad ciudadana
Open Date: 2012-01-01
Close Date: 2015-12-01
Grant: Close
Desenvolvemento dunha nova rede integrada sen-fios para seguridade cidada
Open Date: 2009-01-01
Close Date: 2012-01-01
Grant: Close
Influencia de los teléfonos móviles sobre la actividad cerebral
Open Date: 2002-01-01
Close Date: 2005-01-01
Articles (17)
A Review on the Effects of Thermal Inversions and Electromagnetic Fields on Cell Cultures and Wireless Communications
Thermal inversions, typical in the winter season, consist of cold air at the Earth’s surface being trapped under a layer of warmer air. Such an effect keeps normal convective overturning of the atmosphere from penetrating through. This phenomenon highly increases the toxicity of the atmosphere, while modifying its dielectric constant, resulting in major implications in terms of public health and wireless communications. Indeed, air pollution in large cities (related, in most cases, to particulate matter that consists of different chemical components, which can have warming or cooling effects) is primarily caused by chemical and photochemical reactions in the atmosphere. Appropriate usage of array antennas allows the effective tracking of changes in humidity (e.g., coated Yagi-Uda antennas, which do not interfere with 5G) and in the dielectric constant (e.g., optimized quasi-Yagi-Uda antennas, yielding to accurate measurements of sulfides and black carbon concentration). Remarkably, important health effects come from the combined action of electromagnetic fields with fine and coarse black carbon particles. The appearance of ducts, which are caused by thermal inversions, provokes the creation of super-refractive regions in the troposphere as well, which result in the anomalous propagation of wireless communications.
Year:
2023
Collaborators (3)
Cibrán López Álvarez
Teaching and Research Staff
Universitat Politècnica de Catalunya
Francisco José Ares-Pena
Universidade de Santiago de Compostela
José Manuel Leiro Vidal
University Professor
Universidade de Santiago de Compostela

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