Neuronal correlates of small animal phobia in human subjects through fMRI: The role of the number and proximity of stimuli.

Brain regions involved in small-animal phobia include subcortical and cortical areas. The present study explored the neuronal correlates of small-animal phobia through fMRI data to determine whether a manipulation of number and proximity parameters affects the neurobiology of the processing of feare...

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Detalles Bibliográficos
Autores: Marrero Quevedo, Rosario Josefa, Yolanda Alvarez-Pérez, Bethencourt Pérez, Juan Manuel, Rivero Pérez, Francisco Luis, Fumero Hernández, Ascensión Ángeles, Peñate Castro, Wenceslao, González Rodríguez, Manuel
Tipo de recurso: artículo
Fecha de publicación:2021
País:España
Institución:Universidad de La Laguna (ULL)
Repositorio:RIULL. Repositorio Institucional de la Universidad de La Laguna
OAI Identifier:oai:riull.ull.es:915/39765
Acceso en línea:http://riull.ull.es/xmlui/handle/915/39765
Access Level:acceso abierto
Palabra clave:small-animal phobia
fMRI
number
proximity
virtual reality
video images
Descripción
Sumario:Brain regions involved in small-animal phobia include subcortical and cortical areas. The present study explored the neuronal correlates of small-animal phobia through fMRI data to determine whether a manipulation of number and proximity parameters affects the neurobiology of the processing of feared stimuli. The participants were 40 individuals with phobia and 40 individuals without phobia (28.7% male and 71.3% female). They watched videos of real and virtual images of spiders, cockroaches and lizards in motion presented more or less nearby with one or three stimuli in the different conditions. The results suggested a differential brain activity between participants with and without phobia depending on the proximity and number of phobic stimuli. Proximity activated the motor response marked by the precentral gyrus and the cingulate gyrus. By contrast, the number of stimuli was associated with significant sensory activity in the postcentral gyrus and ventromedial prefrontal cortex. We also observed a greater activity in the occipital cortex when exploring the number compared to the proximity factor. Threatening stimuli presented nearby and those presented in greater numbers generated an intense phobic response, suggesting a different emotion regulation strategy. Based on these findings, exposure therapies might consider including proximity to the threat and number of stimuli as key factors in treatment.