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Costa-Faidella, J.

Publications and source records attributed to Costa-Faidella, J..

2 recordsLinked to original sources

An auditory "low road" for threat in humans sensitive to fast temporal cues

Rapid threat processing is crucial for survival. In vision, neural models of emotion propose the existence of direct pathways, or "low roads", from visual thalamus to the amygdala, which may rely on magnocellular inputs and thereby enable rapid processing of threat signals. In audition, evidence from non-human animals points to the existence of a similar fast direct pathway, but its presence in humans remains unknown. Building on animal evidence that high-rate amplitude-modulated (highAM) sounds preferentially engage magnocellular processing, we used behavioral, physiological, and neuroimaging measures to search for an auditory "low road" for threat in humans responsive to magnocellular-associated features. Specifically, we tested whether highAM threat cues elicit rapid affective responses, and whether highAM threat processing aligns with structural thalamo-amygdala connectivity. We recorded electroencephalography and pupillometry from participants while they detected voices during fear conditioning. Emotional voices presented at highAM rates, as opposed to lowAM, elicited threat-related responses during the earliest post-stimulus window. A further study combining functional and diffusion-weighted imaging revealed that selective amygdala responses to highAM threatening voices were functionally associated with individual fiber density of an auditory thalamo-amygdala pathway. These results provide convergent functional and anatomical evidence supporting a subcortical pathway for auditory threat processing, consistent with evolutionarily conserved emotional systems.

neuroscience↗

Exposure to bilingual or monolingual maternal speech during pregnancy affects the neurophysiological encoding of speech sounds in neonates differently

Exposure to maternal speech during the prenatal period shapes speech perception and linguistic preferences, allowing neonates to recognize stories heard frequently in utero and demonstrating an enhanced preference for their mothers voice and native language. Yet, with a high prevalence of bilingualism worldwide, it remains an open question whether monolingual or bilingual maternal speech during pregnancy influence differently the fetus neural mechanisms underlying speech sound encoding. In the present study, the frequency-following response (FFR), an auditory evoked potential that reflects the complex spectrotemporal dynamics of speech sounds, was recorded to a two-vowel /oa/ stimulus in a sample of 131 healthy term neonates within the 1-3 days after birth. Newborns were divided into two groups according to maternal language usage during the last trimester of gestation (monolingual; bilingual). Spectral amplitudes and spectral signal-to-noise ratios (SNR) at the stimulus fundamental (F0) and first formant (F1) frequencies of each vowel were respectively taken as measures of pitch and formant structure neural encoding. Our results reveal that while spectral amplitudes at F0 did not differ between groups, neonates from bilingual mothers exhibited a lower spectral SNR. Additionally, monolingually exposed neonates exhibited a higher spectral amplitude and SNR at F1 frequencies. We interpret our results under the consideration that bilingual maternal speech, as compared to monolingual, is characterized by a greater complexity in the speech sound signal, rendering newborns from bilingual mothers more sensitive to a wider range of speech frequencies without generating a particularly strong response at any of them. Our results contribute to an expanding body of research indicating the influence of prenatal experiences on language acquisition and underscore the necessity of including prenatal language exposure in developmental studies on language acquisition, a variable often overlooked yet capable of influencing research outcomes.

neuroscience↗