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Lavezzo, L.

Publications and source records attributed to Lavezzo, L..

2 recordsLinked to original sources

Maternal singing synchronizes the preterm infants' brain

Singing to infants is a universal human practice that has beneficial effects on infants cognitive and affective development. Children born preterm have impaired brain development, and their perception of maternal speech is known to be affected by the atypical hospital auditory environment. Understanding how preterm infants perceive maternal singing is of critical importance, yet it remains largely unexplored. Using high-density EEG, we examined neural responses to the same melody presented through maternal singing, stranger singing, and instrument, and compared the responses in 12 preterm infants. Moreover, to examine their processing of spatialisation, auditory stimuli were presented under monaural and binaural conditions. Preterm newborns are able to discriminate the same melody when sung by their mother, a stranger, or played by an instrument. When presented monaurally, the mothers singing voice enhances widespread brain synchrony across the entire scalp. In contrast, this synchrony diminishes with binaural spatialization. These findings suggest that maternal singing constitutes a highly salient auditory stimulus for preterm newborns, eliciting a distinct neural signature. Given that brain synchrony is a critical component of healthy brain function and development, harnessing maternal singing may offer a promising, natural intervention to support neurodevelopment--particularly in vulnerable populations such as preterm infants.

neuroscience↗

Cardiorespiratory mechanisms triggered during music perception in preterm infants and adults

SHORT-ABSTRACTPreterm newborns autonomic response to dynamic auditory stimuli is poorly understood. To examine how cardiac and respiratory systems adjust their rhythms in response to music, we assessed 18 preterm infants (gestational age 37.73 {+/-} 0.80 weeks) and 19 adults across music listening. Heart rate variability (HRV) dynamics and respiratory sinus arrhythmia (RSA), and cardiorespiratory coupling were analyzed. Both groups showed decreased high-frequency power in HRV during music listening. In preterm infants, RSA increased (p-value = 0.005), possibly suggesting a state of calm alertness, where the infant is physiologically prepared for interaction with environmental stimuli, while adults had decreased RSA (p-value = 0.003) and concomitant increased values of the low frequency/high frequency power ratio, possibly reflecting heightened alertness. While HRV responses to music were similar between preterms and adults, only the investigation of RSA and cardiorespiratory coupling measures revealed the delicate balance of autonomic dynamics in preterm newborns.

physiology↗