Sex-Specific Automatic Responses to Infant Cries: TMS Reveals Greater Excitability in Females than Males in Motor Evoked Potentials
Neuroimaging reveals that infant cries activate parts of the premotor cortical system. To validate this effect in a more direct way, we used event-related transcranial magnetic stimulation (TMS). Here, we investigated the presence and the time course of modulation of motor cortex excitability in you...
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sg-ntu-dr.10356-846902022-02-16T16:29:57Z Sex-Specific Automatic Responses to Infant Cries: TMS Reveals Greater Excitability in Females than Males in Motor Evoked Potentials Messina, Irene Cattaneo, Luigi Venuti, Paola de Pisapia, Nicola Serra, Mauro Esposito, Gianluca Rigo, Paola Farneti, Alessandra Bornstein, Marc H. School of Humanities and Social Sciences parenting babycries Neuroimaging reveals that infant cries activate parts of the premotor cortical system. To validate this effect in a more direct way, we used event-related transcranial magnetic stimulation (TMS). Here, we investigated the presence and the time course of modulation of motor cortex excitability in young adults who listened to infant cries. Specifically, we recorded motor evoked potentials (MEPs) from the biceps brachii (BB) and interosseus dorsalis primus (ID1) muscles as produced by TMS delivered from 0 to 250 ms after sound onset in six steps of 50 ms in 10 females and 10 males. We observed an excitatory modulation of MEPs at 100 ms from the onset of infant cry specific to females and to the ID1 muscle. We regard this modulation as a response to natural cry sounds because it was attenuated to stimuli increasingly different from natural cry and absent in a separate group of females who listened to non-cry stimuli physically matched to natural infant cries. Furthermore, the 100-ms latency of this response is not compatible with a voluntary reaction to the stimulus but suggests an automatic, bottom-up audiomotor association. The brains of adult females appear to be tuned to respond to infant cries with automatic motor excitation. Published version 2017-01-03T08:51:43Z 2019-12-06T15:49:35Z 2017-01-03T08:51:43Z 2019-12-06T15:49:35Z 2016 Journal Article Messina, I., Cattaneo, L., Venuti, P., de Pisapia, N., Serra, M., Esposito, G., et al. (2016). Sex-Specific Automatic Responses to Infant Cries: TMS Reveals Greater Excitability in Females than Males in Motor Evoked Potentials. Frontiers in Psychology, 6, 1909-. https://hdl.handle.net/10356/84690 http://hdl.handle.net/10220/41968 10.3389/fpsyg.2015.01909 26779061 en Frontiers in Psychology © 2016 Messina, Cattaneo, Venuti, de Pisapia, Serra,Esposito, Rigo, Farneti and Bornstein. This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms. 10 p. application/pdf |
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parenting babycries Messina, Irene Cattaneo, Luigi Venuti, Paola de Pisapia, Nicola Serra, Mauro Esposito, Gianluca Rigo, Paola Farneti, Alessandra Bornstein, Marc H. Sex-Specific Automatic Responses to Infant Cries: TMS Reveals Greater Excitability in Females than Males in Motor Evoked Potentials |
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Neuroimaging reveals that infant cries activate parts of the premotor cortical system. To validate this effect in a more direct way, we used event-related transcranial magnetic stimulation (TMS). Here, we investigated the presence and the time course of modulation of motor cortex excitability in young adults who listened to infant cries. Specifically, we recorded motor evoked potentials (MEPs) from the biceps brachii (BB) and interosseus dorsalis primus (ID1) muscles as produced by TMS delivered from 0 to 250 ms after sound onset in six steps of 50 ms in 10 females and 10 males. We observed an excitatory modulation of MEPs at 100 ms from the onset of infant cry specific to females and to the ID1 muscle. We regard this modulation as a response to natural cry sounds because it was attenuated to stimuli increasingly different from natural cry and absent in a separate group of females who listened to non-cry stimuli physically matched to natural infant cries. Furthermore, the 100-ms latency of this response is not compatible with a voluntary reaction to the stimulus but suggests an automatic, bottom-up audiomotor association. The brains of adult females appear to be tuned to respond to infant cries with automatic motor excitation. |
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School of Humanities and Social Sciences |
author_facet |
School of Humanities and Social Sciences Messina, Irene Cattaneo, Luigi Venuti, Paola de Pisapia, Nicola Serra, Mauro Esposito, Gianluca Rigo, Paola Farneti, Alessandra Bornstein, Marc H. |
format |
Article |
author |
Messina, Irene Cattaneo, Luigi Venuti, Paola de Pisapia, Nicola Serra, Mauro Esposito, Gianluca Rigo, Paola Farneti, Alessandra Bornstein, Marc H. |
author_sort |
Messina, Irene |
title |
Sex-Specific Automatic Responses to Infant Cries: TMS Reveals Greater Excitability in Females than Males in Motor Evoked Potentials |
title_short |
Sex-Specific Automatic Responses to Infant Cries: TMS Reveals Greater Excitability in Females than Males in Motor Evoked Potentials |
title_full |
Sex-Specific Automatic Responses to Infant Cries: TMS Reveals Greater Excitability in Females than Males in Motor Evoked Potentials |
title_fullStr |
Sex-Specific Automatic Responses to Infant Cries: TMS Reveals Greater Excitability in Females than Males in Motor Evoked Potentials |
title_full_unstemmed |
Sex-Specific Automatic Responses to Infant Cries: TMS Reveals Greater Excitability in Females than Males in Motor Evoked Potentials |
title_sort |
sex-specific automatic responses to infant cries: tms reveals greater excitability in females than males in motor evoked potentials |
publishDate |
2017 |
url |
https://hdl.handle.net/10356/84690 http://hdl.handle.net/10220/41968 |
_version_ |
1725985699787702272 |