Publication scientifique

AccueilMeditation in the third-person perspective modulates minimal self and heartbeat-evoked potentials

Meditation in the third-person perspective modulates minimal self and heartbeat-evoked potentials

Experienced meditation practitioners often report altered states of their sense of self, including decentering and distancing the self from the body and one’s current concerns. Altered states of the sense of self, such as disembodiment and distancing of the self from the body, have also been induced experimentally using virtual reality (VR) and linked neurally to heartbeat-evoked potentials (HEPs). Whereas studies investigated the related neural correlates of such decentering during meditation, none experimentally modulated the sense of self during meditation practice using VR nor determined the potentially associated behavioral changes of the sense of self. Here we determined HEPs and behavioral measures in 23 participants who performed a guided meditation in VR, either from a third-person (3PP) or first-person perspective (1PP) to modulate the sense of self. In the 3PP-vs-1PP meditation condition, we report immediate effects including stronger sensations of detachment and disconnection, reduced salience of the perceived body boundary, and reduced self-identification with the body. HEP analysis revealed a more negative HEP amplitude in the 3PP condition, associated with activation of the posterior cingulate cortex and medial prefrontal cortex. Leveraging a new VR-supported meditation platform and methods, these data link the sense of self in meditation practice to the neuroscience of the bodily self, based on short-term subjective, behavioral, and neural changes. The study provides a foundation for future research on whether manipulating the minimal self in VR can aid in cultivating self-transcendent experiences reported by experienced meditators and whether integrating this manipulation facilitates the cultivation of long-term changes.

Autres publications de la plateforme

Motor-evoked modules obtained from transcranial magnetic stimulation

Morishita, Takuya; Coscia, Martina; Bacigalupo, Mirea; Lassi, Michael; Proulx, Camille E.; Fleury, Lisa; Hummel, Friedhelm C.
Journal of Neurophysiology
Plateforme M/EEG & Neuromod (MEG)

Characterising the Diffusion Functional Signature of Negative BOLD With Interleaved TMS...

De Riedmatten, Inès; Spencer, Arthur P. C.; Martuzzi, Roberto; Rochas, Vincent; Pérot, Jean‐Baptiste; Szczepankiewicz, Filip; Jelescu, Ileana O.
Human Brain Mapping

Real-time reinforcement for human-machine interface control

Vassiliadis, Pierre; Pinheiro, Daniel Leal; Fleury, Lisa; Zenon, Alexandre; Esparza-Iaizzo, Martín; Ingster, Abigaïl; Micera, Silvestro; Shokur, Solaiman; Hummel, Friedhelm C.
Neuron

EEG microstates: from methodological foundations to clinical translation

Michel, Christoph M.; Bréchet, Lucie
Trends in Neurosciences

Linguistic pitch is hierarchically encoded in the right ventral stream

Oderbolz, Chantal; Orpella, Joan; Meyer, Martin
Communications Biology

Causal disconnectomics of motion perception networks: insights from transcranial magnetic stimulation‐induced...

Raffin, Estelle; Salamanca‐Giron, Roberto F.; Huxlin, Krystel R.; Reynaud, Olivier; Mattera, Loan; Martuzzi, Roberto; Hummel, Friedhelm C.
The Journal of Physiology

Journal de publication

NeuroImage

Auteurs:

Yang, Hang; Herbelin, Bruno; Ngo, Chuong; Vuarnesson, Loup; Blanke, Olaf

Date de publication:

Plateforme:

Études récentes de la plateforme

Neurosciences cliniques et translationnelles

Perte de conscience de soi

Eveiller la prise de conscience Les troubles de la conscience de soi ne sont pas tous immédiatement perceptibles : certains restent masqués lors d'un...
Plateforme M/EEG & Neuromod (MEG)

Quand le cerveau s’éteint à l’IRM : un signal plus complexe...

Quand une diminution du signal reste difficile à interpréter L’imagerie par résonance magnétique fonctionnelle (IRMf) permet de repérer les régions du cerveau qui réagissent...
Plateforme d’Imagerie par Résonance Magnétique (IRM)Plateforme M/EEG & Neuromod (MEG)

La connaissance comme récompense

Comparaison de différents types de récompenses Les participants prennent part à une tâche comprenant trois types de récompenses, de valeur élevée ou faible : -...
Plateforme d’Imagerie par Résonance Magnétique (IRM)Plateforme M/EEG & Neuromod (MEG)