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Noninvasive modulation of predictive coding in humans: causal evidence for frequency-specific temporal dynamics

Metodi Draganov, Jordi Galiano-Landeira, Deniz Doruk Camsari, Jairo-Enrique Ramírez, Marta Robles, Lorena Chanes

2023Cerebral Cortex10 citationsDOIOpen Access PDF

Abstract

Increasing evidence indicates that the brain predicts sensory input based on past experiences, importantly constraining how we experience the world. Despite a growing interest on this framework, known as predictive coding, most of such approaches to multiple psychological domains continue to be theoretical or primarily provide correlational evidence. We here explored the neural basis of predictive processing using noninvasive brain stimulation and provide causal evidence of frequency-specific modulations in humans. Participants received 20 Hz (associated with top-down/predictions), 50 Hz (associated with bottom-up/prediction errors), or sham transcranial alternating current stimulation on the left dorsolateral prefrontal cortex while performing a social perception task in which facial expression predictions were induced and subsequently confirmed or violated. Left prefrontal 20 Hz stimulation reinforced stereotypical predictions. In contrast, 50 Hz and sham stimulation failed to yield any significant behavioral effects. Moreover, the frequency-specific effect observed was further supported by electroencephalography data, which showed a boost of brain activity at the stimulated frequency band. These observations provide causal evidence for how predictive processing may be enabled in the human brain, setting up a needed framework to understand how it may be disrupted across brain-related conditions and potentially restored through noninvasive methods.

Topics & Concepts

Predictive codingCoding (social sciences)NeuroscienceDynamics (music)PsychologyCognitive psychologyMathematicsPedagogyStatisticsNeural dynamics and brain functionNeuroscience and Music PerceptionCognitive Science and Education Research
Noninvasive modulation of predictive coding in humans: causal evidence for frequency-specific temporal dynamics | Litcius