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Altered hierarchical auditory predictive processing after lesions to the orbitofrontal cortex.

Olgerta Asko | Alejandro Omar Blenkmann | Sabine Liliana Leske | Maja Dyhre Foldal | Anais LLorens | Ingrid Funderud | Torstein R Meling | Robert T Knight | Tor Endestad | Anne-Kristin Solbakk
eLife | 2024

Orbitofrontal cortex (OFC) is classically linked to inhibitory control, emotion regulation, and reward processing. Recent perspectives propose that the OFC also generates predictions about perceptual events, actions, and their outcomes. We tested the role of the OFC in detecting violations of prediction at two levels of abstraction (i.e., hierarchical predictive processing) by studying the event-related potentials (ERPs) of patients with focal OFC lesions (n = 12) and healthy controls (n = 14) while they detected deviant sequences of tones in a local-global paradigm. The structural regularities of the tones were controlled at two hierarchical levels by rules defined at a local (i.e., between tones within sequences) and at a global (i.e., between sequences) level. In OFC patients, ERPs elicited by standard tones were unaffected at both local and global levels compared to controls. However, patients showed an attenuated mismatch negativity (MMN) and P3a to local prediction violation, as well as a diminished MMN followed by a delayed P3a to the combined local and global level prediction violation. The subsequent P3b component to conditions involving violations of prediction at the level of global rules was preserved in the OFC group. Comparable effects were absent in patients with lesions restricted to the lateral PFC, which lends a degree of anatomical specificity to the altered predictive processing resulting from OFC lesion. Overall, the altered magnitudes and time courses of MMN/P3a responses after lesions to the OFC indicate that the neural correlates of detection of auditory regularity violation are impacted at two hierarchical levels of rule abstraction.

Pubmed ID: 38334469

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Associated grants

  • Agency: NIMH NIH HHS, United States
    Id: P50 MH109429
  • Agency: NINDS NIH HHS, United States
    Id: R37 NS021135
  • Agency: NINDS NIH HHS, United States
    Id: NINDS R37NS21135
  • Agency: NINDS NIH HHS, United States
    Id: Conte Center PO 518 MH109429

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RRID:SCR_007037

Software package for analysis of brain imaging data sequences. Sequences can be a series of images from different cohorts, or time-series from same subject. Current release is designed for analysis of fMRI, PET, SPECT, EEG and MEG.

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