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February 14, 2017; 88 (7) Article

Direct cortical stimulation of human posteromedial cortex

Brett L. Foster, Josef Parvizi
First published January 18, 2017, DOI: https://doi.org/10.1212/WNL.0000000000003607
Brett L. Foster
From the Laboratory of Behavioral and Cognitive Neuroscience (B.L.F., J.P.), Stanford Human Intracranial Cognitive Electrophysiology Program, Stanford University, CA; and Departments of Neurosurgery and Neuroscience (B.L.F.), Baylor College of Medicine, Houston, TX.
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Josef Parvizi
From the Laboratory of Behavioral and Cognitive Neuroscience (B.L.F., J.P.), Stanford Human Intracranial Cognitive Electrophysiology Program, Stanford University, CA; and Departments of Neurosurgery and Neuroscience (B.L.F.), Baylor College of Medicine, Houston, TX.
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Citation
Direct cortical stimulation of human posteromedial cortex
Brett L. Foster, Josef Parvizi
Neurology Feb 2017, 88 (7) 685-691; DOI: 10.1212/WNL.0000000000003607

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Abstract

Background: The posteromedial cortex (PMC) is a collective term for an anatomically heterogeneous area of the brain constituting a core node of the human default mode network (DMN), which is engaged during internally focused subjective cognition such as autobiographical memory.

Methods: We explored the effects of causal perturbations of PMC with direct electric brain stimulation (EBS) during presurgical epilepsy monitoring with intracranial EEG electrodes.

Results: Data were collected from 885 stimulations in 25 patients implanted with intracranial electrodes across the PMC. While EBS of regions immediately dorsal or ventral to the PMC reliably produced somatomotor or visual effects, respectively, we found no observable behavioral or subjectively reported effects when sites within the boundaries of PMC were electrically perturbed. In each patient, null effects of PMC stimulation were observed for sites in which intracranial recordings had clearly demonstrated electrophysiologic responses during autobiographical recall.

Conclusions: Direct electric modulation of the human PMC produced null effects when standard functional mapping methods were used. More sophisticated stimulation paradigms (e.g., EBS during experimental cognitive tests) will be required for testing the causal contribution of PMC to human cognition and subjective experience. Nonetheless, our findings suggest that some extant theories of PMC and DMN contribution to human awareness and subjective conscious states require cautious re-examination.

GLOSSARY

DMN=
default mode network;
EBS=
electric brain stimulation;
ECoG=
continuous electrocorticography;
PMC=
posteromedial cortex

Footnotes

  • Go to Neurology.org for full disclosures. Funding information and disclosures deemed relevant by the authors, if any, are provided at the end of the article.

  • Received June 14, 2016.
  • Accepted in final form November 17, 2016.
  • © 2017 American Academy of Neurology
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