. Project 4 is a continuation of our basic-research intracranial recordings in humans, which were scattered across Aims in multiple Projects in the current funding period and have now been collected in one focused Project. It is co-directed by Richard Andersen and Ueli Rutishauser, both of whom are also on our current Conte Center. Its overarching Aim is to use single-unit recordings in humans to understand the representations and circuits for social inference and its contextual modulation, with an emphasis on comparing this to representations of one's own states. It links to other Projects:
Aim 1 will investigate the responses of amygdala neurons to social threat, a question linked to Project 3.
Aim 2 will investigate the responses of posterior parietal neurons in representing another person's actions from which we could learn, a question linked to Project 1. These links are reflected in the personnel of Project 4, which includes PIs from other Projects (Adolphs, O'Doherty, Mobbs) as well as shared post-docs and students.
The Aims of Project 4 map onto recordings in two distinct patient populations.
Aims 1 and 3 will be led by Rutishauser, and tested with single-unit recordings from the amygdala and prefrontal cortex in epilepsy patients (10 per year), through a subcontract to Cedars-Sinai Medical Center.
Aims 2 and 4 will be led primarily by Richard Andersen, and tested with single-unit recordings from the posterior parietal cortex in rare patients who have brain-machine interfaces implanted chronically for control of neural prosthetics (tested at a rehabilitation center close to Caltech).
Aim 1 will record the responses of neurons in the prefrontal cortex and amygdala to social stimuli such as faces and a range of threats. It will investigate the category-selectivity of neurons, and ask how this is modulated by attention, using concurrent eyetracking.
Aim 2 will record primarily in the posterior parietal cortex, but also include some experiments with recordings in amygdala and prefrontal cortex, and examine how the observation and execution of actions are represented by these neurons (a question related to so-called ?mirror neurons?). It also includes a close link to Project 1 in testing whether single neurons encode signals for observational learning.
Aim 3 will investigate error signals in a Stroop task by recording from neurons in the anterior cingulate cortex and supplementary motor cortex in epilepsy patients; it will also feature an observational Stroop task, where the subject sees the errors made by another person.
This Aim will also be conducted, in the same patients, using fMRI (prior to their electrode implantations).
Aim 4 will capitalize on the ability record in posterior parietal cortex in the brain-machine interface patients from over a year, and will compare recordings done over this long period as a function of state variables such as mood.

Agency
National Institute of Health (NIH)
Institute
National Institute of Mental Health (NIMH)
Type
Specialized Center (P50)
Project #
2P50MH094258-06
Application #
9278570
Study Section
Special Emphasis Panel (ZMH1-ERB-L (01))
Project Start
2012-07-26
Project End
2022-02-28
Budget Start
2017-04-01
Budget End
2018-03-31
Support Year
6
Fiscal Year
2017
Total Cost
$369,920
Indirect Cost
$82,061
Name
California Institute of Technology
Department
Type
Domestic Higher Education
DUNS #
009584210
City
Pasadena
State
CA
Country
United States
Zip Code
91125
Faraut, Mailys C M; Carlson, April A; Sullivan, Shannon et al. (2018) Dataset of human medial temporal lobe single neuron activity during declarative memory encoding and recognition. Sci Data 5:180010
Dubois, Julien; Galdi, Paola; Paul, Lynn K et al. (2018) A distributed brain network predicts general intelligence from resting-state human neuroimaging data. Philos Trans R Soc Lond B Biol Sci 373:
Yao, Shuxia; Qi, Song; Kendrick, Keith M et al. (2018) Attentional set to safety recruits the ventral medial prefrontal cortex. Sci Rep 8:15395
Schneider, Brett; Heskje, Jonah; Bruss, Joel et al. (2018) The left temporal pole is a convergence region mediating the relation between names and semantic knowledge for unique entities: Further evidence from a ""recognition-from-name"" study in neurological patients. Cortex 109:14-24
Folkerts, Sarah; Rutishauser, Ueli; Howard, Marc W (2018) Human Episodic Memory Retrieval Is Accompanied by a Neural Contiguity Effect. J Neurosci 38:4200-4211
Cameron, C Daryl; Reber, Justin; Spring, Victoria L et al. (2018) Damage to the ventromedial prefrontal cortex is associated with impairments in both spontaneous and deliberative moral judgments. Neuropsychologia 111:261-268
Mobbs, Dean; Trimmer, Pete C; Blumstein, Daniel T et al. (2018) Foraging for foundations in decision neuroscience: insights from ethology. Nat Rev Neurosci :
Feng, Chunliang; Cao, Jianqin; Li, Yingli et al. (2018) The pursuit of social acceptance: aberrant conformity in social anxiety disorder. Soc Cogn Affect Neurosci 13:809-817
Qi, Song; Hassabis, Demis; Sun, Jiayin et al. (2018) How cognitive and reactive fear circuits optimize escape decisions in humans. Proc Natl Acad Sci U S A 115:3186-3191
Chib, Vikram S; Adachi, Ryo; O'Doherty, John P (2018) Neural substrates of social facilitation effects on incentive-based performance. Soc Cogn Affect Neurosci :

Showing the most recent 10 out of 158 publications