Neurosynth Compose: New Frontiers in Neuroimaging Meta Analyses
Poster, Human Brain Mapping (OHBM), Brisbane, Australia
Poster presentation describing new capabilities in Neurosynth Compose for meta-analytic study curation and execution.
See a map of all the places I've given a talk!
Poster, Human Brain Mapping (OHBM), Brisbane, Australia
Poster presentation describing new capabilities in Neurosynth Compose for meta-analytic study curation and execution.
Oral, OHBM, Brisbane, Australia
Oral presentation on Neurosynth Compose and emerging workflows for reproducible neuroimaging meta-analysis.
Poster, Human Brain Mapping (OHBM), Seoul, South Korea
Poster presenting the Neurosynth Compose platform for reproducible, shareable neuroimaging meta-analyses.
Poster, Human Brain Mapping (OHBM), Montreal, Canada
Poster introducing Neurosynth Compose as a workflow for creating and extending neuroimaging meta-analyses.
Poster, Human Brain Mapping (OHBM), Glasgow, Scotland
Poster describing early versions of the Neurosynth Compose platform.
Oral, University of Iowa Neuroscience Program, Iowa City, IA
Oral presentation on methods for measuring communication between brain regions.
Poster, Human Brain Mapping (OHBM), Rome, Italy
Poster describing NiBetaSeries for beta-series correlation analyses in fMRI.
Poster, Cognitive Neuroscience Society, San Francisco, CA
Poster on changes in task-related connectivity following cognitive training.
Poster, University of Iowa Informatics Program, Iowa City, IA
Poster highlighting opportunities and challenges in large-scale brain data.
Oral, University of Iowa Neuroscience Program, Iowa City, IA
Oral presentation on challenges and strategies for fMRI denoising.
Oral, University of Iowa Neuroscience Program, Iowa City, IA
Oral presentation on neural synchrony in aging and cognitive control.
Poster, Society for Neuroscience, San Diego, CA
Poster on adaptive cognitive training and attentional control in aging.
Oral, University of Iowa Neuroscience Program, Iowa City, IA
Oral presentation comparing midbrain activity during task and rest.