SummaryMany functional network properties of the human brain have been identified during rest and task states, yet it remains unclear how the two relate. We identified a whole-brain network architecture present across dozens of task states that was highly similar to the resting-state network architecture. The most frequent functional connectivity strengths across tasks closely matched the strengths observed at rest, suggesting this is an “intrinsic,” standard architecture of functional brain organization. Furthermore, a set of small but consistent changes common across tasks suggests the existence of a task-general network architecture distinguishing task states from rest. These results indicate the brain’s functional network architecture d...
Intrinsic Connectivity Networks, patterns of correlated activity emerging from “resting-state” BOLD ...
Functional connectivity (FC) studies have predominantly focused on resting state, where ongoing dyna...
Intrinsic Connectivity Networks, patterns of correlated activity emerging from "resting-state" BOLD ...
Measuring whole-brain functional connectivity patterns based on task-free (‘resting-state’) spontane...
Measuring whole-brain functional connectivity patterns based on task-free (‘resting-state’) spontane...
Measuring whole-brain functional connectivity patterns based on task-free (‘resting-state’) spontan...
Measuring whole-brain functional connectivity patterns based on task-free ('resting-state') spontane...
Intrinsic Connectivity Networks, patterns of correlated activity emerging from "resting-state" BOLD ...
Brain activity at rest is characterized by widely distributed and spatially specific patterns of syn...
During complex tasks, patterns of functional connectivity differ from those in the resting state. Ho...
considered separately. a standard state of brain organization that is modified as neces-an ‘‘intrins...
Brain activity at rest is characterized by widely distributed and spatially specific patterns of syn...
Brain activity at rest is characterized by widely distributed and spatially specific patterns of syn...
Brain activity at rest is characterized by widely distributed and spatially specific patterns of syn...
Brain activity at rest is characterized by widely distributed and spatially specific patterns of syn...
Intrinsic Connectivity Networks, patterns of correlated activity emerging from “resting-state” BOLD ...
Functional connectivity (FC) studies have predominantly focused on resting state, where ongoing dyna...
Intrinsic Connectivity Networks, patterns of correlated activity emerging from "resting-state" BOLD ...
Measuring whole-brain functional connectivity patterns based on task-free (‘resting-state’) spontane...
Measuring whole-brain functional connectivity patterns based on task-free (‘resting-state’) spontane...
Measuring whole-brain functional connectivity patterns based on task-free (‘resting-state’) spontan...
Measuring whole-brain functional connectivity patterns based on task-free ('resting-state') spontane...
Intrinsic Connectivity Networks, patterns of correlated activity emerging from "resting-state" BOLD ...
Brain activity at rest is characterized by widely distributed and spatially specific patterns of syn...
During complex tasks, patterns of functional connectivity differ from those in the resting state. Ho...
considered separately. a standard state of brain organization that is modified as neces-an ‘‘intrins...
Brain activity at rest is characterized by widely distributed and spatially specific patterns of syn...
Brain activity at rest is characterized by widely distributed and spatially specific patterns of syn...
Brain activity at rest is characterized by widely distributed and spatially specific patterns of syn...
Brain activity at rest is characterized by widely distributed and spatially specific patterns of syn...
Intrinsic Connectivity Networks, patterns of correlated activity emerging from “resting-state” BOLD ...
Functional connectivity (FC) studies have predominantly focused on resting state, where ongoing dyna...
Intrinsic Connectivity Networks, patterns of correlated activity emerging from "resting-state" BOLD ...