Related Experiment Video
Updated: Feb 4, 2026

Cerebral Blood Flow-Based Resting State Functional Connectivity of the Human Brain using Optical Diffuse Correlation Spectroscopy
Published on: May 27, 2020
Intranasal oxytocin and OXTR genotype effects on resting state functional connectivity: A systematic review
Saren H Seeley1, Ying-Hui Chou1, Mary-Frances O'Connor1
1Department of Psychology, University of Arizona, Tucson, AZ, USA.
Objective:
Evaluate effects of intranasal oxytocin (IN-OT) and OXTR genotype on resting state functional connectivity in the human brain.
Methods:
We searched research databases for peer-reviewed empirical studies. Of 71 unique citations, 18 articles (13 IN-OT, five OXTR) met full inclusion criteria.
Results:
Two studies examined effects on large-scale networks; most examined acute effects on amygdala connectivity with other social and affective regions. OXTR studies identified three polymorphisms (rs2254298, rs2268498, rs53576) having allele- and sex-dependent effects on prefrontal functional connectivity, and additive effects of OXTR risk alleles on reward circuitry. Age, sex, early life stress, and psychopathology emerged as potential moderators of both IN-OT and OXTR effects.
Discussion:
IN-OT appears to modulate resting state functional connectivity in a manner similar to its effects on task fMRI, consistent with hypothesized models of IN-OT. However, conclusions are limited by the narrow range of neuroanatomical seed regions, and methodological and experimental design heterogeneity. Future studies should take into account individual differences. Findings may provide insight into mechanisms through which IN-OT impacts human behavior.
Related Concept Videos
Functions of Connective Tissues
Hard connective tissues, such as bones and cartilage, provide structure and support to the body.
The Resting Membrane Potential
Review and Preview
Percentiles are a type of fractile that partition data into...
Review and Preview
Resting Membrane Potential
The Inside of a Neuron is More Negative
The membrane potential of a cell can be measured by inserting a microelectrode into a cell and comparing the charge to a reference electrode in the extracellular fluid. The...
Resting Potential Decay
At rest, the K+ is the main ion that moves across the membrane...

