Connectome fingerprinting—a method that uses many thousands of functional connections in aggregate to identify individuals—holds promise for individualized neuroimaging. A better characterization of the features underlying successful fingerprinting performance—how many and which functional connections are necessary and/or sufficient for high accuracy—will further inform our understanding of uniqueness in brain functioning. Thus, here we examine the limits of high-accuracy individual identification from functional connectomes. Using ∼3,300 scans from the Human Connectome Project in a split-half design and an independent replication sample, we find that a remarkably small “thin slice” of the connectome—as few as 40 out of 64,620 functional co...
Although individual subjects can be identified with high accuracy using correlation matrices compute...
Individuals differ in their functional connectome, which can be demonstrated using a “fingerprinting...
Recent studies have shown that the brain functional connectome constitutes a unique fingerprint that...
Connectome fingerprinting—a method that uses many thousands of functional connections in aggregate t...
Connectomes are typically mapped at low resolution based on a specific brain parcellation atlas. Her...
A better characterization of how an individual’s brain is functionally organized will likely bring d...
Background: Functional connectivity quantifies the statistical dependencies between the activity of ...
A better characterization of how an individual's brain is functionally organized will likely bring d...
The neural underpinnings of individual identity reflected in cognition, behavior, and disease remain...
The prediction of inter-individual behavioural differences from neuroimaging data is a rapidly evolv...
Individual characterization of subjects based on their functional connectome (FC), termed “FC finger...
Brain connectome fingerprinting is rapidly rising as a novel influential field in brain network anal...
BACKGROUND: Functional connectome fingerprinting can identify individuals based on their functional ...
Functional connectivity (FC) analysis has revealed stable and reproducible features of brain network...
FAPESP - FUNDAÇÃO DE AMPARO À PESQUISA DO ESTADO DE SÃO PAULOCNPQ - CONSELHO NACIONAL DE DESENVOLVIM...
Although individual subjects can be identified with high accuracy using correlation matrices compute...
Individuals differ in their functional connectome, which can be demonstrated using a “fingerprinting...
Recent studies have shown that the brain functional connectome constitutes a unique fingerprint that...
Connectome fingerprinting—a method that uses many thousands of functional connections in aggregate t...
Connectomes are typically mapped at low resolution based on a specific brain parcellation atlas. Her...
A better characterization of how an individual’s brain is functionally organized will likely bring d...
Background: Functional connectivity quantifies the statistical dependencies between the activity of ...
A better characterization of how an individual's brain is functionally organized will likely bring d...
The neural underpinnings of individual identity reflected in cognition, behavior, and disease remain...
The prediction of inter-individual behavioural differences from neuroimaging data is a rapidly evolv...
Individual characterization of subjects based on their functional connectome (FC), termed “FC finger...
Brain connectome fingerprinting is rapidly rising as a novel influential field in brain network anal...
BACKGROUND: Functional connectome fingerprinting can identify individuals based on their functional ...
Functional connectivity (FC) analysis has revealed stable and reproducible features of brain network...
FAPESP - FUNDAÇÃO DE AMPARO À PESQUISA DO ESTADO DE SÃO PAULOCNPQ - CONSELHO NACIONAL DE DESENVOLVIM...
Although individual subjects can be identified with high accuracy using correlation matrices compute...
Individuals differ in their functional connectome, which can be demonstrated using a “fingerprinting...
Recent studies have shown that the brain functional connectome constitutes a unique fingerprint that...