Brain imaging genetics examines associations between imaging quantitative traits (QTs) and genetic factors such as single nucleotide polymorphisms (SNPs) to provide important insights into the pathogenesis of Alzheimer’s disease (AD). The individual level SNP-QT signals are high dimensional and typically have small effect sizes, making them hard to be detected and replicated. To overcome this limitation, this work proposes a new approach that identifies high-level imaging genetic associations through applying multigraph clustering to the SNP-QT association maps. Given an SNP set and a brain QT set, the association between each SNP and each QT is evaluated using a linear regression model. Based on the resulting SNP-QT association map, five S...
Motivation: Brain imaging genetics aims to reveal genetic effects on brain phenotypes, where most st...
Traditional image genetics primarily uses linear models to investigate the relationship between brai...
BackgroundDetecting association signals between the brain and the genome using ultrahigh‐dimensional...
Neuroimaging genetics is an emerging field that aims to identify the associations between genetic va...
Neuroimaging genetics is an emerging field that aims to identify the associations between genetic va...
Neuroimaging genetics is an emerging field that aims to identify the associations between genetic va...
As an efficient method, genome-wide association study (GWAS) is used to identify the association bet...
Most algorithms used for imaging genetics examine statistical effects of each individual genetic var...
Imaging genetics combines neuroimaging and genetics to assess the relationships between genetic vari...
Both genetic variants and brain region abnormalities are recognized to play a role in cognitive decl...
Alzheimer's disease (AD) is one of the most common neurodegenerative diseases. However, the AD mecha...
Indiana University-Purdue University Indianapolis (IUPUI)Imaging genetics is an emerging research fi...
Recent advances in the imaging-genetics field within Alzheimer’s disease (AD) have resulted in large...
Recent advances in the imaging-genetics field within Alzheimer’s disease (AD) have resulted in large...
Neuroimaging genetics is an emerging field that aims to identify the associations between genetic va...
Motivation: Brain imaging genetics aims to reveal genetic effects on brain phenotypes, where most st...
Traditional image genetics primarily uses linear models to investigate the relationship between brai...
BackgroundDetecting association signals between the brain and the genome using ultrahigh‐dimensional...
Neuroimaging genetics is an emerging field that aims to identify the associations between genetic va...
Neuroimaging genetics is an emerging field that aims to identify the associations between genetic va...
Neuroimaging genetics is an emerging field that aims to identify the associations between genetic va...
As an efficient method, genome-wide association study (GWAS) is used to identify the association bet...
Most algorithms used for imaging genetics examine statistical effects of each individual genetic var...
Imaging genetics combines neuroimaging and genetics to assess the relationships between genetic vari...
Both genetic variants and brain region abnormalities are recognized to play a role in cognitive decl...
Alzheimer's disease (AD) is one of the most common neurodegenerative diseases. However, the AD mecha...
Indiana University-Purdue University Indianapolis (IUPUI)Imaging genetics is an emerging research fi...
Recent advances in the imaging-genetics field within Alzheimer’s disease (AD) have resulted in large...
Recent advances in the imaging-genetics field within Alzheimer’s disease (AD) have resulted in large...
Neuroimaging genetics is an emerging field that aims to identify the associations between genetic va...
Motivation: Brain imaging genetics aims to reveal genetic effects on brain phenotypes, where most st...
Traditional image genetics primarily uses linear models to investigate the relationship between brai...
BackgroundDetecting association signals between the brain and the genome using ultrahigh‐dimensional...