A non-invasive functional MRI (fMRI) has emerged effective in the investigation of the functionality of human brain. However, detection of functional activation is often complicated by the presence of noise. In this paper, we propose an approach based on correntropy, a recently introduced measure which incorporates both amplitude and temporal structure characteristics of time series in single functional measure. Using correntropy coefficient as the test statistic, nonparametric approach is carried out via pre-whitening resampling transform to calculate the statistical p-values. Experimental results suggest that proposed method enables more effective brain activation detection compared with mutual information
Functional Magnetic Resonance Imaging (fMRI) technique is used to evaluate and visualize human brain...
Abstract: We present a method that enables the use of nonparametric EDF-like statistics for analysin...
A new information-theoretic approach is presented for analyzing fMRI data to calculate the brain act...
© 2018 Dr. Muhammad Ali QadarFunctional magnetic resonance imaging (fMRI) is a powerful non-invasive...
Detection of functional MRI activation signal and observing the functional connectivity in the spati...
Functional magnetic resonance imaging (fMRI) is a technique that is sensitive to correlates of neuro...
Functional neuroimaging involves the study of cognitive scientific questions by measuring and modell...
Most of functional magnetic resonance imaging (fMRI) time series analysis is based on single voxel d...
Two questions arising in the analysis of functional magnetic resonance imaging (fMRI) data acquired ...
Nontask functional magnetic resonance imaging (fMRI) has become one of the most popular noninvasive ...
Spatial and temporal correlations which affect the signal measured in functional MRI (fMRI) are usua...
New algorithms for correlation analysis are presented that allow the mapping of brain activity from ...
New algorithms for correlation analysis are presented that al-low the mapping of brain activity from...
New algorithms for correlation analysis are presented that allow the mapping of brain activity from ...
In this paper we describe a method for functional connectivity analysis of fMRI data between given b...
Functional Magnetic Resonance Imaging (fMRI) technique is used to evaluate and visualize human brain...
Abstract: We present a method that enables the use of nonparametric EDF-like statistics for analysin...
A new information-theoretic approach is presented for analyzing fMRI data to calculate the brain act...
© 2018 Dr. Muhammad Ali QadarFunctional magnetic resonance imaging (fMRI) is a powerful non-invasive...
Detection of functional MRI activation signal and observing the functional connectivity in the spati...
Functional magnetic resonance imaging (fMRI) is a technique that is sensitive to correlates of neuro...
Functional neuroimaging involves the study of cognitive scientific questions by measuring and modell...
Most of functional magnetic resonance imaging (fMRI) time series analysis is based on single voxel d...
Two questions arising in the analysis of functional magnetic resonance imaging (fMRI) data acquired ...
Nontask functional magnetic resonance imaging (fMRI) has become one of the most popular noninvasive ...
Spatial and temporal correlations which affect the signal measured in functional MRI (fMRI) are usua...
New algorithms for correlation analysis are presented that allow the mapping of brain activity from ...
New algorithms for correlation analysis are presented that al-low the mapping of brain activity from...
New algorithms for correlation analysis are presented that allow the mapping of brain activity from ...
In this paper we describe a method for functional connectivity analysis of fMRI data between given b...
Functional Magnetic Resonance Imaging (fMRI) technique is used to evaluate and visualize human brain...
Abstract: We present a method that enables the use of nonparametric EDF-like statistics for analysin...
A new information-theoretic approach is presented for analyzing fMRI data to calculate the brain act...