Diffusion kurtosis imaging (DKI) can be used to estimate excess kurtosis, which is a dimensionless measure for the deviation of water diffusion profile from Gaussian distribution. Several recent studies have applied DKI to probe the restricted water diffusion in biological tissues. The directional analysis has also been developed to obtain the directionally specific kurtosis. However, these studies could not directly evaluate the sensitivity of DKI in detecting subtle neural tissue alterations. Brain maturation is known to involve various biological events that can affect water diffusion properties, thus providing a sensitive platform to evaluate the efficacy of DKI. In this study, in vivo DKI experiments were performed in normal Sprague-Da...
Imaging techniques that provide detailed insights into structural tissue changes after stroke can vi...
The most common modality of diffusion MRI used in the ageing and development studies is diffusion te...
Posters - HARDI & Diffusion Modeling: No. 4027As diffusion-weighted (DW) signal attenuation not only...
MR diffusion kurtosis imaging (DKI) was proposed recently to study the deviation of water diffusion ...
Session 37: HARDI & Higher Order Descriptions of Diffusion - Oral presentationThis study aims to inv...
Abstract—MR Diffusion kurtosis imaging (DKI) was proposed recently to study the deviation of water d...
Owing to the heterogeneity of biological system, particular brain tissues, water diffusion is often ...
Conference Theme: Personalized Healthcare Through TechnologyMR Diffusion kurtosis imaging (DKI) was ...
Since the transition from young to aged adult during the normal aging process leads to changes in gr...
Abstract Purpose To evaluate and determine age‐related changes in rat brains by studying the diffusi...
Diffusion tensor imaging (DTI) is the most commonly used technique to extract microstructural featur...
Diffusion tensor imaging (DTI) is the most commonly used technique to extract microstructural featur...
BACKGROUND AND PURPOSE: Diffusional kurtosis imaging is an extension of DTI but includes non-Gaussia...
BACKGROUND AND PURPOSE: Diffusional kurtosis imaging is an extension of DTI but includes non-Gaussia...
Diffusion tensor imaging (DTI) is the most commonly used technique to extract microstructural featur...
Imaging techniques that provide detailed insights into structural tissue changes after stroke can vi...
The most common modality of diffusion MRI used in the ageing and development studies is diffusion te...
Posters - HARDI & Diffusion Modeling: No. 4027As diffusion-weighted (DW) signal attenuation not only...
MR diffusion kurtosis imaging (DKI) was proposed recently to study the deviation of water diffusion ...
Session 37: HARDI & Higher Order Descriptions of Diffusion - Oral presentationThis study aims to inv...
Abstract—MR Diffusion kurtosis imaging (DKI) was proposed recently to study the deviation of water d...
Owing to the heterogeneity of biological system, particular brain tissues, water diffusion is often ...
Conference Theme: Personalized Healthcare Through TechnologyMR Diffusion kurtosis imaging (DKI) was ...
Since the transition from young to aged adult during the normal aging process leads to changes in gr...
Abstract Purpose To evaluate and determine age‐related changes in rat brains by studying the diffusi...
Diffusion tensor imaging (DTI) is the most commonly used technique to extract microstructural featur...
Diffusion tensor imaging (DTI) is the most commonly used technique to extract microstructural featur...
BACKGROUND AND PURPOSE: Diffusional kurtosis imaging is an extension of DTI but includes non-Gaussia...
BACKGROUND AND PURPOSE: Diffusional kurtosis imaging is an extension of DTI but includes non-Gaussia...
Diffusion tensor imaging (DTI) is the most commonly used technique to extract microstructural featur...
Imaging techniques that provide detailed insights into structural tissue changes after stroke can vi...
The most common modality of diffusion MRI used in the ageing and development studies is diffusion te...
Posters - HARDI & Diffusion Modeling: No. 4027As diffusion-weighted (DW) signal attenuation not only...