Objective Fetal brain diffusion tensor imaging (DTI) offers quantitative analysis of the developing brain. The objective was to 1) quantify DTI measures across gestation in a cohort of fetuses without brain abnormalities using full retrospective correction for fetal head motion 2) compare results obtained in utero to those in preterm infants. Materials and methods Motion-corrected DTI analysis was performed on data sets obtained at 1.5T from 32 fetuses scanned between 21.29 and 37.57 (median 31.86) weeks. Results were compared to 32 preterm infants scanned at 3T between 27.43 and 37.14 (median 33.07) weeks. Apparent diffusion coefficient (ADC) and fractional anisotropy (FA) were quantified by region of interest measurements and tractography...
The preterm delivery (<37 weeks gestation) rates are generally 5-9% in Europe, 12-13% in the US, and...
Measures obtained from diffusion-weighted imaging provide objective indices of white matter developm...
BACKGROUND AND PURPOSE: Diffusion-weighted MR imaging studies of normal brain development have focus...
Fetal brain diffusion tensor imaging (DTI) offers quantitative analysis of the developing brain. The...
Our purpose was to evaluate the within-subject reproducibility of in utero diffusion tensor imaging ...
The primary objective of this thesis was to establish quantitative measurements of normal fetal brai...
Diffusion-weighted imaging (DWI) provides information about tissue maturation not seen on convention...
Diffusion neuro-MRI has benefited significantly from sophisticated pre-processing procedures aimed a...
Diffusion neuro-MRI has benefited significantly from sophisticated pre-processing procedures aimed a...
Thehumanbrain is extraordinarily complex, and yet its origin is a simple tubular structure. Characte...
PURPOSE The non-invasiveness and sensitivity of diffusion weighted techniques (DWI) in detecting m...
Rapid and important cerebral developmental changes occur between the third trimester of gestation an...
An estimated 15 million infants are born preterm every year and, thanks to improvements in neonatal ...
In utero diffusion magnetic resonance imaging (MRI) provides unique opportunities to noninvasively s...
PURPOSE: Diffusion magnetic resonance imaging (dMRI) studies report altered white matter (WM) develo...
The preterm delivery (<37 weeks gestation) rates are generally 5-9% in Europe, 12-13% in the US, and...
Measures obtained from diffusion-weighted imaging provide objective indices of white matter developm...
BACKGROUND AND PURPOSE: Diffusion-weighted MR imaging studies of normal brain development have focus...
Fetal brain diffusion tensor imaging (DTI) offers quantitative analysis of the developing brain. The...
Our purpose was to evaluate the within-subject reproducibility of in utero diffusion tensor imaging ...
The primary objective of this thesis was to establish quantitative measurements of normal fetal brai...
Diffusion-weighted imaging (DWI) provides information about tissue maturation not seen on convention...
Diffusion neuro-MRI has benefited significantly from sophisticated pre-processing procedures aimed a...
Diffusion neuro-MRI has benefited significantly from sophisticated pre-processing procedures aimed a...
Thehumanbrain is extraordinarily complex, and yet its origin is a simple tubular structure. Characte...
PURPOSE The non-invasiveness and sensitivity of diffusion weighted techniques (DWI) in detecting m...
Rapid and important cerebral developmental changes occur between the third trimester of gestation an...
An estimated 15 million infants are born preterm every year and, thanks to improvements in neonatal ...
In utero diffusion magnetic resonance imaging (MRI) provides unique opportunities to noninvasively s...
PURPOSE: Diffusion magnetic resonance imaging (dMRI) studies report altered white matter (WM) develo...
The preterm delivery (<37 weeks gestation) rates are generally 5-9% in Europe, 12-13% in the US, and...
Measures obtained from diffusion-weighted imaging provide objective indices of white matter developm...
BACKGROUND AND PURPOSE: Diffusion-weighted MR imaging studies of normal brain development have focus...