In this study we longitudinally investigated the rate of microstructural alterations in the occipital cortex in different stages of Huntington’s disease (HD) by applying an automated atlas-based approach to diffusion MRI data. Twenty-two premanifest (preHD), 10 early manifest HD (early HD) and 24 healthy control subjects completed baseline and two year follow-up scans. The preHD group was stratified based on the predicted years to disease onset into a far (preHD-A) and near (preHD-B) to disease onset group. Clinical and behavioral measures were collected per assessment time point. An automated atlas-based DTI analysis approach was used to obtain the mean, axial and radial diffusivities of the occipital cortex. We found that the longitudinal...
Objective: To determine whether brain imaging markers of tissue microstructure can detect the e...
BACKGROUND: Huntington’s disease is marked by progressive neuroanatomical changes, assumed to underl...
Huntington disease (HD) is most widely known for its selective degeneration of striatal neurons but ...
In this study we longitudinally investigated the rate of microstructural alterations in the occipita...
Objectives: To investigate both cross-sectional and time-related changes of striatal and whole-brain...
ObjectivesDiffusivity in white-matter tracts is abnormal throughout the brain in cross-sectional stu...
ObjectivesDiffusivity in white-matter tracts is abnormal throughout the brain in cross-sectional stu...
Objective: The striatum and its projections are thought to be the earliest sites of Huntington's dis...
This paper investigated cortical folding in Huntington’s disease to understand how disease progressi...
Objective: To quantify 18-month changes in white matter microstructure in premanifest (pre-HD) and s...
Objectives: To investigate the function-structure relationship of white matter within different stag...
Background: The occipital lobe is an important visual processing region of the brain. Following cons...
The striatum is the principal site of disease pathology in Huntington’s disease and contains neural ...
OBJECTIVES: To investigate the function-structure relationship of white matter within different stag...
BACKGROUND: Huntington's disease is marked by progressive neuroanatomical changes, assumed to underl...
Objective: To determine whether brain imaging markers of tissue microstructure can detect the e...
BACKGROUND: Huntington’s disease is marked by progressive neuroanatomical changes, assumed to underl...
Huntington disease (HD) is most widely known for its selective degeneration of striatal neurons but ...
In this study we longitudinally investigated the rate of microstructural alterations in the occipita...
Objectives: To investigate both cross-sectional and time-related changes of striatal and whole-brain...
ObjectivesDiffusivity in white-matter tracts is abnormal throughout the brain in cross-sectional stu...
ObjectivesDiffusivity in white-matter tracts is abnormal throughout the brain in cross-sectional stu...
Objective: The striatum and its projections are thought to be the earliest sites of Huntington's dis...
This paper investigated cortical folding in Huntington’s disease to understand how disease progressi...
Objective: To quantify 18-month changes in white matter microstructure in premanifest (pre-HD) and s...
Objectives: To investigate the function-structure relationship of white matter within different stag...
Background: The occipital lobe is an important visual processing region of the brain. Following cons...
The striatum is the principal site of disease pathology in Huntington’s disease and contains neural ...
OBJECTIVES: To investigate the function-structure relationship of white matter within different stag...
BACKGROUND: Huntington's disease is marked by progressive neuroanatomical changes, assumed to underl...
Objective: To determine whether brain imaging markers of tissue microstructure can detect the e...
BACKGROUND: Huntington’s disease is marked by progressive neuroanatomical changes, assumed to underl...
Huntington disease (HD) is most widely known for its selective degeneration of striatal neurons but ...