OBJECTIVES: To investigate the function-structure relationship of white matter within different stages of Huntington's disease (HD) using diffusion tensor imaging (DTI). EXPERIMENTAL DESIGN: From the TRACK-HD study, an early stage HD group and a premanifest gene carrier group (PMGC) were age-matched to two healthy control groups; all underwent 3-T MRI scanning of the brain. Region of interest (ROI) segmentation of the corpus callosum, caudate nucleus, thalamus, prefrontal cortex, and sensorimotor cortex was applied, and the apparent fiber pathways of these regions were analyzed. Functional measures of motor, oculomotor, cognition, and behavior were correlated to DTI measures. PRINCIPLE OBSERVATIONS: In PMGC versus controls, higher apparent ...
Huntington disease (HD) is most widely known for its selective degeneration of striatal neurons but ...
Objectives: To investigate both cross-sectional and time-related changes of striatal and whole-brain...
Objectives: To investigate both cross-sectional and time-related changes of striatal and whole-brain...
OBJECTIVES: To investigate the function-structure relationship of white matter within different stag...
Objectives: To investigate the function-structure relationship of white matter within different stag...
Objective: To investigate structural connectivity and the relationship between axonal microstructure...
Objective: The striatum and its projections are thought to be the earliest sites of Huntington's dis...
Huntington disease (HD) is most widely known for its selective degeneration of striatal neurons but ...
Objective: The striatum and its projections are thought to be the earliest sites of Huntington's dis...
Objective: The striatum and its projections are thought to be the earliest sites of Huntington's dis...
Huntington disease (HD) is most widely known for its selective degeneration of striatal neurons but ...
Objective: The striatum and its projections are thought to be the earliest sites of Huntington's dis...
Objective: To quantify 18-month changes in white matter microstructure in premanifest (pre-HD) and s...
Huntington disease (HD) is most widely known for its selective degeneration of striatal neurons but ...
Huntington disease (HD) is most widely known for its selective degeneration of striatal neurons but ...
Huntington disease (HD) is most widely known for its selective degeneration of striatal neurons but ...
Objectives: To investigate both cross-sectional and time-related changes of striatal and whole-brain...
Objectives: To investigate both cross-sectional and time-related changes of striatal and whole-brain...
OBJECTIVES: To investigate the function-structure relationship of white matter within different stag...
Objectives: To investigate the function-structure relationship of white matter within different stag...
Objective: To investigate structural connectivity and the relationship between axonal microstructure...
Objective: The striatum and its projections are thought to be the earliest sites of Huntington's dis...
Huntington disease (HD) is most widely known for its selective degeneration of striatal neurons but ...
Objective: The striatum and its projections are thought to be the earliest sites of Huntington's dis...
Objective: The striatum and its projections are thought to be the earliest sites of Huntington's dis...
Huntington disease (HD) is most widely known for its selective degeneration of striatal neurons but ...
Objective: The striatum and its projections are thought to be the earliest sites of Huntington's dis...
Objective: To quantify 18-month changes in white matter microstructure in premanifest (pre-HD) and s...
Huntington disease (HD) is most widely known for its selective degeneration of striatal neurons but ...
Huntington disease (HD) is most widely known for its selective degeneration of striatal neurons but ...
Huntington disease (HD) is most widely known for its selective degeneration of striatal neurons but ...
Objectives: To investigate both cross-sectional and time-related changes of striatal and whole-brain...
Objectives: To investigate both cross-sectional and time-related changes of striatal and whole-brain...