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Published on: February 14, 2012
Susceptibility-weighted MRI of extrapyramidal brain structures in Parkinsonian disorders
Eva Schneider1, Kia-Min Ng, Chooi-Sum Yeoh
1aDepartments of Diagnostic Radiology bClinical Research, Singapore General Hospital cDepartment of Neurology, National Neuroscience Institute dDuke-NUS Medical School, Singapore.
Abstract:
Susceptibility-weighted MRI (SWI) is sensitive to T2 effects and mineralization.We investigated differences in the extrapyramidal brain structures on SWI between Parkinson disease (PD) and postural instability gait disorder (PIGD) patients and correlated the SWI values with the degree of gait dysfunction.Forty patients diagnosed with PD and PIGD underwent 3 Tesla magnetic resonance imaging (MRI) brain study. An SWI sequence (TE/TR/FA 20/33/15) was used. Ten regions of interest were placed in the midbrain and basal ganglia by 2 independent raters blinded to subject data and quantitatively evaluated.The inter-rater reliability between the raters was excellent (interclass correlation coefficient >0.8). The SWI intensity values in all regions were on average lower in PIGD than in PD patients, with the lowest results found in globus pallidus.Multivariate analysis showed a lower SWI hypointensity in the putamen and globus pallidus in PIGD compared with PD patients, with a similar trend for the other basal ganglia nuclei. Pearson correlation analysis showed a statistically significant positive correlation between SWI putaminal hypointensity and the Tinetti total score (r = 0.39, P = 0.01) in both PD and PIGD.SWI putaminal hypointensity may be a useful imaging marker in prospective evaluation for clinical progression for Parkinsonian disorders.
Insights
Susceptibility-weighted MRI (SWI) reveals differences in brain structures between Parkinson disease (PD) and postural instability gait disorder (PIGD). SWI putaminal hypointensity may predict clinical progression in Parkinsonian disorders.
Area of Science:
- Neuroimaging
- Neurology
- Radiology
Background:
- Susceptibility-weighted MRI (SWI) is sensitive to T2 effects and mineralization in brain tissues.
- Extrapyramidal brain structures are implicated in Parkinson disease (PD) and postural instability gait disorder (PIGD).
Purpose of the Study:
- To investigate SWI differences in extrapyramidal brain structures between PD and PIGD patients.
- To correlate SWI values with gait dysfunction severity.
Main Methods:
- Forty PD and PIGD patients underwent 3 Tesla MRI with an SWI sequence.
- Ten regions of interest in the midbrain and basal ganglia were quantitatively evaluated by blinded raters.
- Inter-rater reliability was excellent (ICC >0.8).
Main Results:
- SWI intensity values were lower in PIGD compared to PD patients, particularly in the globus pallidus.
- Multivariate analysis indicated lower SWI hypointensity in the putamen and globus pallidus in PIGD versus PD.
- A significant positive correlation was found between SWI putaminal hypointensity and the Tinetti total score in both groups.
Conclusions:
- SWI reveals distinct patterns of hypointensity in basal ganglia structures between PD and PIGD.
- SWI putaminal hypointensity shows potential as an imaging biomarker for monitoring clinical progression in Parkinsonian disorders.
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