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Published on: February 2, 2021
Substantia Nigra Hyperechogenicity Predicts Parkinson's Disease Risk in Patients With Essential Tremor and
Xin Qu1, Ying Liu1, Jie Zhang1
1Department of Neurology, The Neuroscience Center, The First Hospital of Jilin University, Jilin University, Changchun, China.
Background And Objectives:
Transcranial sonography (TCS)-detected substantia nigra hyperechogenicity (SN+) is a potential biomarker for Parkinson's disease (PD). While SN+ may indicate PD risk in essential tremor (ET), longitudinal undetermined tremor (UT) data are lacking; insufficient cross-cohort validation hinders clinical translation. This study aimed to evaluate the predictive efficacy of SN+ for 8-year PD risk and its subtype-specific differences in ET/UT populations.
Methods:
180 patients with tremors who underwent TCS were enrolled and categorized based on the tremor type (ET/UT) and SN echogenicity grade (SN+/SN-). 127 patients (59 with ET, 68 with UT) completed a mean follow-up period of 8.01 years (range: 7.41-8.67; median: 7.92), during which new-onset PD was documented.
Results:
In the ET cohort, 52.4% of SN+ individuals developed PD, compared to 7.9% in the SN- group. For UT, the PD incidence was 91.2% in SN+ individuals and 50.0% in SN- individuals. Multivariable-adjusted Firth logistic regression revealed significant associations between SN+ and PD in the ET and UT groups. Moreover, Bayesian logistic regression confirmed SN+ was significantly associated with PD risk in both groups. The posterior probability of an odds ratio exceeding 5 for SN+ was greater than 80% in both cohorts. Subgroup interaction analysis demonstrated no evidence of effect modification by tremor subtype, indicating consistent SN+ effects across cohorts.
Conclusions:
TCS-detected SN+ is a predictor of PD progression over 8 years in both ET and UT cohorts. The consistent risk association across tremor subtypes in SN+ subgroups supports its clinical potential as a cross-tremor subtype biomarker.
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