Related Experiment Video
Updated: Apr 23, 2026

Cerebellar Regional Dissection for Molecular Analysis
Published on: December 5, 2020
Corticospinal tract involvement in Spinocerebellar ataxias type 1, 2 and 3 characterized by motor evoked potentials
Qiong Cai1, Huajing You1, Wenxiao Xu1
1Department of Neurology, The First Affiliated Hospital, Sun Yat-sen University, Guangdong Provincial Key Laboratory of Diagnosis and Treatment of Major Neurological Diseases, National Key Clinical Department and Key Discipline of Neurology, No.58 Zhongshan Road 2, Guangzhou, 510080, China.
Introduction:
Spinocerebellar ataxias (SCAs) types 1, 2, and 3 are the most common autosomal dominant SCAs, characterized by neurodegeneration in the cerebellum, brainstem, and basal ganglia. However, corticospinal tract involvement remains underexplored using combined electrophysiological and neuroimaging approaches. This study aimed to investigate the electrophysiological and imaging characteristics of SCA subtypes.
Methods:
A total of 23 SCA1, 21 SCA2, and 40 SCA3 patients, along with 27 healthy controls, were enrolled. All subjects underwent neurological examination and motor evoked potential (MEP) testing. Additionally, SCA patients underwent diffusion kurtosis imaging (DKI). Correlations between central motor conduction time (CMCT) and corticospinal tract diffusion metrics, as well as clinical parameters, were analyzed.
Results:
All SCAs demonstrated prolonged CMCT in both upper and lower limbs. SCA3 patients exhibited significantly reduced MD values relative to SCA2 (P = 0.0437). Conversely, both SCA1 and SCA2 patients showed significantly lower FA, MK, and KFA values compared to SCA3. In SCA3 patients, lower limb CMCT correlated with DKI metrics (FA: r = -0.4815, P < 0.05; MK: r = -0.4411, P < 0.05) and disease duration (r = 0.5647, P = 0.0003), but not with streamline counts.
Conclusion:
This study identifies distinctive electrophysiological and microstructural corticospinal tract abnormalities across SCA cohorts. The observed correlations of CMCT with DKI parameters and disease duration in SCA3 suggest its potential as a biomarker for monitoring disease progression.
More Related Videos
Related Concept Videos
Indirect Motor Pathways
The vestibulospinal tract originates in the vestibular nuclei of the brainstem. The vestibular system detects changes in...
Direct Motor Pathways
The corticospinal tract is responsible for the voluntary movement of the limbs and trunk. It originates in the cerebral cortex of the brain and descends through the cerebrum's internal capsule and...
Major Somatic Sensory Pathways
Spinal Cord: Cross-sectional Anatomy
Gray Matter and its Components
Central to the gray matter is...
Secondary Spinal Cord Injury llI: Pathophysiology

