Aberrant cortical subcortical somatosensory network organization is associated with impaired tactile-motion perception in akinetic-rigid Parkinson's disease
Qu, B.; Jiang, Y.; Yue, Y.; Shen, T.; Gao, C.; Huang, D.; Shen, Y.; De Zeeuw, C.; Zhang, B.; Lai, H.-Y.
Show abstract
BackgroundParkinsons disease (PD) is associated with somatosensory dysfunction, yet higher-order tactile-motion processing and its neural basis remain poorly understood. Here, we combined psychophysical assessment of tactile-motion perception with resting-state functional MRI (rs-fMRI) to investigate how altered sensorimotor network organization relates to tactile perceptual deficits in akinetic-rigid dominant PD (PDAR). MethodsForty-six participants (25 PDAR and 21 healthy controls, HCs) underwent clinical evaluation and resting-state functional MRI scanning. A subset of participants (15 PDAR and 15 HCs) additionally completed a tactile-motion perception task assessing directional bias and speed sensitivity. ROI-to-ROI functional connectivity analyses were performed within a customized 26-node sensorimotor and cortico-basal ganglia-thalamo-cortical (CBGTC) network. ResultsCompared with HCs, PDAR patients exhibited significantly altered tactile-motion perception, including greater directional bias (p = 0.047) and reduced sensitivity to dynamic tactile speed (p < 0.001), reflecting diminished sensitivity to mid-to-high speeds. Resting-state functional connectivity analyses revealed widespread reductions in connectivity within cortical somatosensory regions (Areas 1, 2, 3a, 3b, 5), particularly between primary somatosensory and motor cortices. In contrast, increased connectivity was observed between basal ganglia-thalamic structures and cortical sensorimotor regions, including thalamus-M1 and GPi-sensorimotor connections (all p-FDR < 0.05). ConclusionsThese findings demonstrate a dual pattern of sensorimotor network reorganization in PDAR, characterized by disrupted cortical somatosensory integration alongside enhanced subcortical-cortical coupling. The present study provides evidence that higher-order tactile-motion dysfunction in PD is associated with large-scale abnormalities in distributed sensorimotor networks and highlights the somatosensory system as a potential target for future therapeutic intervention.
Matching journals
The top 11 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Neural Correlates of Impulsive Compulsive Behaviors in Parkinson’s Disease: A Japanese Retrospective Study 94%
- Improving fMRI in Parkinson's Disease by Accounting for Brain Region-Specific Activity Patterns 93%
- Striatal dopamine synthesis capacity in Parkinson's disease: Effects of age, sex, and body mass index in a large fluorodopa PET cohort 92%
Similar papers in this journal
- Attenuation of neural responses in subthalamic nucleus during internally guided voluntary movements in Parkinson's disease 95%
- EEG Dynamical Features during Variable-Intensity Cycling Exercise in Parkinson's Disease 91%
- Retrospective Exploratory Analysis of Task-Specific Effects on Brain Activity after Stroke 89%
Similar papers in this journal
- Changes in electrophysiological aperiodic activity during cognitive control in Parkinson's disease 94%
- Visual self-motion cues are impaired in Parkinson's disease yet over-weighted during visual-vestibular integration 94%
- Reduction of spontaneous cortical beta bursts in Parkinson’s disease is linked to symptom severity 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.