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Author

P. Boulinguez

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Open access Jul 2026

Reduced dorsal visual stream α2-adrenergic receptor availability is not associated with visuospatial impairment in Parkinson's disease.

BACKGROUND Visuospatial deficits are a common and disabling feature of Parkinson's disease (PD) that are linked to dysfunctions of the dorsal visual stream (DVS) and the cholinergic system. However, a body of evidence also points to the possible role of noradrenergic dysfunction, but direct in vivo evidence has remained lacking until the recent development of molecular imaging techniques. METHODS Thirty PD patients and thirty matched healthy controls underwent PET imaging using [11C]yohimbine, a new radiotracer now available for human use, to quantify α2-AR availability. Visuospatial cognition was assessed using the MoCA visuospatial subscore, the Visual Object and Space Perception (VOSP) Number Location subtest, and the 15-Objects test. RESULTS Compared with controls, PD patients showed reduced performance on the VOSP Number Location and 15-Objects tests (both p < 0.05). Voxel-wise analyses revealed reduced [11C]yohimbine binding in DVS regions, including the superior parietal lobule, posterior cingulate cortex, and supramarginal gyri (p_FWE <0.05), but no correlations were observed between α2-AR availability and visuospatial performances. Bayesian analyses provided moderate evidence for the absence of association (BF01 > 3). CONCLUSION Despite reduced α2-AR availability within DVS regions, no significant association was observed with visuospatial performance. These findings do not support a simple direct association between DVS α2-AR availability and visuospatial impairment in this cohort of patients with PD.

Maeliss Legrand, Alice Gaillard, C. Laurencin et al. · 0 citations
Open access Aug 2026

Hyperdirect projections from the supplementary motor area mediate subthalamic stimulation effects on movement initiation and inhibition in Parkinson’s disease

Improved movement initiation and increased impulsivity under stimulation of the subthalamic nucleus are linked to a shared anatomical and functional substrate, namely the subthalamic nucleus-supplementary motor cortex loop supporting automatic response inhibition.

Garance M. Meyer, Marion Albares, Guillaume Lio et al. · 0 citations

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