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Stefano Delli Pizzi

3 papers in the library · 87 citations · publishing 2023

Papers

The central role of the Thalamus in psychosis, lessons from neurodegenerative diseases and psychedelics.

Transl Psychiatry December 13, 2023 Marco Onofrj, Mirella Russo, Stefano Delli Pizzi et al. 42 citations

Psychosis in Parkinson's disease and Dementia with Lewy Bodies shares underlying mechanisms with altered states of consciousness seen in REM sleep, psychiatric disorders, and psychedelic drug use. Dysregulated activity in high-order thalamic nuclei, driven by ThalamoCortical Dysrhythmia (TCD), is proposed as a crucial trigger. TCD disrupts finely tuned cortico-cortical modulations normally supported by the thalamus, leading to aberrant Default Mode Network (DMN) activity. This process alters thalamic filtering of internal and external information, causing cortical input overload and DMN decoupling from task-positive networks. These changes destabilize brain metastability, producing dreamlike, dissociative, or altered states. Psychedelic drugs similarly modulate thalamic-cortical pathways. Understanding this pathophysiology bridges neurology and psychiatry, offering promising avenues for investigation and therapy.

LSD-induced changes in the functional connectivity of distinct thalamic nuclei.

NeuroImage December 1, 2023 Stefano Delli Pizzi, Piero Chiacchiaretta, Carlo Sestieri et al. 27 citations

LSD selectively alters the functional connectivity between specific thalamic nuclei and sensory and associative cortical areas. Using structural and resting-state functional MRI in healthy volunteers under acute LSD administration, researchers found increased coupling of the ventral complex, pulvinar, and non-specific thalamic nuclei with somatosensory and auditory cortices, as well as with associative cortex regions rich in serotonin 2A receptors. At subcortical levels, LSD increased connectivity among these thalamic nuclei but decreased striatal-thalamic connectivity. These nucleus-specific changes help explain LSD's modulation of subcortical-cortical circuits and associated behavioral effects.

Spatial Correspondence of LSD-Induced Variations on Brain Functioning at Rest With Serotonin Receptor Expression.

Biological psychiatry. Cognitive neuroscience and neuroimaging July 1, 2023 Stefano Delli Pizzi, Piero Chiacchiaretta, Carlo Sestieri et al. 18 citations

LSD alters brain functional connectivity and local signal amplitude in opposite directions depending on the type of serotonin receptor involved. In healthy volunteers, LSD increased activity and connectivity in cortical regions of the default mode and attention networks, which have high densities of 5-HT2A receptors; these changes correlated with visual hallucinations. Conversely, LSD decreased activity and connectivity in limbic areas rich in 5-HT1A receptors. The spatial patterns of these functional changes overlapped with the distribution of the two serotonin receptor subtypes, suggesting distinct receptor-mediated mechanisms underlie LSD's reorganization of brain networks.