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Aleali, A.

Publications and source records attributed to Aleali, A..

2 recordsLinked to original sources

Longitudinal Reorganization of Cortical and Cerebellar Functional Networks in Spinocerebellar Ataxia Type 7

Spinocerebellar ataxia type 7 (SCA7) is a rare neurodegenerative disorder characterized by progressive cerebellar ataxia and visual impairment. We investigated longitudinal changes in resting-state functional connectivity and their clinical associations. Resting-state functional MRI was acquired from 16 individuals with SCA7 and 16 age- and sex-matched healthy controls across three visits over 24 months. Network-to-network functional connectivity was quantified, and machine-learning models were trained using functional connectivity features. SCA7 showed lower MoCA (p = 0.045) and MMSE (p = 0.025) scores and progressive worsening of ataxia (SARA, p < 0.001). Significant Group x Visit interactions were observed for Visual-Default Mode (p = 0.012) and Somatomotor-Cerebellar Dorsal Attention connectivity (p = 0.038). Functional connectivity abnormalities involved cortical, cortico-cerebellar, and cerebellar networks that became more widespread at the final follow-up assessment, with the visual network emerging as the most consistently affected system across analyses. Functional connectivity abnormalities were associated with cognitive performance (MMSE: r = -0.62, p = 0.01) and disease severity (SARA: r = 0.589, p = 0.016). Functional connectivity features accurately classified SCA7 and healthy controls (accuracy = 96.4%, F1 = 0.969). These findings support resting-state functional connectivity as a candidate biomarker warranting further validation in larger, independent cohorts.

neuroscience↗

Pain-regulation circuitry as a predictor of chronic pain phenotypes

Chronic pain involves sensory, emotional, and functional disruption, yet diagnostic labels rarely capture this variability, limiting individualized care. Multidimensional models, such as fear-avoidance and predictive coding, suggest that high emotional burden may disrupt expectation-based pain modulation and midbrain pain regulatory pathways, particularly within the periaqueductal gray (PAG). We tested whether chronic pain phenotypes defined by pain intensity, disability, and affective distress (PDA) differ in expectation-induced pain modulation, PAG connectivity, and behavioral markers including catastrophizing, hypervigilance, and medication use, and whether these features aid phenotype classification. We studied 159 patients with fibromyalgia or chronic low back pain and 72 controls. Our data-driven clustering approach identified high and low PDA groups. High PDA patients showed impaired modulation when positive expectations were violated and reported greater cognitive and behavioral burden (P<0.05). They also exhibited more negative connectivity between the dorsolateral/lateral PAG (dl/lPAG) and the dorsomedial prefrontal cortex (dmPFC) (corrected). Machine learning models classified PDA subtypes above chance, with accuracy improving when PAG connectivity was included. Findings highlight disrupted expectation-driven regulation and altered PAG pathways as markers for chronic pain stratification.

neuroscience↗