The group of liquidators of Chernobyl Nuclear Power Plant accident (n=170) with nonpsychotic mental disorders of exogenic-organic origin was studied. Patients were stratified into five groups on the basis of dominating symptoms in different stages of disorders: group 1 included patients with the prevalence of asthenic symptoms (n=104); group 2 - with the prevalence of autonomous disorders (n=37); group 3 - with the marked neurotic-like symptom complex (n=10); group 4 - with depressive symptoms (n=10); group 5 - with disturbances of cognitive function. The control group included 150 healthy people. Recording and mapping of coherence (COH) of the brain electrical activity was conducted using the apparatus-software complex for topographic mapping of brain electrical activity NEURO-CM (Russia) with the bandwidth from 0 to 40 Hz and the time constant of 0.3 sec. The EEG record was carried out monopolar from symmetrical cortical zones (10-20% scheme). Changes of COH were characterized by staging in patients compared to the controls. In the initial stage of disease, the integrative links were decreased in the temporal cortical zones of the left hemisphere. The reduction of functional activity in temporal-central cortical zones was found that might be the consequence of mesodiencephalic dysfunction. In the later stages, temporal zones of the right hemisphere were mostly affected. The parallel reinforcement of functional activity of occipital zones, in particular, the increase of 'long links' with frontal areas, was noted in the overall formation of the psychoorganic syndrome. This phenomenon may be considered as a compensatory mechanism when the phylogenetically older cortical zones, which are more resistant to pathological changes, become leaders in the realization of integrative brain activity during the development of a pathological state.
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Chaos
January 2025
Beijing Institute of Functional Neurosurgery, Xuanwu Hospital, Capital Medical University, Beijing 100053, China.
Generally, epilepsy is considered as abnormally enhanced neuronal excitability and synchronization. So far, previous studies on the synchronization of epileptic brain networks mainly focused on the synchronization strength, but the synchronization stability has not yet been explored as deserved. In this paper, we propose a novel idea to construct a hypergraph brain network (HGBN) based on phase synchronization.
View Article and Find Full Text PDFJ Shoulder Elbow Surg
January 2025
Investigation Performed at the University of Washington, Department of Orthopaedic Surgery and Sports Medicine, Seattle, WA, USA. Electronic address:
Background: While stress shielding and adaptive bone changes around the humeral component are often observed after shoulder arthroplasty, the potential causative factors and clinical significance of these findings at mid-term follow-up have not been well elucidated. The purpose of this study was to investigate the frequency, patterns and clinical significance of radiographic findings around the humeral component of total shoulder arthroplasty (TSA) and hemiarthroplasty (HA) at minimum 4-year follow-up.
Methods: The 6-week and minimum 4-year radiographs of patients who underwent HA and TSA were evaluated for filling ratios, changes in the humeral bone surrounding the component, and component shift or subsidence.
1The brains of Parkinson's disease (PD) patients are characterized by the presence of Lewy body inclusions enriched with fibrillar forms of the presynaptic protein alpha-synuclein (aSyn). Despite related evidence that Lewy pathology spreads across different brain regions as the disease progresses, the underlying mechanism hence the fundamental cause of PD progression is unknown. The propagation of aSyn pathology is thought to potentially occur through the release of aSyn aggregates from diseased neurons, their uptake by neighboring healthy neurons via endocytosis, and subsequent seeding of native aSyn aggregation in the cytosol.
View Article and Find Full Text PDFBiol Psychiatry Glob Open Sci
January 2025
Biomedical Research Institute, Foundation for Research and Technology-Hellas, University Campus, Ioannina, Greece.
Background: The polygenic nature of autism spectrum disorder (ASD) requires the identification of converging genetic pathways during early development to elucidate its complexity and varied manifestations.
Methods: We developed a human cerebral organoid model from induced pluripotent stem cells with targeted genome editing to abolish protein expression of the ASD risk gene.
Results: CNTNAP2 cerebral organoids displayed accelerated cell cycle, ventricular zone disorganization, and increased cortical folding.
Neuroscience
December 2024
Dr. B.R. Ambedkar Center for Biomedical Research (ACBR), University of Delhi, Delhi, India. Electronic address:
Focal Cortical Dysplasia (FCD) & Mesial Temporal Lobe Epilepsy-Hippocampal Sclerosis (MTLE-HS) are two common pathologies of drug-resistant focal epilepsy (DRE). Inappropriate localization of the epileptogenic zones (EZs) in FCD is a significant contributing factor to the unsatisfactory surgical results observed in FCD cases. Currently, no molecular or cellular indicators are available which can aid in identifying the epileptogenic zones (EZs) in FCD.
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