Background: Decades of experimental and clinical data revealed that spreading depolarizations (SDs) play a central causal role in the development of cortical lesions after acute brain injury. However, clinical documentation of events at the onset of focal ischemic stroke and during the initial phase of cortical injury development is lacking because electroencephalography monitoring of SD typically starts hours or days later. Here, we used nonhuman primates to map electrophysiological pathology through focal ischemic stroke's onset and acute stage.
View Article and Find Full Text PDFJ Neurol Neurosurg Psychiatry
January 2025
Background: We quantify the loss of working years for people with epilepsy compared with the general population and consider variation by aetiology, psychiatric comorbidity, sex and age.
Methods: This population-based cohort study included all individuals aged 18-65 years living in Denmark from 1995 to 2018. Using nationwide registers since 1977, we identified people with epilepsy and obtained information on the main source of income or employment for each year during follow-up from 1995 to 2020.
Background: The term "aura" refers to a well-defined pattern of usually positive, progressive, and reversible neurological symptoms, with spreading depolarization as the underlying mechanism. While commonly associated with migraine, aura can also occur in other neurological disorders (i.e.
View Article and Find Full Text PDFSpreading depolarization (SD) describes a propagating neuronal mass depolarization within the cerebral cortex that represents a mediator of infarct development and strongly stimulates the metabolic rate of O2 consumption. Here, we investigated the influence of Spreading Depolarization (SD) on brain tissue partial pressure of O2 (ptiO2) within the peri-infarct tissue of patients suffering malignant hemispheric stroke (MHS). This prospective observational trial included 25 patients with MHS that underwent decompressive hemicraniectomy followed by subdural placement of electrodes for electrocorticography (ECoG) and neighboring implantation of a ptiO2 probe within the peri-infarcted cortex.
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