Publications by authors named "T A McPherson"

Background: Opioid crisis is a national issue with significant economic burden and marked increase in opioid-related deaths, particularly following surgical procedures. Reducing opioid requirements while maintaining effective analgesia is critically challenging, perioperatively. Multimodal drug regimens and guided regional anesthesia (RA) have been adopted to address this issue.

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Study Objectives: Inflammatory and immune mechanisms are considered in restless legs syndrome (RLS) pathophysiology with several autoimmune diseases associated with RLS. There is a paucity of studies examining RLS prevalence in myasthenia gravis (MG), an autoimmune neuromuscular disease. This study investigated RLS prevalence and association with patient-reported measures in a large registry of participants with MG using a validated RLS diagnostic questionnaire.

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Article Synopsis
  • Children with tuberous sclerosis complex (TSC) have a high risk of developing drug-resistant epilepsy (DRE), making it crucial to identify those at greatest risk for timely management.
  • The study analyzed data from 70 infants with TSC to evaluate the relationship between specific TSC genotypes and the likelihood of experiencing DRE, using a variety of statistical methods.
  • Findings revealed that TSC2 pathogenic variants were strongly linked to DRE, with all DRE cases found in participants carrying TSC2 mutations; in contrast, TSC1 variants were associated with later-onset epilepsy, highlighting important differences in risk profiles.
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To support complex cognition, neuronal circuits must integrate information across multiple temporal scales, ranging from milliseconds to decades. Neuronal timescales describe the duration over which activity within a network persists, posing a putative explanatory mechanism for how information might be integrated over multiple temporal scales. Little is known about how timescales develop in human neural circuits or other model systems, limiting insight into how the functional dynamics necessary for cognition emerge.

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