Publications by authors named "S R Page"

Antimicrobial stewardship (AMS) is a commonly advocated approach to address antimicrobial resistance. However, AMS is often defined in different ways depending on where it is applied, such that a range of definitions is now in use. These definitions may be functional and well-structured for a given context but are often ill-adapted for collaborative work, creating difficulties for intersectoral communication on AMS and complicating the design, implementation, and evaluation of AMS interventions from a One Health perspective.

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Introduction: Current care plans for stroke survivors typically focus on acute management, resulting in many stroke survivors being discharged to their communities without adequate follow-up, despite their often experiencing significant post-stroke complications, such as post-stroke spasticity (PSS). While studies have explored the incidence and prevalence of PSS, little is known about how early PSS develops and how many stroke survivors develop 'problematic' PSS that would benefit from pharmacological treatment.

Methods And Analysis: EPITOME is a prospective, international, observational, epidemiological study of participants (aged 18-90 years) who develop paresis within days 3-14 of a first-ever stroke that occurred within the past 4 weeks.

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Double-strand breaks (DSBs) can initiate mitotic catastrophe, a complex oncosuppressive phenomenon characterized by cell death during or after cell division. Here we unveil how cell cycle-regulated DSB repair guides disparate cell death outcomes through single-cell analysis of extended live imaging. Following DSB induction in S or G2, passage of unresolved homologous recombination intermediates into mitosis promotes non-immunogenic intrinsic apoptosis in the immediate attempt at cell division.

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Article Synopsis
  • The text discusses the characterization of a gene model for the ortholog of a specific gene in the Dyak_CAF1 Genome Assembly, which is documented in GenBank with the accession number GCA_000005975.1.
  • This gene model is part of a larger dataset aimed at understanding the evolution of the Insulin/insulin-like growth factor signaling pathway (IIS) across a particular genus.
  • The characterization was conducted using the Genomics Education Partnership's gene annotation protocol as part of undergraduate research experiences.
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