Publications by authors named "T Ahiko"

Article Synopsis
  • - Japan's approach to COVID-19 has focused on a cluster-based strategy, considering the varying levels of virus transmission (overdispersion) throughout the pandemic.
  • - Research aimed to investigate how transmission heterogeneity shifted with new variants like Alpha, Delta, and Omicron in Yamagata Prefecture, using detailed contact tracing data.
  • - Findings indicated that even with the emergence of new variants, transmission variability persisted, emphasizing the need for ongoing monitoring and a sustainable system for analyzing epidemic data.
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Measles is a highly contagious, but vaccine-preventable disease caused by the measles virus (MeV). Although the administration of two doses of measles vaccines is the most effective strategy to prevent and eliminate measles, MeV continues to spread worldwide, even in 2022. In measles-eliminated countries, preparedness and response to measles outbreaks originating from imported cases are required to maintain elimination status.

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Public health interventions have played an important role in controlling coronavirus disease 2019 (COVID-19), which is a rapidly spreading infectious disease. To contribute to future COVID-19 countermeasures, we aimed to verify the results of the countermeasures employed by public health centers (PHCs) against the first wave of COVID-19 in Yamagata Prefecture, Japan (Yamagata). Between January and May 2020, 1,253 patients suspected of SARS-CoV-2 infection were invited for testing.

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This paper reports a case of nosocomial transmission of Mycobacterium tuberculosis by brief casual contact. Routine variable number tandem repeat typing in Yamagata Prefecture, Japan found that M. tuberculosis clinical isolates from two patients showed indistinguishable genotypes.

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