7 research outputs found

    The Effect of State Level COVID-19 Stay-at-Home Orders on Death Rates

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    This paper attempts to examine a correlation between lockdown length and COVID-19 case rate, death rate and fatality rate. In March of 2020, the publishing of alarmist epidemiological models prompted government officials to enact sweeping emergency measures (Miltimore 2020). Notably, the Imperial College London model published by epidemiologist Neil Ferguson predicted a “best-case scenario” of 1.1 million COVID-19 deaths in the U.S. by August 2020. This model heightened concern that the hospital system would be overwhelmed, a reason cited by President Trump’s Coronavirus Task Force members, Dr. Birx and Dr. Fauci, as justification for the “15 Days to Flatten the Curve” shutdown (Magness 2020). The question of where to place blame, or praise, for the handling of the COVID-19 response, like the spread of the virus, is ongoing. United States politicians almost immediately began pointing the finger at “the other side” from the first days of public awareness of the novel virus. The federal government, and specifically former President Trump have come under fire for their approach to handling the emergency response to the virus’s spread and the economic fallout that followed (Yoo 2020)

    Sense of coherence and diabetes: A prospective occupational cohort study

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    <p>Abstract</p> <p>Background</p> <p>Sense of coherence (SOC) is an individual characteristic related to a positive life orientation leading to effective coping. A weak SOC has been associated with indicators of general morbidity and mortality. However, the relationship between SOC and diabetes has not been studied in prospective design. The present study prospectively examined the relationship between a weak SOC and the incidence of diabetes.</p> <p>Methods</p> <p>The relationship between a weak SOC and the incidence of diabetes was investigated among 5827 Finnish male employees aged 18–65 at baseline (1986). SOC was measured by questionnaire survey at baseline. Data on prescription diabetes drugs from 1987 to 2004 were obtained from the Drug Imbursement Register held by the Social Insurance Institution.</p> <p>Results</p> <p>During the follow-up, 313 cases of diabetes were recorded. A weak SOC was associated with a 46% higher risk of diabetes in participants who had been =<50 years of age on entry into the study. This association was independent of age, education, marital status, psychological distress, self-rated health, smoking status, binge drinking and physical activity. No similar association was observed in older employees.</p> <p>Conclusion</p> <p>The results suggest that besides focusing on well-known risk factors for diabetes, strengthening SOC in employees of =<50 years of age can also play a role in attempts to tackle increasing rates of diabetes.</p

    Sequencing of the Sea Lamprey (Petromyzon marinus) Genome Provides Insights into Vertebrate Evolution

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    Lampreys are representatives of an ancient vertebrate lineage that diverged from our own ∼500 million years ago. By virtue of this deeply shared ancestry, the sea lamprey (P. marinus) genome is uniquely poised to provide insight into the ancestry of vertebrate genomes and the underlying principles of vertebrate biology. Here, we present the first lamprey whole-genome sequence and assembly. We note challenges faced owing to its high content of repetitive elements and GC bases, as well as the absence of broad-scale sequence information from closely related species. Analyses of the assembly indicate that two whole-genome duplications likely occurred before the divergence of ancestral lamprey and gnathostome lineages. Moreover, the results help define key evolutionary events within vertebrate lineages, including the origin of myelin-associated proteins and the development of appendages. The lamprey genome provides an important resource for reconstructing vertebrate origins and the evolutionary events that have shaped the genomes of extant organisms

    Sequencing of the sea lamprey (Petromyzon marinus) genome provides insights into vertebrate evolution

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    Lampreys are representatives of an ancient vertebrate lineage that diverged from our own ~500 million years ago. By virtue of this deeply shared ancestry, the sea lamprey (P. marinus) genome is uniquely poised to provide insight into the ancestry of vertebrate genomes and the underlying principles of vertebrate biology. Here, we present the first lamprey whole-genome sequence and assembly. We note challenges faced owing to its high content of repetitive elements and GC bases, as well as the absence of broad-scale sequence information from closely related species. Analyses of the assembly indicate that two whole-genome duplications likely occurred before the divergence of ancestral lamprey and gnathostome lineages. Moreover, the results help define key evolutionary events within vertebrate lineages, including the origin of myelin-associated proteins and the development of appendages. The lamprey genome provides an important resource for reconstructing vertebrate origins and the evolutionary events that have shaped the genomes of extant organisms

    North sea zooplankton: a review

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