Publications by authors named "B A Gruner"

Objective: Slow-paced breathing (SPB) with prolonged exhalation is assumed to stimulate vagal reflexes, which is represented by increased heart rate variability (HRV) values. However, most trials were conducted in healthy participants. We sought to evaluate the feasibility of SPB in hospitalized patients with confirmed bilateral COVID-19 pneumonia with major respiratory impairment and to investigate if SPB shows acute increasing effects on HRV measures in these severely ill patients with distinctly reduced vagal tone.

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Herein, we report on the synthesis and stereochemistry of mono- and isomeric dinitrile derivatives of [(1,2-CBH)-3,3'-Co] ions. The shape and electronic properties of CN groups can apparently surmount the strain associated with the substitution of two vicinal carbon positions. Owing to electron donation to the cage, this results in a substituent-induced rearrangement of one of the carbon atoms to the upper pentagonal ring.

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The Centers for Disease Control and Prevention defines SARS-CoV-2 reinfection as a positive COVID-19 test result >90 days after the collection date for the initial positive test or if sequencing confirms a different lineage is causing the reinfection. Reinfection dynamics have been examined by using PCR or antigen surveillance data. We identified patients in the US Military Health System who had >1 positive SARS-CoV-2 test during March 2020-July 2022 by using whole-genome sequencing data to identify reinfection cases, then compared those data with patient demographics, symptoms, and vaccination status.

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Article Synopsis
  • * This study presents the first successful synthesis of cobaltacarborane compounds with one or two primary amino groups directly bonded to carbon atoms, using azide reductions or Curtius rearrangements.
  • * Significant changes in chemical properties were noted based on the position of amino groups in relation to carbon or boron atoms, indicating their potential applications in medicinal chemistry and material science, supported by X-ray diffraction analysis of the new compounds.
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