Publications by authors named "Wild U"

Light-dark (LD) can support or challenge the circadian organization of physiology and health. As an indoor species, the built environment inevitably influences the patterns and intensities of our LD exposures, thereby affecting health. We reviewed to what extent architectural features have been studied alongside LD and circadian biology.

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Article Synopsis
  • Aromatic substitution can be enhanced by a prior redox reaction, specifically in redox-active aromatic compounds.
  • Research highlights pathways for redox-induced substitution (RIAS) involving a redox-active guanidino-functionalized aromatic molecule (GFA) interacting with amines or guanidines.
  • Oxidizing the GFA changes its role from a nucleophile to an electrophile, allowing for the creation of new N-heteropolycyclic structures and unsymmetrically-substituted aromatic compounds in synthetic chemistry.
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Background: Many systematic reviews identify support animals or animal assisted activity as a beneficial and standard practice in several medical disciplines for patients (children, adolescents, and adults) and residents in care homes. A variety of animals are used such as dogs, cats, ponies, horses, alpacas, reindeer, penguins, rabbits, and tarantulas. Our objective was to explore the evidence regarding effects of animal assisted activity on a further population of interest; namely, healthcare staff.

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A Cochrane 2016 review indicated cycled light might benefit neonatal health in hospital. We systematically reviewed chronobiological factors for neonatal health in hospital units, identifying 56 relevant studies on light-dark cycles, feeding, noise, massage therapy, rooming-in, incubators vs. cribs, neonatal units vs.

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Posters are important vectors for science. During the pandemic, poster presentations via virtual platforms came to the fore due to necessary online conferences. For the post-pandemic era, we offer approaches for poster presenters and session organizers at modern, more sustainable conferences, which can be in-person, online, or combined (hybrid) formats.

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Using unconventional synthesis protocols, two redox-active triguanidine units are connected by a dithiolate bridge, aligning the two redox-active units in close proximity. The reduced, neutral and the tetracationic redox states with two dicationic triguanidine units are isolated and fully characterized. Then, the dicationic redox states are prepared by mixing the neutral and tetracationic molecules.

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A historical Christmas card connecting two pioneers of modern chronobiology (Colin Pittendrigh and Jürgen Aschoff) brings together key evolutionary facets of the field at Christmas time. The importance of the field to physiology and medicine is conveyed by the Nobel Prize award in 2017 for discoveries of how body clocks facilitate the temporal organization of physiology across days and nights. Temporal organization can have relevance for dietary Christmas excesses and dietary New Year resolutions.

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Osseointegration is a prerequisite for the long-term success of implants. Titanium implants are preferred for their biocompatibility and mechanical properties. Nonetheless, the need for early and immediate loading requires enhancing these properties by adding bioactive coatings.

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Objective: To complement the 2020 ANZJPH editorial "How COVID-safe Santa can save Christmas". In addition to a concise update regarding SARS-CoV-2/COVID-19, we aimed to explore some risks of Christmas in terms of adverse health effects, which we call 'Chrishaps'. Our overall study question was "which hazards have been scientifically associated with old Christmas essentials such as decoration, gifts, menus, and Santa himself, as well as new challenges associated with COVID-19?"

Method: We searched the PubMed, Web of Science, and Open Grey databases systematically and Google unsystematically.

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The SARS-CoV-2/Covid-19 pandemic is a challenge for public health and occupational medicine and developing prevention and protection strategies needs expertise from many disciplines. To make prevention successful, individuals have to be motivated to participate and, in turn, motivation depends on understanding how and why prevention measures are implemented. We present a structured approach (the Cycle of prevention) which involves different stakeholders and perspectives to develop, and monitor, prevention strategies in transparent and effective ways.

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Proton-coupled electron transfer (PCET) is currently intensively studied because of its importance in synthetic chemistry and biology. In recent years it was shown that redox-active guanidines are capable PCET reagents for the selective oxidation of organic molecules. In this work, the scope of their PCET reactivity regarding reactions that involve C-H activation is explored and kinetic studies carried out to disclose the reaction mechanisms.

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Nowadays, the roots of left-hand traffic (LHT) and right-hand traffic (RHT) - including fighting on horse-back and whipping horses that are drawing carriages - are at an all-time low; thus, it is time to assess and appreciate the nexus of road-safety practices and human neurophysiology. We hypothesize that safety of LHT and RHT can be associated with neurophysiology. We summarize scattered empirical research into plausible links between neurophysiological aspects such as handedness, eye movement bias, and hemispheric lateralisation and how safe, in theory, LHT vs.

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In June of 2019, a working group convened by the International Agency for Research on Cancer [IARC] concluded that "night shift work" is probably carcinogenic to humans (a Group 2A carcinogen). This was based on sufficient evidence of cancer and strong mechanistic evidence in experimental animals and limited evidence from human epidemiological studies. The biological basis from experimental work is clear and compelling: Disturbed chronobiology such as due to alterations in the light-dark schedule which shift-workers experience is associated with carcinogenicity.

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Guanidino-functionalized aromatics (GFAs) are readily available, stable organic redox-active compounds. In this work we apply one particular GFA compound, 1,2,4,5-tetrakis(tetramethylguanidino)benzene, in its oxidized form in a variety of oxidation/oxidative coupling reactions to demonstrate the scope of its proton-coupled electron transfer (PCET) reactivity. Addition of an excess of acid boosts its oxidation power, enabling the oxidative coupling of substrates with redox potentials of at least +0.

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Herein, we report the first examples of the use of redox-active guanidines as catalysts in the green oxidation of organic molecules with dioxygen. In one half-reaction, the oxidized form of the redox-active guanidine is converted into the reduced, protonated state, thereby enabling dehydrogenative oxidation of the substrate (3,5-di-tert-butylcatechol→ortho-benzoquinone, benzoin→benzil, and 2,4-di-tert-butylphenol→biphenol). In the other half-reaction, efficient re-oxidation of the guanidine to the oxidized state is achieved with dioxygen in the presence of a copper catalyst.

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Objectives: In 2007, the International Agency for Research on Cancer classified shift work involving circadian disruption (CD) as probably carcinogenic to humans. Circadian disruption could be conceptualised as the overlap of activity, such as work, with an individual's biological night. The latter can be approximated from a worker's chronotype (or morning/evening preference).

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A thought experiment places Henry Ford and Thomas Alva Edison in a modern regulatory environment. In a utopian occupational world devoid of night-shifts or artificial light, Ford wants to experiment with "working through the night". To support Ford's project, Edison offers his patented electric lamps to "turn nights into days".

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Animals are crucial for biomedical research, but rarely receive credit, let alone authorship—with a few exceptions. To better acknowledge their important role, the 3R approach could be expanded by “Recognition”. [Image: see text]

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Monitoring of cardiac index (CI) by uncalibrated pulse contour (PC) methods has been shown to be inaccurate in critically ill patients. We tested accuracy and trending of a new pulse contour method and a modified Fick method using central venous oxygen saturation. We studied 21 critically ill and mechanically ventilated patients (age 20-86 years) monitored by PC (PulsioFlex®) and transpulmonary thermodilution (TPTD, PiCCO2®) as reference.

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We present a new option for metal-free σ-bond activation, making use of oxidized, guanidino-functionalized aromatic compounds (GFAs). We demonstrate this new option by the homocoupling reactions of thiols and phosphines. The kinetics and the reaction pathway were studied by a number of experiments (including heterocoupling of thiols and phosphines), supported by quantum-chemical computations.

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Neuroleptic malignant syndrome (NMS) is a possible cause of fever of unknown origin (FUO) and is a potentially fatal adverse effect of various drugs, especially of neuroleptics. First generation antipsychotics, such as received by the patient described in this article, are more likely to cause NMS than second generation antipsychotics. The key symptoms are the development of severe muscle rigidity and elevated temperature associated with the use of neuroleptic medication.

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Herein the synthesis, structures and properties of hydrogen-bonded aggregates involving redox-active guanidine superbases are reported. Reversible hydrogen bonding is switched on by oxidation of the hydrogen-donor unit, and leads to formation of aggregates in which the hydrogen-bond donor unit is sandwiched by two hydrogen-bond acceptor units. Further oxidation (of the acceptor units) leads again to deaggregation.

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In this work, we report on the reduction of tetracyanoquinodimethane (TCNQ) with dicationic complexes of guanidinyl-functionalized aromatic (GFA) electron donors. In contrast to reduction with free GFAs, milder reduction conditions were achieved, and this led to semiconducting materials with extended TCNQ π stacking. The charge on the TCNQ units was estimated from the structural data obtained by single-crystal X-ray diffraction analysis and from IR spectroscopic data.

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Placement and removal of central venous catheters (CVC) are routine procedures in anesthesiology and on the intensive care unit. There are numerous possible complications associated with those interventions. Here, we report on a patient who developed respiratory failure immediately after removal of a CVC.

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