THE PARADOX OF PANDEMIC MITIGATION? MODERATING ROLE OF PANDEMIC SEVERITY ON THE IMPACT OF SOCIAL DISTANCING POLICIES: A CULTURAL VALUE PERSPECTIVE

The paradox of pandemic mitigation? Moderating role of pandemic severity on the impact of social distancing policies: a cultural value perspective

Abstract Background Social distancing policies were of utmost importance during the early stages of the COVID-19 pandemic.These policies aimed to Nursing Support mitigate the severity of local outbreaks by altering public behavior.However, if the severity of the pandemic reduces, the impact of these policies on actual behavior may decrease.This stu

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Selective blockade of spinal D2DR by levo-corydalmine attenuates morphine tolerance via suppressing PI3K/Akt-MAPK signaling in a MOR-dependent manner

Pain medicine: why blocking dopamine receptors alleviates morphine tolerance By blocking dopamine receptors located in the spinal cord, a compound found in a traditional Chinese herbal medicine may help mitigate tolerance to morphine, a common problem among cancer patients who regularly take the opioid painkiller.A team led by Ji-Hua Liu Bare Floor

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IMPACT OF DIFFERENT TOPOGRAPHIC CORRECTIONS ON PREDICTION ACCURACY OF FOLIAGE PROJECTIVE COVER (FPC) IN A TOPOGRAPHICALLY COMPLEX TERRAIN

Quantitative retrieval of land surface biological parameters (e.g.foliage projective cover [FPC] and Leaf Area Index) is crucial for forest management, ecosystem modelling, and global change monitoring applications.Currently, remote sensing is a widely Nursing Support adopted method for rapid estimation of surface biological parameters in a landsca

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A single amino acid substitution in a chitinase of the legume Medicago truncatula is sufficient to gain Nod-factor hydrolase activity

The symbiotic interaction between nitrogen-fixing rhizobia and legumes depends on lipo-chitooligosaccharidic Nod-factors (NFs).The NF hydrolase MtNFH1 of Medicago truncatula is a symbiotic enzyme that hydrolytically inactivates NFs with a C16 : 2 acyl chain produced by the microsymbiont Sinorhizobium meliloti 1021.MtNFH1 is related to class V chiti

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