Advanced numerical models used for climate prediction are known to exhibit biases in their simulated climate response to variable concentrations of the atmospheric greenhouse gases and aerosols that force a non-uniform, in space and time, secular global warming. We argue here that these biases can be particularly pronounced due to misrepresentation, in these models, of the multidecadal internal climate variability characterized by large-scale, hemispheric-to-global patterns. This point is illustrated through the development and analysis of a prototype climate model comprised of two damped linear oscillators, which mimic interannual and multidecadal internal climate dynamics and are set into motion via a combination of stochastic driving, representing weather noise, and deterministic external forcing inducing a secular climate change. The model time series are paired with pre-specified patterns in the physical space and form, conceptually, a spatially extended time series of the zonal-mean near-surface temperature, which is further contaminated by a spatiotemporal noise simulating the rest of climate variability. The choices of patterns and model parameters were informed by observations and climate-model simulations of the 20th century near-surface air temperature. Our main finding is that the intensity and spatial patterns of the internal multidecadal variability associated with the slow-oscillator model component greatly affect (i) the ability of modern pattern-recognition/fingerprinting methods to isolate the forced response of the climate system in the 20th century ensemble simulations and (ii) climate-system predictability, especially decadal predictability, as well as the estimates of this predictability using climate models in which the internal multidecadal variability is underestimated or otherwise misrepresented.
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http://dx.doi.org/10.1063/5.0106514 | DOI Listing |
Alzheimers Dement
December 2024
University of Nevada Las Vegas School of Public Health, Las Vegas, NV, USA.
Background: Our previous work has found that sexual and gender minority (SGM) or LGBTQIA+ caregivers of people living with Alzheimer's disease and related dementias (ADRD) experience higher levels of stigma, depressive symptoms, and stress than non-SGM caregivers and that these outcomes are associated with experiences of microaggressions related to their SGM identities. Guided by the Health Equity Promotion Model, we sought to explore the impact of the environmental context on psychosocial outcomes among SGM caregivers of people living with ADRD.
Methods: Data from a cross-sectional online survey using a non-probabilistic sample of SGM caregivers of people with ADRD recruited via social media (n = 284) were combined with publicly available data reporting composite equity climate index scores across five domains: legal/non-discrimination protections, youth/family support, political/religious attitudes, health access/safety, and work environment/employment.
Dis Aquat Organ
January 2025
ICAR Research Complex for NEH Region, Umiam, Meghalaya PIN-793103, India.
The present study evaluated the immunomodulatory and disease resistance-enhancing effects of dietary supplementation of Withania somnifera root powder in Labeo rohita (22.10 ± 3.30 g, 12.
View Article and Find Full Text PDFNatl Sci Rev
January 2025
Center for Advances in Water and Air Quality, Lamar University, Beaumont, TX 77710, USA.
Wetlands in the Qinghai-Tibet Plateau are a unique and fragile ecosystem undergoing rapid changes. We show two unique patterns of mercury (Hg) accumulation in wetland sediments. One is the 'surface peak' in monsoon-controlled regions and the other is the 'subsurface peak' in westerly-controlled regions.
View Article and Find Full Text PDFFood Nutr Res
December 2024
The Norwegian Directorate of Health, Oslo, Norway.
Assessing the environmental impacts of food, food systems and diets is highly complex due to the multitude of processes involved, the uncertainty in assessment models, the variability in production systems and the large range of products available. No single assessment method alone can provide a complete evidence base. The increasing number of Life Cycle Assessment and food system analyses, and more recently the integration of planetary boundaries offer insights from which we can draw some robust high-level conclusions, whilst recognising there is a need for more detailed analysis to capture the inherent nuances of more location and context-specific situations.
View Article and Find Full Text PDFEnvironmental DNA (eDNA) analysis has become a popular conservation tool for detecting rare and elusive species. eDNA assays typically target mitochondrial DNA (mtDNA) due to its high copy number per cell and its ability to persist in the environment longer than nuclear DNA. Consequently, the development of eDNA assays has relied on mitochondrial reference sequences available in online databases, or in cases where such data are unavailable, de novo DNA extraction and sequencing of mtDNA.
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