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Ectotherms from highly seasonal habitats should have enhanced potential for physiological plasticity to cope with climatic variability. However, whether this pattern is applicable to fossorial ectotherms, who are potentially buffered from thermal variability, is still unclear. Here, we evaluated how seasonal acclimation (spring vs. autumn) in the lab affected the thermal sensitivity of standard metabolic rates (SMR) and rates of evaporative water loss (EWL) in the spotted salamander (Ambystoma maculatum). We hypothesised that temperature would have both acute and prolonged effects over traits (i.e., exposure to test temperatures and seasonal acclimation, respectively). After accounting for body mass and sex, we found that acute changes in temperature led to an increase in SMR and EWL. Additionally, SMR differed between seasons, but EWL did not. Salamanders had lower SMR in the spring, suggesting that energy may be allocated toward overwintering emergence and breeding. By contrast, maintaining higher SMR in the autumn may allow salamanders to forage aboveground on rainy nights to replenish energy reserves in preparation for the winter. The seasonal constancy of EWL suggests that salamanders should rely on behavioural rather than physiological modulations to mitigate possible detrimental effects of warming over the maintenance of hydric state. Despite the common assumption that fossorial ectotherms are buffered from thermal effects, our study shows that functional differences between seasons (i.e., breeding in the spring and provisioning in the autumn) are accompanied by seasonal changes in energetic and hydric requirements.
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http://dx.doi.org/10.1007/s00442-025-05711-6 | DOI Listing |
Phys Rev Lett
August 2025
SISSA-International School for Advanced Studies, Via Bonomea 265, I-34136 Trieste, Italy.
We present the first constraints on primordial magnetic fields from the Lyman-α forest using full cosmological hydrodynamic simulations. At the scales and redshifts probed by the data, the flux power spectrum is extremely sensitive to the extra power induced by primordial magnetic fields in the linear matter power spectrum, at a scale that we parametrize with k_{peak}. We rely on a set of more than a quarter million flux models obtained by varying thermal and reionization histories and cosmological parameters.
View Article and Find Full Text PDFAnal Chem
September 2025
Department of Chemistry, The University of Akron, Akron, Ohio 44325, United States.
Tires are complex polymeric materials composed of rubber elastomers (both natural and synthetic), fillers, steel wire, textiles, and a range of antioxidant and curing systems. These constituents are distributed differently among the various tire parts, which are classified based on their function and proximity to the rim. This study presents a rapid and sensitive approach for the characterization of tire components using mild thermal desorption/pyrolysis (TDPy) coupled to direct analysis in real-time mass spectrometry (DART-MS).
View Article and Find Full Text PDFJ Drug Target
September 2025
Neuroscience Research Center, Baqiyatallah University of Medical Sciences, Tehran, Iran.
Background: Chronic constriction injury (CCI) of the sciatic nerve induces neuropathic pain, inflammation, oxidative stress, and neurodegenerative changes, impairing sensory and emotional function. While curcumin is well recognized for its anti-inflammatory and neuroprotective properties, its therapeutic use is limited by poor bioavailability. Curcumin liposomal nanoparticles (CLNs) offer improved delivery and stability.
View Article and Find Full Text PDFNurs Res
September 2025
College of Nursing & Institute of Nursing Research, Korea University, Seoul, South Korea.
Background: Existing research fails to address the complex nature of nonspecific chronic lower back pain (cLBP ) despite its detrimental effect on economic, societal, and medical expenditures.
Objectives: We developed a nurse-led, mobile-delivered self-management intervention-Problem-Solving Pain to Enhance Living Well (PROPEL-M)-and evaluated its usability, feasibility, and initial efficacy for South Korean adults with nonspecific cLBP.
Methods: This study was composed of two phases: (a) lab and field usability testing for a gamified mobile device application; and (b) a pilot study employing a one-arm pre-test and post-test design among adults aged 18-60 years with nonspecific cLBP.
ACS Appl Mater Interfaces
September 2025
Chemical and Biological Engineering, University of Ottawa, 161 Louis Pasteur, Ottawa, Ontario K1N 6N5, Canada.
The processes of thermoforming 2D-printed electronics into 3D structures can introduce defects that impact the electrical performance of conductors, making them more susceptible to thermal failure during high electrical power/current applications on temperature-sensitive substrates. We therefore report the use of a thin-film boron nitride nanotube (BNNT) interlayer to directly reduce heat stress on linear and serpentine metallic traces on polycarbonate substrates thermoformed to 3D spherocylindrical geometries at varying elongation percentages. We demonstrate that the BNNT interlayer helps to improve the electrical conductivity of highly elongated thermoformed 3D traces in comparison to traces on bare polycarbonate.
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