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Quantifying ecosystem services provided by mobile species like insectivorous bats remains a challenge, particularly in understanding where and how these services vary over space and time. Bats are known to offer valuable ecosystem services, such as mitigating insect pest damage to crops, reducing pesticide use, and reducing nuisance pest populations. However, determining where bats forage is difficult to monitor. In this study, we use a weather-radar-based bat-monitoring algorithm to estimate bat foraging distributions during the peak season of 2019 in California's Northern Central Valley. This region is characterized by valuable agricultural crops and significant populations of both crop and nuisance pests, including midges, moths, mosquitos, and flies. Our results show that bat activity is high but unevenly distributed, with rice fields experiencing significantly elevated activity compared to other land cover types. Specifically, bat activity over rice fields is 1.5 times higher than over any other land cover class and nearly double that of any other agricultural land cover. While irrigated rice fields may provide abundant prey, wetland and water areas showed less than half the bat activity per hectare compared to rice fields. Controlling for land cover type, we found bat activity significantly associated with higher flying insect abundance, indicating that bats forage in areas where crop and nuisance pests are likely to be found. This study demonstrates the effectiveness of radar-based bat monitoring in identifying where and when bats provide ecosystem services.
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http://dx.doi.org/10.1002/ece3.70819 | DOI Listing |
J Lipid Res
September 2025
Department of Biochemistry and Molecular Cell Biology, University Medical Center Hamburg-Eppendorf, Hamburg, Germany. Electronic address:
In an interplay with parenchymal cells of metabolically active organs such as heart and adipose tissues, vascular endothelial cells are important for the regulation of nutrient uptake and organ-specific energy metabolism. Based on high expression of the scavenger receptor B1 (SR-B1) in capillary endothelial cells of white and brown adipose tissue (BAT), we proposed a functional role for this receptor in lipid handling and adaptive thermogenesis. To address this hypothesis, we generated mice with an endothelial-specific knockout of SR-B1 and performed metabolic turnover and indirect calorimetry studies in response to environmental cues such as cold exposure and high fat diet feeding.
View Article and Find Full Text PDFOpen Forum Infect Dis
September 2025
Faculty of Medicine and Surgery, Catholic University of Sacred Heart, Rome, Italy.
Background: Surgical site infections (SSIs) are the most common skin and skin structure infections and are mostly polymicrobial, requiring hospitalization and broad-spectrum antibiotics. This clinical trial evaluated the noninferiority of delafloxacin vs best available therapy (BAT) for the treatment of superficial or deep incisional SSI following a cardiothoracic/related leg or abdominal surgical procedure.
Methods: In this randomized, observer-blinded, active-controlled, parallel-group, multicenter, phase IIIb study, patients with SSI were randomized 1:1 to receive delafloxacin 300 mg intravenous (IV)/450 mg oral (OS) or BAT IV/OS (vancomycin or linezolid for cardiothoracic SSI, piperacillin/tazobactam or tigecycline for abdominal SSI).
Nat Commun
September 2025
Institute for Research in Biomedicine (IRB Barcelona), The Barcelona Institute of Science and Technology, Baldiri Reixac 10, 08028, Barcelona, Spain.
Brown adipose tissue (BAT) plays a key role in metabolic homeostasis through its thermogenic effects and the secretion of regulatory molecules. Here we report that RAP250 haploinsufficiency stimulates BAT in mice, thus contributing to a decrease in fat accumulation. Local in vivo AAV-mediated RAP250 silencing in BAT reduces body weight and fat mass and enhances glucose oxidation, thereby indicating that RAP250 participates in the regulation of BAT metabolic activity.
View Article and Find Full Text PDFObesity (Silver Spring)
September 2025
Obesity Research Unit, Research Program for Clinical and Molecular Metabolism, Faculty of Medicine, University of Helsinki, Helsinki, Finland.
Objective: To investigate whether whole-body cryotherapy (WBC) enhances weight loss, brown adipose tissue (BAT) activation, and metabolic outcomes during obesity management.
Methods: Nineteen adults with obesity were assigned to a 12-month lifestyle-based obesity management intervention with 28 WBC sessions (-110°C, 3-4 min, ~2 × week) over the first 5 months (CRYO, n = 10) or the intervention without WBC (CON, n = 9). The primary outcome was weight loss (5 and 12 months).
PeerJ
September 2025
Finnish Museum of Natural History, Helsinki, Finland.
Tympanal organs, crucial for anti-bat defence in moths and key for taxonomy, are often overlooked due to their fragility during dissection. Using micro-CT, we analyzed the tympanal organs of 19 geometrid species, comparing diurnal and nocturnal species to understand how predators, like bats and diurnal birds or lizards, influence tympanal morphology and its allometric relationship with body size. We hypothesized that diurnal moths, with reduced anti-bat function, would have smaller tympanal organs, irrespective of body size.
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