Publications by authors named "M I Benavent Gordo"

Forest edges, where humans, mosquitoes, and wildlife interact, may serve as a nexus for zoonotic arbovirus exchange. Although often treated as uniform interfaces, the landscape context of edge habitats can greatly impact ecological interactions. Here, we investigated how the landscape context of forest edges shapes mosquito community structure in an Amazon rainforest reserve near the city of Manaus, Brazil, using hand-nets to sample mosquitoes at three distinct forest edge types.

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Article Synopsis
  • Forest edges in the Amazon, influenced by urban, rural, and natural land types, play a key role in the interaction between humans, wildlife, and mosquitoes that can spread diseases.
  • Researchers studied how these different types of edges affect mosquito communities, finding that rural edges had the highest diversity of species and supported many forest-dependent mosquitoes.
  • The study highlights how the surrounding landscape impacts the risk of disease transmission at forest edges, indicating that not all forest edges are equal in terms of ecological interactions.
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Many animal species depend on sound to communicate with conspecifics. However, human-generated (anthropogenic) noise may mask acoustic signals and so disrupt behavior. Animals may use various strategies to circumvent this, including shifts in the timing of vocal activity and changes to the acoustic parameters of their calls.

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Background: Intraperitoneal pressure (IPP) in peritoneal dialysis (PD) is an individual characteristic that can be modified by posture and intraperitoneal volume (IPV). It is considered one of the predisposing factors for complications in the abdominal wall, such as the appearance of hernias. No studies to date have confirmed this.

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Arboreal herbivores require large digestive tracts for leaf fermentation and detoxification; however, they must also have a low body mass that allows them to reach the foliage. The three-toed sloth, Bradypus tridactylus, experiences this trade-off, as leaves comprise 97.2% of its diet.

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