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April 1, 2026Biological Conservation0 citationsOpen Access

Bearing the heat: Forest cover and human disturbance mediate brown bear behavior under thermal stress

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PCPablo Cisneros-AraujoJunta de Castilla y LeónDCDavid CuberoJunta de Castilla y LeónDPDaniel PintoJunta de Castilla y León

Key Points

  • To explore how temperature, human disturbance, and forest cover influence brown bear behavior, particularly under heat stress.
  • Utilized GPS telemetry for tracking bear movements.
  • Employed hierarchical generalized additive models (GAMs) to assess environmental impacts.
  • Focused on the Cantabrian brown bear population in NW Spain.
  • Increased temperatures notably reduced bear movement, with larger bears particularly affected.
  • Bears exhibited faster movement in areas with human modification to minimize encounter risk.
  • Tree cover acted as a buffer against high temperatures, allowing smoother movement.

Abstract

Animal behavior in human-modified landscapes results from complex interactions between environmental and anthropogenic factors. Large mammals, such as bears, are particularly sensitive to human disturbance and heat stress given their limited thermoregulatory capacity. High temperatures can suppress activity and promote nocturnality, confounding behavioral shifts typically attributed to human presence. To separately assess these effects, we used GPS telemetry and hierarchical GAMs to study how local environmental temperature, human footprint, tree cover, and body size jointly shape brown bear movement ecology at its southern range limit in the climate-sensitive and endangered Cantabrian population (NW Spain). Cantabrian bears exhibited a predominantly crepuscular, slightly nocturnal activity pattern intensified by temperature, which emerged as the primary constraint on movement. Larger individuals showed increased nocturnality and stronger reductions in movement speed under high temperatures, consistent with greater heat-dissipation limitations. Conversely, bears moved faster in human-modified areas, likely reflecting a strategy to reduce travel time in areas with potential human encounters and the challenges of navigating fragmented landscapes. However, the negative effect of high temperature on movement was amplified in anthropized areas, potentially limiting bears' behavioral adjustments and capacity to compensate for fragmentation. Heat constraints were partially mitigated by denser tree cover, underscoring the role of forests as thermal refuges, particularly where rising temperatures increasingly limit spatial and behavioral shifts and challenge resilience. As global warming progresses, heat-buffering measures such as identifying, protecting, and connecting thermal refugia—e.g., forested, shaded north-facing slopes with foraging resources—should be prioritized for conserving bears and other large mammals in warm, human-modified landscapes. • High temperatures strongly constrain brown bear movements in warm landscapes • Larger bears reduce activity more under heat stress than smaller individuals • Bears moved faster in human areas, but heat constrained this behavioral adjustment • Forest cover buffers heat effects, allowing more movement in warmer conditions • Protecting shaded thermal refugia will be essential for long term bear conservation

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Cite This Study

Cisneros-Araujo et al. (2026) studied this question.

synapsesocial.com/papers/69cd7b065652765b073a8ab5https://doi.org/10.1016/j.biocon.2026.111819
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Global buffering of temperatures under forest canopies2019 · 838 citations
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  5. 5Activity patterns of brown bears (Ursus arctos) in Slovenia and Croatia2006 · 138 citations