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Coleman SW 《Die Naturwissenschaften》2008,95(10):981-986
Distinct acoustic whistles are associated with the wing-beats of many doves, and are especially noticeable when doves ascend
from the ground when startled. I thus hypothesized that these sounds may be used by flock-mates as cues of potential danger.
To test this hypothesis, I compared the responses of mourning doves (Zenaida macroura), northern cardinals (Cardinalis cardinalis), and house sparrows (Passer domesticus) to audio playbacks of dove ‘startle wing-whistles’, cardinal alarm calls, dove ‘nonstartle wing-whistles’, and sparrow ‘social
chatter’. Following playbacks of startle wing-whistles and alarm calls, conspecifics and heterospecifics startled and increased
vigilance more than after playbacks of other sounds. Also, the latency to return to feeding was greater following playbacks
of startle wing-whistles and alarm calls than following playbacks of other sounds. These results suggest that both conspecifics
and heterospecifics may attend to dove wing-whistles in decisions related to antipredator behaviors. Whether the sounds of
dove wing-whistles are intentionally produced signals warrants further testing. 相似文献
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Feasibility of using high‐resolution satellite imagery to assess vertebrate wildlife populations
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Although remote sensing has been used for >40 years to learn about Earth, use of very high‐resolution satellite imagery (VHR) (<1‐m resolution) has become more widespread over the past decade for studying wildlife. As image resolution increases, there is a need to understand the capabilities and limitations of this exciting new path in wildlife research. We reviewed studies that used VHR to examine remote populations of wildlife. We then determined characteristics of the landscape and the life history of species that made the studies amenable to use of satellite imagery and developed a list of criteria necessary for appropriate use of VHR in wildlife research. From 14 representative articles, we determined 3 primary criteria that must be met for a system and species to be appropriately studied with VHR: open landscape, target organism's color contrasts with the landscape, and target organism is of detectable size. Habitat association, temporal exclusivity, coloniality, landscape differentiation, and ground truthing increase the utility of VHR for wildlife research. There is an immediate need for VHR imagery in conservation research, particularly in remote areas of developing countries, where research can be difficult. For wildlife researchers interested in but unfamiliar with remote sensing resources and tools, understanding capabilities and current limitations of VHR imagery is critical to its use as a conservation and wildlife research tool. 相似文献
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The article quantifies the size of ‘hidden’ social costs that are incurred by forestry offsets in the voluntary market that
promise to offset present emissions sometime in the future. It does this by estimating the difference between the social costs
of carbon (C) emitted and of costs offset by removal of C from the atmosphere by reforestation/afforestation. All current
attempts to make forestry offsets more reliable focus on quality control rather than the mismatch of the timing of emissions
and their offset. Recommendations that follow from the analysis are twofold. First, that markets for carbon dioxide equivalent
(CO2e) removals by voluntary offsets should be confined to the annual incremental removals actually achieved. Second, the
promoters of voluntary offsets projects should declare the annual stream of carbon credits and debits expected so that buyers
can place a present value on such projects. 相似文献
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A Framework to Develop Nationwide Flooding Extents Using Climate Models and Assess Forecast Potential for Flood Resilience
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Sivasankkar Selvanathan Mathini Sreetharan Seth Lawler Krista Rand Janghwoan Choi Mathew Mampara 《Journal of the American Water Resources Association》2018,54(1):90-103
The methods used to simulate flood inundation extents can be significantly improved by high‐resolution spatial data captured over a large area. This paper presents a hydraulic analysis methodology and framework to estimate national‐level floodplain changes likely to be generated by climate change. The hydraulic analysis was performed using existing published Federal Emergency Management Agency 100‐year floodplains and estimated 100‐ and 10‐year return period peak flow discharges. The discharges were estimated using climate variables from global climate models for two future growth scenarios: Representative Concentration Pathways 2.6 and 8.5. River channel dimensions were developed based on existing regional United States Geological Survey publications relating bankfull discharges with channel characteristics. Mathematic relationships for channel bankfull topwidth, depth, and side slope to contributing drainage area measured at model cross sections were developed. The proposed framework can be utilized at a national level to identify critical areas for flood risk assessment. Existing hydraulic models at these “hot spots” could be repurposed for near–real‐time flood forecasting operations. Revitalizing these models for use in simulating flood scenarios in near–real time through the use of meteorological forecasts could provide useful information for first responders of flood emergencies. 相似文献