Seasonal Migration of Mule Deer

1932 ◽  
Vol 2 (1) ◽  
pp. 1-46 ◽  
Author(s):  
Carl Parcher Russell
Keyword(s):  
Ecosphere ◽  
2011 ◽  
Vol 2 (4) ◽  
pp. art47 ◽  
Author(s):  
Kevin L. Monteith ◽  
Vernon C. Bleich ◽  
Thomas R. Stephenson ◽  
Becky M. Pierce ◽  
Mary M. Conner ◽  
...  

2012 ◽  
Vol 8 (1) ◽  
Author(s):  
Fred Van Dyke ◽  
Autumn Fox ◽  
Seth M. Harju ◽  
Matthew R. Dzialak ◽  
Larry D. Hayden-Wing ◽  
...  

2019 ◽  
pp. 77-104 ◽  
Author(s):  
Karla Diana Infante Ramírez ◽  
Ana Minerva Arce Ibarra

The main objective of this study was to analyze local perceptions of climate variability and the different adaptation strategies of four communities in the southern Yucatán Peninsula, using the Social-Ecological System (SES) approach. Four SESs were considered: two in the coastal zone and two in the tropical forest zone. Data were collected using different qualitative methodological tools (interviews, participant observation, and focal groups) and the information collected from each site was triangulated. In all four sites, changes in climate variability were perceived as “less rain and more heat”. In the tropical forest (or Maya) zone, an ancestral indigenous weather forecasting system, known as “Xook k’íin” (or “las cabañuelas”), was recorded and the main activity affected by climate variability was found to be slash-and burn farming or the milpa. In the coastal zone, the main activities affected are fishing and tourism. In all the cases analyzed, local climate change adaptation strategies include undertaking alternative work, and changing the calendar of daily, seasonal and annual labor and seasonal migration. The population of all four SESs displayed concern and uncertainty as regards dealing with these changes and possible changes in the future.


Author(s):  
Breandán Mac Suibhne

Observing the abandonment of traditional beliefs and practices in the 1830s, the scholar John O’Donovan remarked that ‘a different era—the era of infidelity—is fast approaching!’ In west Donegal, that era finally arrived c.1880, when, over much of the district, English replaced Irish as the language of the home. Yet it had been coming into view since the mid-1700s, as the district came to be fitted—through the cattle trade, seasonal migration, and protoindustrialization—into regional and global economic systems. In addition to the market, an expansion of the administrative and coercive capacity of the state and an improvement in the plant and personnel of the Catholic Church—processes that intensified in the mid-1800s—proved vital factors, as the population dwindled after the Famine, in the people breaking faith with the old and familiar and adopting the new.


2021 ◽  
Vol 12 (1) ◽  
Author(s):  
Hyacinth C. Nnamchi ◽  
Mojib Latif ◽  
Noel S. Keenlyside ◽  
Joakim Kjellsson ◽  
Ingo Richter

AbstractThe Atlantic Niño is the leading mode of interannual sea-surface temperature (SST) variability in the equatorial Atlantic and assumed to be largely governed by coupled ocean-atmosphere dynamics described by the Bjerknes-feedback loop. However, the role of the atmospheric diabatic heating, which can be either an indicator of the atmosphere’s response to, or its influence on the SST, is poorly understood. Here, using satellite-era observations from 1982–2015, we show that diabatic heating variability associated with the seasonal migration of the Inter-Tropical Convergence Zone controls the seasonality of the Atlantic Niño. The variability in precipitation, a measure of vertically integrated diabatic heating, leads that in SST, whereas the atmospheric response to SST variability is relatively weak. Our findings imply that the oceanic impact on the atmosphere is smaller than previously thought, questioning the relevance of the classical Bjerknes-feedback loop for the Atlantic Niño and limiting climate predictability over the equatorial Atlantic sector.


The Auk ◽  
2021 ◽  
Author(s):  
Jessie L Williamson ◽  
Christopher C Witt

Abstract Elevational migration can be defined as roundtrip seasonal movement that involves upward and downward shifts in elevation. These shifts incur physiological challenges that are proportional to the degree of elevational change. Larger shifts in elevation correspond to larger shifts in partial pressure of oxygen, air density, temperature, and ultraviolet (UV) exposure. Although most avian examples of elevational migration involve subtle shifts that would have minimal impacts on physiology, shifts of any magnitude have previously been considered under the broad umbrella of “elevational migration”. Here, we consider extreme seasonal elevational movements (≥2,000 m), sufficient to shift the elevational dimension of the eco-climatic niche. Migratory bird populations typically maintain inter-seasonal stability in the temperature, precipitation, and elevational aspects of their climatic niches, a tendency that likely reflects genetic physiological specialization on environmental conditions such as atmospheric pressure. A shift of ≥2,000 m involves a ≥20% change in air density and oxygen partial pressure, sufficient to incur functionally impactful declines in arterial blood-oxygen saturation and require compensatory shifts in respiratory physiology. We refer to this phenomenon as elevational niche-shift migration (ENSM). In this review, we analyzed >4 million occurrence records to identify 105 populations, representing 92 bird species, that undergo complete or partial ENSM. We identified key ecological and evolutionary questions regarding the causes and consequences of ENSM. Our synthesis reveals that ENSM has evolved independently in at least 29 avian families spanning 10 orders. Nonetheless, ENSM is rare relative to other forms of seasonal migration, consistent with the general tendency of seasonal niche conservatism by migratory species and evolutionarily conserved elevational range limits. For many migratory species and populations, within-species patterns of migratory connectivity are not sufficiently understood to determine ENSM status. ENSM is distinguished by its scale within the broader phenomenon of elevational migration. Critical examination of ENSM illustrates fundamental constraints on the ecology and evolution of migration systems, topographical influences on geographic patterns of migratory connectivity, and the remarkable metabolic flexibility of certain bird species that allows them to occupy disparate elevations across different seasons.


Author(s):  
Patrick A. Rodgers ◽  
Hall Sawyer ◽  
Tony W. Mong ◽  
Sam Stephens ◽  
Matthew J. Kauffman
Keyword(s):  

2015 ◽  
Vol 162 (11) ◽  
pp. 2305-2323 ◽  
Author(s):  
Malcolm P. Francis ◽  
John C. Holdsworth ◽  
Barbara A. Block

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