Добірка наукової літератури з теми "Brown treecreeper"

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Статті в журналах з теми "Brown treecreeper"

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Cooper, Caren B., and Jeffrey R. Walters. "Independent effects of woodland loss and fragmentation on Brown Treecreeper distribution." Biological Conservation 105, no. 1 (May 2002): 1–10. http://dx.doi.org/10.1016/s0006-3207(01)00172-0.

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DOERR, ERIK D. "Characterization of microsatellite loci in the brown treecreeper (Climacteris picumnus) and cross-species amplification in the white-throated treecreeper (Cormobates leucophaeus)." Molecular Ecology Notes 5, no. 3 (September 2005): 654–56. http://dx.doi.org/10.1111/j.1471-8286.2005.01023.x.

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Cooper, Caren B., Jeffrey R. Walters, and Jeffery Priddy. "LANDSCAPE PATTERNS AND DISPERSAL SUCCESS: SIMULATED POPULATION DYNAMICS IN THE BROWN TREECREEPER." Ecological Applications 12, no. 6 (December 2002): 1576–87. http://dx.doi.org/10.1890/1051-0761(2002)012[1576:lpadss]2.0.co;2.

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Bennett, Victoria A., Veronica A. J. Doerr, Erik D. Doerr, Adrian D. Manning, David B. Lindenmayer, and Hwan-Jin Yoon. "Causes of reintroduction failure of the brown treecreeper: Implications for ecosystem restoration." Austral Ecology 38, no. 6 (January 13, 2013): 700–712. http://dx.doi.org/10.1111/aec.12017.

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Bennett, Victoria A., Veronica A. J. Doerr, Erik D. Doerr, Adrian D. Manning, and David B. Lindenmayer. "The anatomy of a failed reintroduction: a case study with the Brown Treecreeper." Emu - Austral Ornithology 112, no. 4 (December 2012): 298–312. http://dx.doi.org/10.1071/mu11048.

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Bennett, Victoria A., Veronica A. J. Doerr, Erik D. Doerr, Adrian D. Manning, David B. Lindenmayer, and Hwan-Jin Yoon. "Habitat Selection and Post-Release Movement of Reintroduced Brown Treecreeper Individuals in Restored Temperate Woodland." PLoS ONE 7, no. 12 (December 5, 2012): e50612. http://dx.doi.org/10.1371/journal.pone.0050612.

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DOERR, ERIK D., and VERONICA A. J. DOERR. "Positive effects of helpers on reproductive success in the brown treecreeper and the general importance of future benefits." Journal of Animal Ecology 76, no. 5 (September 2007): 966–76. http://dx.doi.org/10.1111/j.1365-2656.2007.01280.x.

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Doerr, Veronica A. J., Erik D. Doerr, and Micah J. Davies. "Dispersal behaviour of Brown Treecreepers predicts functional connectivity for several other woodland birds." Emu - Austral Ornithology 111, no. 1 (March 2011): 71–83. http://dx.doi.org/10.1071/mu09118.

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Walters, Jeffrey R., Hugh A. Ford, and Caren B. Cooper. "The ecological basis of sensitivity of brown treecreepers to habitat fragmentation: a preliminary assessment." Biological Conservation 90, no. 1 (August 1999): 13–20. http://dx.doi.org/10.1016/s0006-3207(99)00016-6.

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Cooper, Caren B., Jeffrey R. Walters, and Hugh Ford. "Effects of remnant size and connectivity on the response of Brown Treecreepers to habitat fragmentation." Emu - Austral Ornithology 102, no. 3 (September 2002): 249–56. http://dx.doi.org/10.1071/mu01007.

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Дисертації з теми "Brown treecreeper"

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Cooper, Caren Beth. "The Behavioral Ecology and Conservation of an Australian Passerine, the Brown Treecreeper (Climacteris picumnus)." Diss., Virginia Tech, 2000. http://hdl.handle.net/10919/29588.

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Анотація:
This study addressed two aspects of ecological theory developed primarily in North America and examined these theories using an Australian passerine as a model species. The first theory concerns the mechanisms by which habitat fragmentation affects avian populations. I investigated the mechanisms causing the decline of the Brown Treecreeper (Climacteris picumnus) in fragmented habitat, and specifically considered the effects of isolation and habitat degradation, which are potentially important in Australian woodlands, and edge (patch size), which are important in North America. Brown Treecreeper groups were as productive in isolated patches as in connected patches of habitat regardless of patch size, yet unpaired males were common in isolated fragments of habitat. I conducted a field experiment that confirmed that female dispersal was disrupted among isolated fragments. Thus, my results suggested Brown Treecreepers were declining due to disruption of dispersal by habitat fragmentation rather than degradation or edge effects. I compared the results of an individual-based, spatially explicit simulation model to field observations and concluded that territory spatial arrangement and matrix composition altered dispersal success, recruitment, and subsequent population growth. With the aid of a geographic information system, I determined that both landscape factors (fragmentation patterns within 4.5-km) and habitat characteristics (cavity density) explained Brown Treecreeper presence and absence from random locations in woodland habitat. The birds appear to be absent from suitable habitat in unsuitable landscapes. The second theory I addressed concerns the maintenance of avian cooperative breeding. The most widely accepted models to explain cooperative breeding suggest that individuals that delay dispersal obtain a payoff under conditions in which the quality of breeding positions varies greatly. These models arose chiefly from a few long-term studies in North American. This is an unfortunate bias because the occurrence of cooperative breeding among birds of Gondwanan origin is 22%, whereas the worldwide incidence is only 3%. I used demographic and habitat data to examine the influence of habitat and cooperative breeding on Brown Treecreeper fitness. Group size affected one component of fitness and habitat variables affected another. High cavity density may be favorable due to intense inter-specific competition for suitable cavities, which Brown Treecreepers require for roosting and nesting. Low tree density may be advantageous by favoring ground foraging, in which Brown Treecreepers frequently engage. Experimental manipulations of important habitat variables are needed to determine whether variability in these ecological factors is critical in maintaining group formation in this species.
Ph. D.
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Rogers, Beatrice R. "The habitat requirements of Brown treecreepers, Climacteris picumnus, in the Mt. Lofty Ranges /." Title page, contents and abstract only, 1998. http://web4.library.adelaide.edu.au/theses/09SB/09sbr7244.pdf.

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Анотація:
Thesis (B. Sc.)--University of Adelaide, Department of Zoology.
Cover title. "Submitted in partial fulfillment of the requirements for the degree of Bachelor of science with Honors, Department of Zoology, University of Adelaide, May 1998" -- Cover. Bibliography: p. 46-53.
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Bennett, Victoria Ann. "Return of the Fauna: Brown Treecreeper Reintroduction in Eucalypt Woodland." Phd thesis, 2012. http://hdl.handle.net/1885/9606.

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Species reintroductions have become an increasingly prevalent conservation tool to combat species decline and extinction. Reintroduction programs aspire to re-establish a self-sustaining population of a species in an area where the species was formally extant. This thesis contributes to conserving a threatened species, the Brown Treecreeper (Climacteris picumnus), through an experimental reintroduction, and also informs the effectiveness of restoration treatments in the nature reserves where reintroduction occurred. I first reviewed Australian species relocations published within peer-reviewed literature. I identified key areas where improvements to relocation programs can be implemented, including: (1) integrating an experimental framework; (2) strategic, long-term monitoring; and (3) criteria for success. These findings contributed to ensuring that the Brown Treecreeper reintroduction was conducted to a high standard. Seven Brown Treecreeper social groups (43 individuals) were reintroduced into Mulligans Flat and Goorooyarroo Nature Reserves in the Australian Capital Territory in south-eastern Australia in November 2009. The reserves are the location of a large-scale experimental restoration project. Restoration treatments include the addition of coarse woody debris, maintenance of variation in ground vegetation cover, and the installation of nest boxes. At release, 18 Brown Treecreepers were fitted with radio-transmitters to assist daily monitoring until February 2010. Survival of individuals one year post-release (15% confirmed adult survival) failed to meet the pre-determined criteria for success (40% adult survival). Therefore, the reintroduction program cannot be deemed as successful. I examined the influence of experimental restoration treatments on Brown Treecreeper movement, habitat use and behaviour. This enabled assessment of restoration effectiveness and the suitability of using existing ecological knowledge to inform reintroduction outcomes and post-release behaviour. Brown Treecreeper movement characteristics were not influenced by habitat quality. Social groups showed a preference for settling in areas with low levels of ground vegetation cover, which improves ground foraging efficiency. However, the overall influence of habitat quality on settlement was less than predicted. The addition of coarse woody debris benefited the species by increasing the probability of foraging on the ground or on logs. The amount of ground foraging by reintroduced Brown Treecreepers was less than has been observed in other populations. This highlights the requirement for further ground layer management including promoting cryptogamic crust development, improving leaf litter levels, and controlling grazing by native herbivores. I analysed the influences on the apparently high predation rate of Brown Treecreepers. There were fewer refuges in the reintroduction reserves compared to areas where birds were sourced, indicating a reduced ability to escape from predators. The reintroduction reserves also had lower quality ground foraging habitat quality. However, reintroduced individuals dispersed extensively and settled in higher quality habitat more closely resembling the source site. Results from this thesis provide crucial information regarding restoration effectiveness and Brown Treecreeper ecology. Whilst some restoration treatments were successful, there was insufficient improvement to support the species. Complete woodland restoration may require incorporation of finer details and more spatial variation and innovative methods than ordinarily considered. Unexpected results from this study also reinforce the importance of integrating an experimental framework to inform reintroduction biology.
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Книги з теми "Brown treecreeper"

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Publishers, Museum Museum. Brown Tree-Creeper, Treecreeper , Signed : J. J. Audubon, J. T. Bowen, Lithograph, Pl. 115 , Audubon, John James ; Bowen, J. T. , 1856, John James Audubon : the Birds of America: Notebook. Independently Published, 2020.

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