21 research outputs found

    A Landscape Perspective on Bird Beak Deformity: An Epizootic of Unknown Etiology

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    Although birds with beak deformities have been documented throughout the literature, the recent spike in occurrences in certain regions has caused concern in the scientific community. A major concern relates to the role of contaminants and environmental degradation in causing or exacerbating this epizootic. This study used spatial and statistical analyses to examine the problem from a landscape perspective. The objectives of this study were to 1) locate and compile a database of known bird beak occurrences, 2) conduct a preliminary assessment of the environmental correlates of this epizootic in order to identify patterns, and 3) make recommendations that could guide future research and data collection. Logistic regression models were generated using known occurrences of bird beak deformity as well as randomly generated points compared with spatial data on relevant environmental variables. Generalized linear models predicted high probability (p(deformity)=0.88) of deformity occurring when all environmental variables were present. With more collaboration among researchers and data sharing, this method could provide insight into the currently unknown etiology of bird beak deformity

    Biodiversity Informatics ā€“ Big Data for Biodiversity Conservation and Ecological Forecasting

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    Biodiversity informatics is the creation, integration, analysis, and understanding of information about biological diversity. The emphasis is on primary data of historical and current species occurrence points, which serve as inputs for predictive modeling and ecological forecasting of the likely effects of local and global change. Applications have included predicting the spread of invasive species and disease agents, and changes in species distributions due to climate change. I will share sources of big data as it relates to biodiversity informatics and some examples of applications of these data

    Deforestation in the Tropics: Reconciling Disparities in Estimates for India

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    Here we examine recent disparate estimates of deforestation obtained for India. We discuss the sources of disparity and the implications of inaccurate estimates and suggest ways in which future attempts at estimating deforestation might reconcile the disparity. Despite the importance of deforestation and its consequences, no attempt has been made to reconcile the different estimates obtained for India

    Applications of geographic information systems, remote-sensing, and a landscape ecology approach to biodiversity conservation in the Western Ghats

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    The mountains along the west coast of peninsular India, the Western Ghats, constitute one of the unique biological regions of the world. Rapidly occurring land-cover and land-use change in the Western Ghats has serious implications for the biodiversity of the region. Both landscape changes as well as the distribution of biodiversity are phenomena with strong spatial correlates. Recent developments in remote-sensing technology and Geographic Information Systems (GIS) allow the use of a landscape ecology and spatial analysis approach to the problem of deforestation and biodiversity conservation in the Western Ghats. Applications of this approach include analyses of land-cover and landuse change; estimation of deforestation rates and rates of forest fragmentation; examination of the spatial correlates of forest loss and the socioeconomic drivers of land-use change; modelling of deforestation; analysis of the consequences of land-cover and land-use change in the form of climate change and change in distribution of biodiversity; biomass estimation;gap analysis of the effectiveness of the protected area network in conserving areas of importance for biodiversity conservation; and conservation planning. We present examples from our work in the Western Ghats, in general, and in the Agastyamalai region and Biligiri Rangan Hills, in particular, as well as that of other researchers in India on various aspects of applications of GIS, remote sensing, and 'a landscape ecology approach to biodiversity conservation

    Recent advances in the climate change biology literature: describing the whole elephant

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    This is the publisher's version, also available electronically from http://onlinelibrary.wiley.com/doi/10.1002/wcc.59/abstract.Climate change biology is seeing a wave of new contributions, which are reviewed herein. Contributions treat shifts in phenology and distribution, and both document past and forecast future effects. However, many of the current wave of contributions are observational and correlational, and few are experimental in nature, and too often a conceptual framework in which to contextualize the results is lacking. An additional gap is the lack of effective cross-linking among areas of research, for example, connection of sea-level rise and climate change implications for distributions of species, or evolutionary adaptation studies with distributional shift studies. Although numerous important contributions have emerged in recent years, synthesis of this phenomenon and its consequences has not yet been achieved. Copyright Ā© 2010 John Wiley & Sons, Ltd

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    Recent Advances in the Climate Change Biology Literature: Describing the Whole Elephant

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    Climate change biology is seeing a wave of new contributions, which are reviewed herein. Contributions treat shifts in phenology and distribution, and both document past and forecast future effects. However, many of the current wave of contributions are observational and correlational, and few are experimental in nature, and too often a conceptual framework in which to contextualize the results is lacking. An additional gap is the lack of effective cross-linking among areas of research, for example, connection of sea-level rise and climate change implications for distributions of species, or evolutionary adaptation studies with distributional shift studies. Although numerous important contributions have emerged in recent years, synthesis of this phenomenon and its consequences has not yet been achieved

    Preliminary Analysis of the Ecology and Geography of the Asian Nuthatches (Aves: Sittidae)

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    We explored distributions of Asian nuthatch species in ecological and geographic space using ecological niche modeling based on occurrence data associated with specimens and observations. Nuthatches represent a well-defined clade occurring throughout the Northern Hemisphere, but are most diverse in southern Asia where 15 of the 24 species occur and where the lineage is believed to have evolved. Species richness was focused in a narrow east-west band corresponding to the forested parts of the Himalayas with a maximum number of nine species predicted present in these foci. The distributional predictions have a mid-elevation focus with highest species diversity between 1,000 and 2,000 m. Niche breadth and volume were positively related, but accumulation of distributional area (niche volume) decreased with additional environmental combinations (niche breadth). The extent of potential range filling, a measure of distributional disequilibrium, was connected with montane habit (R2 = 0.422) indicating that montane situations limit the distributional potential of species

    ORNIS Project

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    Shaily Menon of the Biology Department was awarded NSF-ROA (Research Opportunity Award) 2005-2006 - for work with ORNIS project in Peterson Lab, The University of Kansas Natural History Museum, ($32,554
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