89 research outputs found

    A Wilderness Paradox: Deconstructing Conflict in the Adirondack Park

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    Environmental conflict is a continuing issue in the United States, particularly as conservation must occur across private and public lands. The Adirondack Park in upstate New York serves as a model to deconstruct such conflict. New York state recently purchased a large 20,798-acre tract of land known as Boreas Ponds within the Central Adirondack region and has stirred conflict between local organizations and environmental interest groups over its classification and how much of it should be designated “Wilderness”. This study deconstructs the conflict by teasing out contributing factors through the use of discourse analysis, framing and content analysis. The results highlight contention is in part due to different values held by different stakeholders, particularly of wilderness preservation and access. There is also evidence to support different perceptions of wilderness by some of those living in the park and tourists. These findings support the need to address wilderness definitions in management

    Anything but a Walk in the Park: Framing Analysis of the Adirondack State Park Land Classification Conflict

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    State and national park land management is rife with conflict, be it either over how land is managed within the park or how it affects adjacent private lands. The Adirondack Park in upstate New York is an especially interesting case due to its unique mix of public and private lands within the boundaries of the park, often referred to as the Blue Line. A recent land acquisition by the New York State Department of Environmental Conservation (NYSDEC) and the resultant land classification process is the most recent conflict in the region in a long line of land use/land designation conflicts. In the wake of recent attempts for greater collaboration, we explored this conflict by conducting a framing analysis of both stakeholders' online presence (i.e., websites and blogs) and local news media coverage of the classification process. Primary stakeholders included local town residents, sportsmen groups, NYSDEC, Adirondack Park Agency, local government, and environmental groups. We found that stakeholder groups' online materials utilized frames to describe their objectives based on different values. Dominant frames included a “reasonable access” frame used by residents and town officials to highlight rights to accessible use. Environmental groups heavily used an “environmental protection” frame, highlighting the ecologically important wetlands and opportunity to increase lands designated as “Wilderness.” In news media articles, the dominant frame was the “conflict frame,” portraying the decision-making process as riddled with tension and incompatibility. These frames indicate that the conflict over land classification stems from different values of accessibility and strong wilderness protection as well as being communicated as intractable by the media

    Application of infrared thermography in computer aided diagnosis

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    The invention of thermography, in the 1950s, posed a formidable problem to the research community: What is the relationship between disease and heat radiation captured with Infrared (IR) cameras? The research community responded with a continuous effort to find this crucial relationship. This effort was aided by advances in processing techniques, improved sensitivity and spatial resolution of thermal sensors. However, despite this progress fundamental issues with this imaging modality still remain. The main problem is that the link between disease and heat radiation is complex and in many cases even non-linear. Furthermore, the change in heat radiation as well as the change in radiation pattern, which indicate disease, is minute. On a technical level, this poses high requirements on image capturing and processing. On a more abstract level, these problems lead to inter-observer variability and on an even more abstract level they lead to a lack of trust in this imaging modality. In this review, we adopt the position that these problems can only be solved through a strict application of scientific principles and objective performance assessment. Computing machinery is inherently objective; this helps us to apply scientific principles in a transparent way and to assess the performance results. As a consequence, we aim to promote thermography based Computer-Aided Diagnosis (CAD) systems. Another benefit of CAD systems comes from the fact that the diagnostic accuracy is linked to the capability of the computing machinery and, in general, computers become ever more potent. We predict that a pervasive application of computers and networking technology in medicine will help us to overcome the shortcomings of any single imaging modality and this will pave the way for integrated health care systems which maximize the quality of patient care

    Inflammogenesis of Secondary Spinal Cord Injury

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    Spinal cord injury (SCI) and spinal infarction lead to neurological complications and eventually to paraplegia or quadriplegia. These extremely debilitating conditions are major contributors to morbidity. Our understanding of SCI has certainly increased during the last decade, but remains far from clear. SCI consists of two defined phases: the initial impact causes primary injury, which is followed by a prolonged secondary injury consisting of evolving sub-phases that may last for years. The underlying pathophysiological mechanisms driving this condition are complex. Derangement of the vasculature is a notable feature of the pathology of SCI. In particular, an important component of SCI is the ischemia-reperfusion injury (IRI) that leads to endothelial dysfunction and changes in vascular permeability. Indeed, together with endothelial cell damage and failure in homeostasis, ischemia reperfusion injury triggers full-blown inflammatory cascades arising from activation of residential innate immune cells (microglia and astrocytes) and infiltrating leukocytes (neutrophils and macrophages). These inflammatory cells release neurotoxins (proinflammatory cytokines and chemokines, free radicals, excitotoxic amino acids, nitric oxide (NO)), all of which partake in axonal and neuronal deficit. Therefore, our review considers the recent advances in SCI mechanisms, whereby it becomes clear that SCI is a heterogeneous condition. Hence, this leads towards evidence of a restorative approach based on monotherapy with multiple targets or combinatorial treatment. Moreover, from evaluation of the existing literature, it appears that there is an urgent requirement for multi-centered, randomized trials for a large patient population. These clinical studies would offer an opportunity in stratifying SCI patients at high risk and selecting appropriate, optimal therapeutic regimens for personalized medicine.Grant #NPRP 4-571-3-171 from the Qatar National Research Fund(a member of Qatar Foundation)

    The Musicals

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