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This paper aims to characterize and analyze the urban greenness change in the Baltimore Washington corridor area.
The multi-criteria analysis model was shown to be the more efficient one in modeling the permafrost distribution in the corridor area.
Channel narrowing of nearly 75%and30%0% reduction in total corridor area, together with average accretion rates of 0.045 m y−1 and vegetation encroachment with a 305% increase of mature forest occurred between 1956 and 2004.
Only 28% of dispersal corridor area and 5% of movement path length overlapped with the upper 50% quantile of the landscape linkage; thus, jointly modeling these three components enabled a more nuanced evaluation of connectivity than any of them in isolation.
Compared with the natural river, the urban river is seriously affected by human activities, which are constructed with the hope of recreating a similar natural environment and are uniquely designed so that ecological specialists, landscape experts and scientists could study both the surrounding environment's ecological effects and the continuity degree of the river corridor area.
The significant decrease of grassland in the business-based landscape (average green density decreased from 30% to 17%) with a slight decrease of woodland (from 63% to 60%) indicate the urbanization in the Baltimore Washington corridor area impact its spatial morphology, structure, and ecological environment under the special socioeconomic development and reserve policies.
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While significant methodological and technological advancements have led to more analytically robust assessments of landscape connectivity, the end result of these efforts is often the demarcation of corridor areas void of any significant detailed physical design of their interiors.
Time-series show that the loss continues nearly linearly into the present around Bugoma, but seems to level off around Budongo Forest after 2010, apparently because almost all forested corridor areas have been cleared.
Our results show that larger-scale aggregate measures of total change can obscure more local patterns, in which protected areas and the national park maintain or grow forest cover, whilst the forest corridor areas that are not protected suffer drastic losses.
We put more effort in the TRs than in buffer and corridor areas so as to maximize the number of samples from different individual leopards.
In our hospital dataset, for example, falls while walking, falls while standing and falls in corridor areas were predictive of fractures.
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