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Remote sensing methods, including aerial photography and satellite images, could be successfully used for detecting and acreage assessing of landscape components like fallow fields. The objective of the present study was to characterize the reflectance of fallow fields situated in various soil conditions and of different age and compare them with spectral characteristics of main arable crops: winter rye, spring oat, winter oilseed rape, corn, potatoes and meadow. Field spectral reflectance measurements were made with the CIMEL CE313 luminancemeter and five vegetation indices (NDVI, STVI, MSI, MNDVI and GRVI) were developed by combining the reflectance factors in the five wavebands (450, 550, 650, 850 and 1650 nm). In the second part of May, when seasonal biomass peak of winter crops and meadows occurs and spring crops partly covers the soil, significant differences were observed in the spectral properties of fallow and cultivated fields. Results showed that among the analyzed vegetation indices MSI index (R₁₆₅₀/ R₈₅₀) was found to be the best for discriminating among the fallow fields and GRVI (R₅₅₀/R₆₅₀) and NDVI ((R₈₅₀–R₆₅₀)/(R₈₅₀+R₆₅₀)), were the best discriminators between the fallow fields and arable crops.
Non-forest woody vegetation (scattered greenery) is currently a common feature of the rural European landscape and provides important ecosystem services. This study presents the statistically based classification of non-forest woody vegetation at the local level according to its structural characteristics mapped in the field. Using hierarchical agglomerative cluster analysis, four groups (clusters) of non-forest woody vegetation were detected. Relation of groups of non-forest woody vegetation to altitude, slope gradient and distance from settlements was found, although differences in these factors between groups are small. Moreover, differences in spatial structure in terms of landscape ecology among groups of non-forest woody vegetation were examined and considerable differences among groups were recognized when comparing basic landscape metrics. Presented classification covers unique local or sub-regional groups of non-forest woody vegetation, but it is not sufficient for the national level. For this purpose, it is advocate advised that additional data be collected and official evidence of existing non-forest woody vegetation be generated.
The analysis of the area of the municipality of Tu oro sul Trasimeno in Umbria, Central Italy (the historical site of the Battle of Trasimeno in 217 BC) was carried out to evaluate changes in land use from 1977 to 2000 at the land-plot level using relevant land use maps. An evaluation of the environmental quality of land use in 2000 was also made. The study involved an analysis of the environmental diversity in terms of extent and variety of land use. The Landscape Conservation Index (ILC), and diversity indicators (Shannon-Wiener Index and Eveness Index) were calculated. The study showed how landscape quality gradually declined due to an increase in agricultural areas to the detriment of natural areas. The calculation of environmental indicators, particularly the Eveness Index showed how the difference between real and potential diversity increased, in favour of real diversity. This is a symptom of increased human pressure.
The trees of parks and gardens support many species, the survival of urban-dwelling species mainly bird species. Birds amongst other species provide a wide range of environmental and social functions to cities and urban dwellers. The present study aims to know bird diversity in two parks as bioindicator of automobile air pollution exposure, landscape changes and/or human interactions. The study areas were selected as per heavily-populated neighborhoods, nearby office buildings, nearby roads and continuous vehicular movements, human interactions as visitors, where high levels of human disturbance are common. The study was carried out at 2 sampling stations viz (i) Elliot park and (ii) Agri-horticulture Society. The bird species diversity was studied by qualitative and quantitative assessment. Indices were Species richness, Index of Dominance, Relative abundance, Shannon-Wiener Diversity Index and Evenness Index for birds for all selected sites were calculated using the statistical formulae. The present results as bioindicators bird species clearly indicate that the bird species are very few in numbers in both the parks. When comparison made between both the parks, it was observed less number of bird varieties (16 types) in Elliot park than varieties (9 types) more less in number in Agri-horticulture society. This study is a preliminary assessment of bird diversity but further researches are needed in relation to biochemical and genetic damage study as well as air pollution load by using instruments. In the present study it was concluded that the less numbers of birds and their different diversity indices were found a decreasing trends, though there no attempt has been made on physico-chemical properties of present air pollutants. The less number of varieties of bird species are as tolerant bioindicators, which may be due to the vehicular pollution and/or human interference and/or landscape changes due to nearby neighborhood blocks, office and residential buildings, continuous movement of vehicles etc.
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