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441.
Associations of Forest Cover,Fragment Area,and Connectivity with Neotropical Understory Bird Species Richness and Abundance 总被引:1,自引:0,他引:1
Alexandre Camargo Martensen Milton Cezar Ribeiro Cristina Banks‐Leite Paulo Inácio Prado Jean Paul Metzger 《Conservation biology》2012,26(6):1100-1111
Theoretical and empirical studies demonstrate that the total amount of forest and the size and connectivity of fragments have nonlinear effects on species survival. We tested how habitat amount and configuration affect understory bird species richness and abundance. We used mist nets (almost 34,000 net hours) to sample birds in 53 Atlantic Forest fragments in southeastern Brazil. Fragments were distributed among 3 10,800‐ha landscapes. The remaining forest in these landscapes was below (10% forest cover), similar to (30%), and above (50%) the theoretical fragmentation threshold (approximately 30%) below which the effects of fragmentation should be intensified. Species‐richness estimates were significantly higher (F= 3715, p = 0.00) where 50% of the forest remained, which suggests a species occurrence threshold of 30–50% forest, which is higher than usually occurs (<30%). Relations between forest cover and species richness differed depending on species sensitivity to forest conversion and fragmentation. For less sensitive species, species richness decreased as forest cover increased, whereas for highly sensitive species the opposite occurred. For sensitive species, species richness and the amount of forest cover were positively related, particularly when forest cover was 30–50%. Fragment size and connectivity were related to species richness and abundance in all landscapes, not just below the 30% threshold. Where 10% of the forest remained, fragment size was more related to species richness and abundance than connectivity. However, the relation between connectivity and species richness and abundance was stronger where 30% of the landscape was forested. Where 50% of the landscape was forested, fragment size and connectivity were both related to species richness and abundance. Our results demonstrated a rapid loss of species at relatively high levels of forest cover (30–50%). Highly sensitive species were 3‐4 times more common above the 30–50% threshold than below it; however, our results do not support a unique fragmentation threshold. Asociaciones de la Cobertura Forestal, Superficie del Fragmento y Conectividad con la Riqueza y Abundancia de Aves Neotropicales de Sotobosque 相似文献
442.
基于风暴识别算法的森林火灾识别 总被引:1,自引:0,他引:1
采用风暴识别算法对森林火灾进行了识别。首先根据参数阈值调整后的风暴识别算法,得到二维分量,结合不同云回波与火灾回波的差异,对火灾回波进行识别。根据算法对浙江省温州市三次森林火灾过程进行识别,结果显示:对于三次火灾过程都能够有效识别。对于火灾发生初期和熄灭时,由于回波强度较弱,回波结构松散,与小范围弱回波混合,导致漏识别。当回波中存在小范围地物杂波时,由于其尺度与小面积火灾接近,最终导致误识别。在森林火灾发生时,该算法可以帮助识别发生火灾的位置,为消防人员提供及时可靠的火灾地点及起火时间。 相似文献
443.
上海佘山国家森林公园空气负离子动态及其主要影响因子 总被引:2,自引:0,他引:2
以上海佘山国家森林公园为研究地,通过定点观测,对比分析了林内与空地的空气负离子在日变化和季节变化上的规律。研究结果表明:在一日内的上午、中午、下午3个时段,林内与空地的空气负离子浓度和安培空气离子评价系数(CI)值均无显著性差异;而在这3个时段,林内的空气负离子浓度和CI值均显著高于空地;季节上,林内与空地的负离子浓度、CI值以及空气清洁程度均为夏秋季大于春季大于冬季,林内和空地在夏秋两季负离子浓度和CI值都显著大于空地。同时林内的空气清洁程度在4个季节皆高于空地。通过多元回归分析得出,总悬浮颗粒物(TSP)是影响夏秋两季林内负离子浓度和CI值的主要影响因素;相对湿度是影响夏秋两季空地空气负离子浓度和CI值的主要影响因素。 相似文献
444.
Obtaining quantitative information about the recovery of fire-affected ecosystems is of utmost importance from the management and decision-making point of view. Nowadays the concern about natural environment protection and recovery is much greater than in the past. However, the resources and tools available for its management are still not sufficient. Thus, attention and precision is needed when decisions must be taken. Quantitative estimates on how the vegetation is recovering after a fire can be of help for evaluating the necessity of human intervention on the fire-affected ecosystem, and their importance will grow as the problem of forest fires, climate change and desertification increases.This article performs a comparison of methods to extract quantitative estimates of vegetation cover regrowth with Landsat TM and ETM+ data in an area that burned during the summer of 1998 in the Liguria region (Italy). In order to eliminate possible sources of error, a thorough pre-processing was carried out, including a careful geometric correction (reaching RMSE lower than 0.3 pixels), a topographic correction by means of a constrained Minnaert model and a combination of absolute and relative atmospheric correction methods. Pseudo Invariant Features (PIF) were identified by implementing an automated selection method based in temporal Principal Component Analysis (PCA), which has been called multi-Temporal n-Dimensional Principal Component Analysis (mT-nD-PCA).Spectral Mixture Analysis (SMA) was compared against quantitative vegetation indices which are based on well known traditional vegetation indices like Normalized Difference Vegetation Index (NDVI) and Modified Soil Adjusted Vegetation Index (MSAVI). Accuracy assessment was performed by regressing vegetation cover results obtained with each method against field data gathered during the fieldwork campaign carried out in the study area. Results obtained showed how vegetation cover fractions extracted from the NDVI based quantitative index were the most accurate, being superior to the rest of the techniques applied, including SMA. 相似文献
445.
446.
A model is presented to predict sanitary felling of Norway spruce (Picea abies) due to spruce bark beetles (Ips typographus, Pityogenes chalcographus) in Slovenia according to different climate change scenarios. The model incorporates 21 variables that are directly or indirectly related to the dependent variable, and that can be arranged into five groups: climate, forest, landscape, topography, and soil. The soil properties are represented by 8 variables, 4 variables define the topography, 4 describe the climate, 4 define the landscape, and one additional variable provides the quantity of Norway spruce present in the model cell. The model was developed using the M5′ model tree. The basic spatial unit of the model is 1 km2, and the time resolution is 1 year. The model evaluation was performed by three different measures: (1) the correlation coefficient (51.9%), (2) the Theil's inequality coefficient (0.49) and (3) the modelling efficiency (0.32). Validation of the model was carried out by 10-fold cross-validation. The model tree consists of 28 linear models, and model was calculated for three different climate change scenarios extending over a period until 2100, in 10-year intervals. The model is valid for the entire area of Slovenia; however, climate change projections were made only for the Maribor region (596 km2). The model assumes that relationships among the incorporated factors will remain unchanged under climate change, and the influence of humans was not taken into account. The structure of the model reveals the great importance of landscape variables, which proved to be positively correlated with the dependent variable. Variables that describe the water regime in the model cell were also highly correlated with the dependent variable, with evapotranspiration and parent material being of particular importance. The results of the model support the hypothesis that bark beetles do greater damage to Norway spruce artificially planted out of its native range in Slovenia, i.e., lowlands and soils rich in N, P, and K. The model calculation for climate change scenarios in the Maribor region shows an increase in sanitary felling of Norway spruce due to spruce bark beetles, for all scenarios. The model provides a path towards better understanding of the complex ecological interactions involved in bark beetle outbreaks. Potential application of the results in forest management and planning is discussed. 相似文献
447.
补种树木是森林生态环境修复的有效途径,而我国立法对补种树木责任承担方式的规定未形成体系,亟待完善.在新《森林法》出台的背景下,运用比较分析法对新旧《森林法》的修订变化进行阐释和探析,可得出:补种树木责任承担方式在执法与司法领域适用的过程中,遇到原地与异地补种的适用顺位不明、补种树木执法主体的确立不明确、缺乏补种树木执法... 相似文献
448.
449.
Unmanaged recreation presents a challenge to both researchers and managers of outdoor recreation in the United States because
it is shrouded in uncertainty resulting from disagreement over the definition of the problem, the strategies for resolving
the problem, and the outcomes of management. Incomplete knowledge about recreation visitors’ values and relationships with
one another, other stakeholders, and the land further complicate the problem. Uncertainty and social complexity make the unmanaged
recreation issue a wicked problem. We describe the wickedness inherent in unmanaged recreation and some of the implications
of wickedness for addressing the problem for the Front Range of the Rocky Mountains in Colorado. Conclusions about the nature
of the problem are based on a problem appraisal that included a literature review and interviews of key informants. Addressing
wickedness calls for institutional changes that allow for and reward the use of trust building, inclusive communication, and
genuinely collaborative processes. 相似文献
450.
In biologically mega-diverse countries that are undergoing rapid human landscape transformation, it is important to understand and model the patterns of land cover change. This problem is particularly acute in Colombia, where lowland forests are being rapidly cleared for cropping and ranching. We apply a conceptual model with a nested set of a priori predictions to analyse the spatial and temporal patterns of land cover change for six 50-100 km(2) case study areas in lowland ecosystems of Colombia. Our analysis included soil fertility, a cost-distance function, and neighbourhood of forest and secondary vegetation cover as independent variables. Deforestation and forest regrowth are tested using logistic regression analysis and an information criterion approach to rank the models and predictor variables. The results show that: (a) overall the process of deforestation is better predicted by the full model containing all variables, while for regrowth the model containing only the auto-correlated neighbourhood terms is a better predictor; (b) overall consistent patterns emerge, although there are variations across regions and time; and (c) during the transformation process, both the order of importance and significance of the drivers change. Forest cover follows a consistent logistic decline pattern across regions, with introduced pastures being the major replacement land cover type. Forest stabilizes at 2-10% of the original cover, with an average patch size of 15.4 (+/-9.2)ha. We discuss the implications of the observed patterns and rates of land cover change for conservation planning in countries with high rates of deforestation. 相似文献