首页 | 本学科首页   官方微博 | 高级检索  
文章检索
  按 检索   检索词:      
出版年份:   被引次数:   他引次数: 提示:输入*表示无穷大
  收费全文   1193篇
  免费   103篇
  国内免费   365篇
  2024年   9篇
  2023年   27篇
  2022年   45篇
  2021年   40篇
  2020年   62篇
  2019年   59篇
  2018年   53篇
  2017年   59篇
  2016年   70篇
  2015年   47篇
  2014年   81篇
  2013年   73篇
  2012年   66篇
  2011年   82篇
  2010年   56篇
  2009年   86篇
  2008年   74篇
  2007年   109篇
  2006年   113篇
  2005年   71篇
  2004年   66篇
  2003年   59篇
  2002年   34篇
  2001年   38篇
  2000年   22篇
  1999年   24篇
  1998年   17篇
  1997年   17篇
  1996年   9篇
  1995年   13篇
  1994年   7篇
  1993年   8篇
  1992年   6篇
  1991年   7篇
  1989年   1篇
  1988年   7篇
  1987年   6篇
  1986年   3篇
  1985年   6篇
  1984年   3篇
  1982年   3篇
  1981年   1篇
  1980年   6篇
  1979年   3篇
  1978年   6篇
  1977年   1篇
  1976年   1篇
  1974年   2篇
  1973年   1篇
  1963年   1篇
排序方式: 共有1661条查询结果,搜索用时 15 毫秒
131.
为了解北京雾灵山自然保护区野生动物资源现状,于2014年11月至2015年4月,在保护区内放置30台红外相机开展调查。结果共记录鸟类5目14科27种,兽类4目8科10种,其中勺鸡(Pucrasia macrolopha)、红角鸮(Otus sunia)、纵纹腹小鸮(Athene noctua)和中华斑羚(Naemorhedus griseus)为国家Ⅱ级重点保护野生动物。鸟类物种数月变化剧烈。相对丰富度最高的6种动物为狍(Capreolus pygargus)(60.19)、红嘴蓝鹊(Urocissa erythrorhyncha)(34.14)、星鸦(Nucifraga caryocatactes)(27.78)、岩松鼠(Sciurotamias davidianus)(23.34)、松鸦(Garrulus glandarius)(23.34)、中华斑羚(21.99)。对狍、岩松鼠、中华斑羚进行日活动节律分析,狍属晨昏活动型;中华斑羚有两个活动高峰;岩松鼠的日活动高峰集中在晨间,为单峰型。本研究提供了北京雾灵山部分鸟兽资源的最新动态现状及活动节律信息,同时表明红外相机在拍摄地栖性鸟类、大中型兽类、夜行性动物方面具有优势,而对于非地栖鸟类和小型兽类,红外相机有一定局限性。本研究为应用红外相机技术开展森林野生动物多样性监测提供了经验。  相似文献   
132.
Given the limited resources available for conservation, it is important that the areas to preserve are selected in a cost effective manner. However, the cost effectiveness of the surrogate species strategy (the use of information on one or more species to identify areas of value for other species for which there is no, or more limited, available information) has seldom been evaluated.In this study, we investigate the opportunity cost of setting aside breeding sites of two forest raptor species (the surrogate species) by evaluating their individual and combined contribution to preserve diversity of polypores (wood-decaying fungi) and birds against the contributions of previously established nature reserves. We use numeric optimization models to compare different reserve selection strategies.Site selection based on nest sites of the dominant raptor species was more cost-effective than strategies using sites of the subordinate species or those processes previously used to select nature reserves in Finland. The inclusion of both raptor species in the reserve selection model further improved its performance relative to other approaches. This indicates that the means by which Finnish reserves are selected could be enhanced by including the breeding sites of these, and maybe other species, among the criteria used to select reserves in the future.These results show that information on charismatic and well-surveyed species could be a cost-efficient add-on to help enhance conservation endeavours. Where there is inter-specific competition for biodiverse sites, and using multiple species is costly, basing reserve selection primarily on breeding sites of a dominant species may be the best strategy. However, further work is required to establish the extent to which dominant species are typically better indicators of conservation relevance.  相似文献   
133.
Recently, methods for constructing Spatially Explicit Rarefaction (SER) curves have been introduced in the scientific literature to describe the relation between the recorded species richness and sampling effort and taking into account for the spatial autocorrelation in the data. Despite these methodological advances, the use of SERs has not become routine and ecologists continue to use rarefaction methods that are not spatially explicit. Using two study cases from Italian vegetation surveys, we demonstrate that classic rarefaction methods that do not account for spatial structure can produce inaccurate results. Furthermore, our goal in this paper is to demonstrate how SERs can overcome the problem of spatial autocorrelation in the analysis of plant or animal communities. Our analyses demonstrate that using a spatially-explicit method for constructing rarefaction curves can substantially alter estimates of relative species richness. For both analyzed data sets, we found that the rank ordering of standardized species richness estimates was reversed between the two methods. We strongly advise the use of Spatially Explicit Rarefaction methods when analyzing biodiversity: the inclusion of spatial autocorrelation into rarefaction analyses can substantially alter conclusions and change the way we might prioritize or manage nature reserves.  相似文献   
134.
红外相机监测是了解野生动物多样性和威胁因素的重要手段。本研究采用网格法和分层抽样调查法, 在贵州赤水桫椤国家级自然保护区内选取20个监测位点布设红外相机, 对区内鸟兽物种多样性进行监测。2015年8月至2017年8月, 红外相机累计工作6,370个工作日, 共拍摄45,953张照片, 独立有效照片1,936张。准确鉴定出兽类4目8科19种, 鸟类4目11科28种, 其中, 国家II级重点保护野生动物7种。相对丰富度指数(RAI)排前五位的兽类依次是毛冠鹿(Elaphodus cephalophus)、鼬獾(Melogale moschata)、藏酋猴(Macaca thibetana)、小麂(Muntiacus reevesi)和野猪(Sus scrofa); 鸟类依次是紫啸鸫(Myophonus caeruleus)、红腹角雉(Tragopan temminckii)、灰胸竹鸡(Bambusicola thoracicus)、黑喉噪鹛(Garrulax chinensis)和棕颈钩嘴鹛(Pomatorhinus ruficollis)。物种积累曲线结果表明, 兽类稀疏化曲线在300天后趋于稳定, 表明监测取样已较充分, 而鸟类监测物种数随时间积累依旧保持增长趋势。  相似文献   
135.
2013-2018年间采用红外相机技术对西藏雅鲁藏布大峡谷国家级自然保护区的金猫(Catopuma temminckii)进行长期监测, 累计布设70个点位, 14,071个相机工作日。共收集金猫独立照片101张, 其中60张可识别色型, 占金猫独立照片总数的59.40%。共记录到4种不同色型的金猫个体, 拍摄频次比例为麻褐色型:红棕色型:黑色型:灰色型 = 46:7:4:3; 其中灰色型为我国野生金猫实体首次记录。不同色型的个体可同域分布, 而以雅鲁藏布大峡谷自然保护区为代表的藏东南地区是我国金猫色型变异最丰富的地区。基于红外相机照片对金猫的共性形态特征和不同色型的独特形态特征进行了详细的图文描述, 以期为该物种的深入研究提供详实的基础资料。活动节律的分析结果显示, 研究区内金猫以昼行性活动为主, 10:00-12:00为其最强的活动高峰。不同月份的日活动差异指数(daily-discrepancy index) α和昼行性指数(diurnal-nocturnal index) β均存在显著差异, 且活动强度具有明显的季节性变化, 不同季节的活动峰型存在显著差异。本研究为东喜马拉雅生物多样性热点区动物多样性本底的完善积累了基础资料, 也为后续的猫科动物色型多样性的形成机制研究提供了基础信息与参考。  相似文献   
136.
红外相机监测是了解野生动物多样性现状、动态变化和面临威胁的重要手段。本研究采用网格抽样调查法, 在贵州梵净山国家级自然保护区内选取2个监测样区共40个监测位点布设红外相机, 对区内兽类和鸟类物种进行监测调查。2017年4月至2018年12月间, 红外相机累积监测14,808个相机工作日, 共收集有效照片14,119张, 独立有效物种照片3,199张。共鉴定野生动物9目22科61种, 其中兽类26种, 隶属于4目12科; 鸟类35种, 隶属于5目10科。记录到国家I级重点保护野生动物2种: 黔金丝猴(Rhinopithecus brelichi)和白颈长尾雉(Syrmaticus ellioti), 国家II级重点保护野生动物9种; 被IUCN红色名录评估为濒危(EN)的1种、易危(VU)的5种、近危(NT)的8种。物种的相对多度指数(relative abundance index, RAI)分析结果显示, 藏酋猴(Macaca thibetana, RAI = 28.23)、毛冠鹿(Elaphodus cephalophus, RAI = 15.46)、野猪(Sus scrofa, RAI = 11.82)、小麂(Muntiacus reevesi, RAI = 9.05)、黔金丝猴(RAI = 7.70)为相对多度最高的5种兽类; 紫啸鸫(Myophonus insularis, RAI = 10.33)、红腹角雉(Tragopan temminckii, RAI = 9.59)、红腹锦鸡(Chrysolophus pictus, RAI = 6.96)、白颈长尾雉(RAI = 3.71)、勺鸡(Pucrasia macrolopha, RAI = 1.55)为相对多度最高的5种鸟类。另外, 红外相机还监测到较多的家畜活动(RAI = 11.14)和人为活动(RAI = 12.90), 保护区管理部门仍需采取相应管理措施, 进一步提高周边居民的保护意识, 促进保护区与社区的协调发展。  相似文献   
137.
通过野外调查和资料整理,统计分析梅花山自然保护区蕨类植物区系组成和分布区类型,比较其与周边相邻4个自然保护区的蕨类植物区系的相似性。结果表明:(1)梅花山自然保护区共有蕨类植物42科83属189种,科、属组成优势现象明显,区系起源古老。(2)分布区类型在科、属级水平上以泛热带分布和世界分布为主,种级水平以热带亚洲分布、东亚分布和中国特有分布为主,热带亲缘明显,具有由热带向温带过渡的性质。(3)在地理亲缘关系上,梅花山与梁野山的蕨类植物区系联系最为紧密,与圭龙山的关系次之,与热带区系性质较强的南靖南亚热带雨林自然保护区和典型的中亚热带性质的武夷山自然保护区的种子植物区系联系较为疏远,具有从南亚热带向中亚热带过渡的明显特点。  相似文献   
138.
139.
Local communities often conserve nearby natural areas to support recreational activities and other benefits these areas provide. Areas protected by local communities could contribute to wider efforts to achieve large-scale conservation goals, such as biodiversity protection, provided the ecological conditions on-site are compatible with achieving these goals. To explore the potential contribution of locally established protected areas, we focus on areas protected by local communities in California, USA, using ballot initiatives, a form of direct democracy. We compare the ecological condition of wooded habitat on protected areas funded by local communities through the ballot box to that of similar habitats on protected areas funded by a state conservation agency. As an indicator of ecological condition, we focus on coverage by exotic plant species. We examine whether protected area characteristics or aspects of human-mediated onsite disturbance related to recreational use explain exotic plant cover found on each type of protected area. Exotic plant cover did not differ between areas protected by local communities and those protected by our larger scale conservation actor. Instead, elevation was the best predictor of exotic plant cover. Our results suggest protected areas established by local communities may be in no worse a condition than those established by a state public agency and warrant inclusion when tracking progress towards large-scale conservation goals for protected areas.  相似文献   
140.
Habitat banking in its many iterations is an established and popular mechanism to deliver environmental offsets. The United States can look back at over 30 years of banking experience with the underlying framework and policies being consistently updated and improved. Given the increased demand in habitat banking, we provide insights into how bank area capacity is distributed across the United States for four different bank targets (wetlands, streams, multiple ecosystems, species) based on information extracted from the Regulatory In-lieu Fee and Bank Information Tracking System, as well as, estimating future capacities and area reserves through a predictive modeling approach based on data from the past 26 years. Future predictions indicate a decrease in available reserves for banks targeting wetlands or multiple ecosystems, with potential bottlenecks relating to large reserves being limited to the southeast and release schedules not catching up to the current and anticipated demand. Banks targeting species or streams are predicted to meet future demand, with species banks (conservation banks) following a different legislative and operational approach based on the listing of endangered species and pro-active approaches with anticipated future demand. Most current reserves for all four bank types are restricted to very few service areas with around one-third of all bank areas still awaiting release, limiting their availability on a broader scale. Strategic planning networks are necessary to meet future demand on a national scale and to identify areas suitable for banking or likely to experience future environmental or developmental stress.  相似文献   
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号