维普中文期刊产品整合服务
19篇 您的检索式:作者名="Torsten P"
    题名 作者 年代 出处 被引量
1Pyridinyl polythiazole class peptide antiriotic microtic micrococcin pi, Secreted by foodbornh staphylococcus e guorm Ws2733, is biosynthesized nonribosomally显示文摘Markus C C Torsten S Kevin P F 2001Eu J Biochem2001,268,:1
2Integrated dynamic aquaculture and wastewater treatment modelling for recirculating aquaculture systems显示文摘Torsten E I Wik B T Linden P I 2009Aquaculture2009,287,34:1
3Cytoprotection does not preserve brain functionality in rats during the acute post -stroke phase despite evidence of non - infarction provided by MR显示文摘Torsten R Robert P Diana B 2000NMR Biomed2000,6,3:1
4The influence of vari- ous light curing units on the cytotoxicity of dental adhesives 显示文摘Bernd W Torsten P Andrea V 2009Dent Mater2009,24,:1
5Effect of low tidal volume ventilation on lung function and inflammation in mice 显示文摘Hans P Hauber Dorte Karp Torsten Goldmann 2010BMC Pulmonary Medicine2010,10,:1
6Fetal - and tumor - specif- ic regulation of growth hormone receptor messenger RNA expression in human liver 显示文摘Zogopoulos G Steffen A Torsten P 1996Cancer Res1996,,:1
7Application-driven Design of Aerial Communication Networks 显示文摘Torsten Andre Karin Anna Hummel Angela P Sehoellig 2014IEEE CommunicationsMagazine2014,52,5:1
8Hypoxia-induced upregulation of eNOS gene expression is redox-sensitive: a comparison between hypoxia and inhibitors of cell显示文摘Anke H Torsten G Ulrich P 2001J Cell Physiol2001,188,2:1
9Room-temperature coherent coupling of single spins in diamond显示文摘TORSTEN G MICHAEL D JULIAN P 2006Nature Physics2006,2,6:1
10Roleofplantb-glucosidases in the Dual Defense System of Irdoid Glycosides and Their Hydrolyzing Enzymes in Plantago Lanceolata and Plantago Major显示文摘HELGA P TORSTEN B CAROLINE M 2013Phyto Chemistry2013,94,:1
11An MDA Approach to Access Control Specifications Using MOF and UML Profiles显示文摘Torsten F Manuel K Karl P 2006Electronic Notes in Theoretical Computer Science2006,142,:1
12Neonatal exposure to a combina- tion of N-Methyl-D-aspartate and -aminobutyric acid type A re- ceptor anesthetic agents potentiates apoptotic neurodegeneration and persis- tent behavioral deficits 显示文摘Anders F Emma P Torsten G 2007Anesthesiology2007,107,3:1
13The effect of processing parameters on DNA degradation in food显示文摘Torsten Bauer Philipp Weller Walter P 2003Eur Food Res Technol2003,217,:1
14Cardiopulmonary bypass reduction of bronchial blood flow:A potential mechanism for lung injury in a neonatal pig model显示文摘Christian S Torsten D Stefan P 2002J Thoracic and Cardiovascular Surgery2002,123,6:1
15An MDA Approach to Access Control Specifications Using MOF and UML Profiles显示文摘Torsten F Manue K Karl P 2006Electronic Notes in Theoretical Computer Science2006,142,3:1
16The effect of processing parameters on DNA degradation in food显示文摘Torsten Bauer Philipp Weller Walter P 2003Eur Food Res Technol2003,217,:1
17Unbalance estimation using linear and nonlinear regression 显示文摘NAUCLER P TORSTEN S 2011Automatica2011,46,11:1
18Ecology,growth and management of black locust(Robinia pseudoacacia L.),a non-native species integrated into European forests显示文摘Black locust(Robinia pseudoacacia L.),a species native to the eastern North America,was introduced to Europe probably in 1601 and currently extends over2.3×10~6 ha.It has become naturalized in all sub-Mediterranean and temperate regions rivaling Populus spp.as the second most planted broadleaved tree species worldwide after Eucalyptus spp.This wide-spreading planting is because black locust is an important multipurpose species,producing wood,fodder,and a source of honey as well as bio-oil and biomass.It is also important for carbon sequestration,soil stabilization and re-vegetation of landfills,mining areas and wastelands,in biotherapy and landscaping.In Europe,black locust is drought tolerant so grows in areas with annual precipitation as low as 500-550 mm.It tolerates dry,nutrient poor soils but grows best on deep,nutrient-rich,well-drained soils.It is a fast-growing tree and the height,diameter and volume growth peak before the age of 20.It mostly regenerates vegetatively by root suckers under a simple coppice system,which is considered the most cost-effective management system.It also regenerates,but less frequently,by stool sprouts.Its early silviculture in production forests includes release cutting to promote root suckers rather than stool shoots,and cleaning-respacing to remove low-quality stems,reduce the number of shoots per stool,and adjust spacing between root suckers.In addition,early,moderate and frequent thinning as well as limited pruning are carried out focusing on crop trees.The species is regarded as invasive in several European countries and its range here is expected to expand under predicted climate changes.Valeriu-Norocel Nicolescu Károly Rédei William L.Mason Torsten Vor Elisabeth Poetzelsberger Jean-Charles Bastien Robert Brus Tibor Bencat MartinaDodan Branislav Cvjetkovic Sinisa Andrasev Nicola La Porta Vasyl Lavnyy Dejan Mandzukovski Krasimira Petkova Dusan Rozenbergar Radoslaw Wasik Godefridus M.J.Mohren Maria Cristina Monteverdi Brigitte Musch Marcin Klisz Sanja Peric Ljiljana Keca Debbie Bartlett Cornelia Hernea Michal Pástor 2020Journal of Forestry Research2020,31,4:0
19Douglas-fi r(Pseudotsuga menziesii(Mirb.)Franco)in Europe:an overview of management practices显示文摘Douglas-fir(Pseudotsuga menziesii(Mirb.)Franco),one of the most commercially important tree species in western North America and one of the most valuable timber trees worldwide,was introduced to Europe in 1827.It became a major species for aff orestation in Western Europe after WWII,currently grows in 35 countries on over 0.83 million ha and is one of the most widespread nonnative tree species across the continent.A lower sensitivity to drought makes Douglas-fi r a potential alternative to the more drought-sensitive Norway spruce so its importance in Europe is expected to increase in the future.It is one of the fastest growing conifer species cultivated in Europe,with the largest reported dimensions of 2.3 m in diameter and 67.5 m in height.Pure stands have high productivity(up to 20 m 3 ha−1 a−1)and production(over 1000 m 3 ha−1).The species is generally regenerated by planting(initial stocking density from less than 1000 seedlings ha−1 to more than 4000 ha−1),using seedlings of European provenance derived from seed orchards or certifi ed seed stands.As the range of end-uses of its wood is very wide,the rotation period of Douglas-fi r is highly variable and ranges between 40 and 120 years.When the production of large-sized,knotfree timber is targeted,thinnings are always coupled with pruning up to 6 m.There is an increasing interest in growing Douglas-fi r in mixtures and managing stands through close-to-nature silviculture,but the species’intermediate shade tolerance means that it is best managed through group selection or shelterwood systems.Valeriu-Norocel Nicolescu William LMason Jean-Charles Bastien Torsten Vor Krasimira Petkova Vilém Podrázský Martina Đodan Sanja Perić Nicola La Porta Robert Brus Siniša Andrašev Martin Slávik Juraj Modranský Michal Pástor Károly Rédei Branislav Cvjetkovic Ahmet Sivacioğlu Vasyl Lavnyy Cornelia Buzatu-Goanță Gheorghe Mihăilescu 2023Journal of Forestry Research2023,34,4:0
返回顶部 每页显示:
共1页 首页 上一页 第1页 下一页 末页 /1 跳转

网站首页 | 关于我们 | 联系我们 | 产品服务 | 客服中心 | 广告服务 | 版权声明 | 网站联盟 | 友情链接 | 售卡网点

版权所有© 渝B2-20050021-1 渝公网安备 50019002500403号 违法和不良信息举报中心

互联网出版许可证 新出网证(渝)字10号 全国400电话 - 免长途话费