维普中文期刊产品整合服务
71篇 您的检索式:作者名="Darab"
    题名 作者 年代 出处 被引量
1Clinical value of intravesical prostatic protrusion in the evaluation and management of prostatic and other lower urinary tract diseases显示文摘Intravesical prostatic protrusion(IPP)has emerged as a new prostatic morphometric parameter of significance to aid the clinicians in various aspects of managing the patients with some diseases of the lower urinary tract and the prostate.These include but may not be limited to its role in such conditions as:bladder outlet obstruction,trial without catheter,medical treatment effect,progression of lower urinary tract symptoms related to benign prostatic hypertrophy(LUTS/BPH),risk factor for bladder stone in BPH,overactive bladder,prostate carcinoma,and early urinary continence recovery after laparoscopic radical prostatectomy.In this review,I will try to summarize the different researchers’efforts on the potential practical application of this clinical tool.Technology is ever evolving to help us in the diagnosis and management of our patients.However,we as clinicians should contemplate their cost and possible suffering for the patient by wise and judicious utilization based on our clinical experience and tools.IPP seems to be one such promising clinical tool.Darab Mehraban 2017Asian Journal of Urology2017,4,3:3
2Species Richness, Diversity and Density of Understory Vegetation along Disturbance Gradients in the Himalayan Conifer Forest显示文摘We investigated whether species richness, diversity and density of understory herbaceous plants differed along logging(gap) and grazing(primarily by cattle) disturbance gradients, and sought to identify drivers of richness, diversity and density of understory vegetation of logged sites. A factorial experiment was conducted in the mixed conifer forest of Gidakom in Western Bhutan. Levels of the logging treatment included small(0.15 – 0.24 ha), medium(0.25 – 0.35 ha) and large(0.36 – 1.31 ha) gaps. The grazing treatment included grazed(primarily by cattle) and ungrazed(where herbivores were excluded by a fence) plots nested within each gap. Data were collected from 12 gaps(4 replicates at each level of logging) using the point intercept method. Shannon Weaver Diversity and Margalef's indices were used to estimate species diversity and describe species richness, respectively. Soil samples were analyzed for pH and nutrients. The interaction effect of logging and grazing was significant(p≤0.001) only on species diversity. Relative to ungrazed areas, species diversity was significantly higher(0.01≤p≤0.05) in medium grazed gaps. Under grazed conditions, soil P was negatively correlated with gap size and species diversity. While species diversity was positivelycorrelated(0.01≤p≤0.05) with soil N in grazed plots species richness was positively correlated(0.001≤p≤0.01) with soil N in ungrazed plots. Relative density of Yushania microphylla and Carex nubigena were higher under ungrazed conditions. Our study suggests that the combined effect of cattle grazing and logging results in higher species diversity of understory vegetation in medium and grazed gaps in mixed conifer forests of Bhutan,whereas increase or decrease in relative density of major species is determined primarily by the independent effects of grazing and logging. From management perspective, forest managers must refrain from creating large gaps to avoid loss of nutrients(mainly P and N), which may eventually affect tree regeneration. Managers intending to maintain understory vegetation diversity must consider the combined effects of grazing and logging, ensuring low to moderate grazing pressure.Kesang WANGCHUK András DARABANT Prem Bahadur RAI Maria WURZINGER Werner ZOLLITSCH Georg GRATZER 2014Journal of Mountain Science2014,11,5:2
3An X-ray absorption fine structure study of copper(I) chloride coordination structure in water up to 325 ℃ 显示文摘Fulton J L Hoffmann M Darab J G 2000Chem Phys Lett2000,330,:1
4Remediation of Cr(VI) and Pb (II) aqueous solutions using supported, nanoscale zero-valent- iron显示文摘PONDER S M DARAB J G MALLOUK T E 2000Environmental Science and Technology2000,34,12:1
5Copper(I) and Copper(II) coordination structure under hydrothermal conditions at 325 ℃ : An X-ray absorption fine structure and molecular dynamics study 显示文摘Fulton J L Hoffmann M M Darab J G Palmer B J 2000J Phys Chem A2000,104,11:1
6Remediation of Cr( II ) and Pb( II ) aqueous solutions using supported, nanoscale zero- valent iron显示文摘Ponder S M Darab J G Mallouk T E 2000Environ Sci Technol2000,34,6:1
7Remediation of Cr(Wl) and Pb ( Ⅱ ) aqueous solution using supported, nanoscale zero-valent iron 显示文摘PONDER S M DARAB J D MALLOUK T E 2000Environmental Science & Technology2000,34,:1
8Remediation of Cr( VI ) and Pb( II ) aqueous solutions using supported, nanoscale zero- valent iron 显示文摘Ponder S M Darab J G Mallouk T E 2000Environmental Science & Technology2000,34,12:1
9Remediation of Cr(Ⅵ)and Pb(Ⅱ)aqueous solutions using supported nanoscale zero-valent iron显示文摘Ponder S M Darab J G Mallouk T E 2000Environment Science Technology2000,34,:1
10Rem ediation of Cr(VI) and Pb (II) aqueous solutions using supported, nanoscale zero-- vaent iron显示文摘Ponder SM Darab JG M a llouk TE 2000Environmental Science & Technology2000,,34:1
11Remediation of Cr(Ⅵ)and Pb2+aqueous solutions using supported,nanoscale zero-valent iron显示文摘Ponder S M Darab J G Mallouk T E 2000Environ Sci Technol2000,34,12:1
12Remediation of Cr( Ⅵ )and Pb( Ⅱ )aqueous solutions using supposed, anoseale zero-valent iron显示文摘PONDER S M DARAB J G MALLOUK T E 2000Environ Sci Tech2000,34,12:1
13Remediation of Cr(Ⅵ) and Pb (Ⅱ)Aqueous Solutions Using Supported Nanoscale Zero-valentc Iron显示文摘Ponder S M Darab J G Mallouk T E 2000Environmental Sciences and Technology2000,34,12:1
14Remediation of Cr(Ⅵ)and Pb(Ⅱ)aqueous solutions using supported,nanoscale zero-valent iron显示文摘Ponder S M Darab J G Mallouk T E 2000Environmental Science and Technology2000,34,12:1
15The effects of transglutaminasc on the functional properties of the myofi- brillar protein concentrate obtained from beef heart 显示文摘Ionescu A Aprodu I Darab A 2008Meat Science2008,79,2:1
16Remediation of Cr ( VI ) and Pb (II ) aqueous solutions using supported nanoscale zerovalent iron 显示文摘Ponder S M Darab J G Malloukt E 2000Environmental Science and Technology2000,34,12:1
17Removal of Pertechnetate From Simulated Nuclear Waste Streams Using Supported Zerovalent Iron显示文摘Darab J G Amonette A B Burke D S D 0,,:1
18Surface chemistry and electrochemistry of supported zerovalent iron nanoparticales in the remediation of aqueous metal contaminants 显示文摘Ponder S M Darab J G Bucher J 2001Chemistry of Materials2001,13,2:1
19Remediation of Cr (Ⅵ) and Pb (Ⅱ) aqueous solutions using supported nanoscale zero-valent iron显示文摘Ponder S M Darab J G Mallouk T E 2000Environ Sci Technol2000,34,:1
20Remediation of Cr(Ⅵ) and Pb(Ⅱ) aqueous solution using supported nanoscale zero-valent显示文摘 DARAB J G MALLOUK T E 2000Environ Sci Technol2000,34,:1
返回顶部 每页显示:
共4页 首页 上一页 第1页 下一页 末页 /4 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