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10篇 您的检索式:作者名="Susan Newman"
    题名 作者 年代 出处 被引量
1Extraction of soil organic phosphorus显示文摘Benjamin L. Turner Barbara J. Cade-Menun Leo M. Condron Susan Newman 2004Talanta2004,,2:2
2Limited literacy and mortality in the elderly显示文摘Rebecca L. Sudore MD Kristine Yaffe MD Suzanne Satterfield MD Tamara B. Harris MD Kala M. Mehta DSc Eleanor M. Simonsick PhD Anne B. Newman MD Caterina Rosano MD Ronica Rooks PhD Susan M. Rubin MPH Hilsa N. Ayonayon PhD Dean Schillinger MD 2006Journal of General Internal Medicine2006,,8:1
3Enzyme activity responses to nutrient loading in subtropical wetlands显示文摘C. Ryan Penton Susan Newman 2007Biogeochemistry2007,,1:1
4Epidemiology of basal-like breast cancer显示文摘Robert C. Millikan Beth Newman Chiu-Kit Tse Patricia G. Moorman Kathleen Conway Lynn G. Dressler Lisa V. Smith Miriam H. Labbok Joseph Geradts Jeannette T. Bensen Susan Jackson Sarah Nyante Chad Livasy Lisa Carey H. Shelton Earp Charles M. Perou 2008Breast Cancer Research and Treatment2008,,1:1
5Projecting changes in everglades soil biogeochemistry for carbon and other key elements,to possible 2060 climate and hydrologic scenarios显示文摘WILLIAM OREM SUSAN NEWMAN TODD Z 2015Environmental Management2015,55,4:1
6Inflammatory markers and cardiovascular disease (The Health, Aging and Body Composition [Health ABC] Study)显示文摘Matteo Cesari Brenda W.J.H Penninx Anne B Newman Stephen B Kritchevsky Barbara J Nicklas Kim Sutton-Tyrrell Russell P Tracy Susan M Rubin Tamara B Harris Marco Pahor 2003The American Journal of Cardiology2003,,5:1
7Prospective Study of Obstructive Sleep Apnea and Incident Coronary Heart Disease and Heart Failure: The Sleep Heart Health Study显示文摘Daniel J. Gottlieb Gayane Yenokyan Anne B. Newman George T. O?Connor Naresh M. Punjabi Stuart F. Quan Susan Redline Helaine E. Resnick Elisa K. Tong Marie Diener-West Eyal Shahar 2010Circulation2010,,4:1
8Differential diffusion coefficients of sodium polysulfide显示文摘Susan D T Newman J 1989J Electrochem Soc1989,136,:1
9GRM7 variants associated with age-related hearing loss based on auditory perception显示文摘Dina L. Newman Laurel M. Fisher Jeffrey Ohmen Robert Parody Chin-To Fong Susan T. Frisina Frances Mapes David A. Eddins D. Robert Frisina Robert D. Frisina Rick A. Friedman 2012Hearing Research . 2012 (1-2)2012,,1:1
10Impacts of fire and phosphorus on sawgrass and cattails in an altered landscape of the Florida Everglades显示文摘Introduction:Although fire as a critical ecological process shapes the Florida Everglades landscape,researchers lack landscape-based approach for fire management.The interactive effect of fire,nutrients,water depth,and invasive cattails(Typha spp.)on vegetation communities is of special concern for ecosystem restoration.In particular,questions concerning the effect of fire on nutrient release and,by extension,the potential thereof to stimulate sawgrass(Cladium jamaicense Crantz)re-growth and cattail expansion under varying hydrological conditions are of immediate relevance to ecologists and land managers who work to restore the Everglades.Methods:In late April of 1999,a 42,875 ha surface fire,including a 100 ha peat fire,burned the northern section of Water Conservation Area 3A(WCA-3A)in the Everglades.In this study,total phosphorus(TP)in soil,surface water,pore-water,and vegetation was sampled at non-burned,surface-burned and peat-burned areas within one and five months after the burn.Four years after the initial fire,field data were collected in a large scale survey to analyze how the 1999 fire affected cattail distribution in the altered landscape of high soil TP and cattail habitats.Existing GIS maps were utilized to select field sampling locations and to provide additional information for the analysis.Results:The analyses showed that five months after the fire,sawgrass biomass re-growth was about 5 times higher in burned areas(611±47 g/m^(2))than in non-burned areas(102±18 g/m^(2)).Sawgrass re-growth in water depths less than 30 cm was 4.9±0.4 g/m^(2)/day while sawgrass re-growth in water depths deeper than 60 cm decreased to 0.5±0.3 g/m^(2)/day.Cattail biomass re-growth in peat-burned areas was as high as 1,079±38 g/m^(2).The data also showed that post-fire cattail expansion could be related to cattail stands existing before the fire.Furthermore,post-fire cattail appeared more significant expansion in the areas with soil TP above 900 mg/kg than in that with soil TP below 900 mg/kg.Conclusions:The data showed that fire within altered landscapes(e.g.high soil TP and/or cattail)of the Everglades could stimulate the re-growth and expansion of cattails,and post-fire re-growth of sawgrass could be severely impeded by deep water after a surface-burn.This research indicates that fire continues to be an effective ecological process for maintaining the Everglades;therefore,ecologists and land managers may have to reevaluate the future management of natural fire with regard to its dynamic relationship with high soil TP and cattail expansion in the altered Everglades landscape.Yegang Wu Ken Rutchey Susan Newman Shili Miao Naiming Wang Fred H Sklar William H Orem 2012Ecological Processes2012,1,1:0
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