scispace - formally typeset
Search or ask a question
Institution

University of Alabama

EducationTuscaloosa, Alabama, United States
About: University of Alabama is a education organization based out in Tuscaloosa, Alabama, United States. It is known for research contribution in the topics: Population & Poison control. The organization has 27323 authors who have published 48609 publications receiving 1565337 citations. The organization is also known as: Alabama & Bama.


Papers
More filters
Journal ArticleDOI
TL;DR: In this paper, a review of 42 treatment studies on psychopathy revealed that there is little scientific basis for the belief that psychopathy is an untreatable disorder, and there are relatively few empirical investigations of the psychopathy-treatment relationship and even fewer efforts that follow up psychopathic individuals after treatment.

471 citations

Journal ArticleDOI
TL;DR: The ibrutinib-rituximab regimen resulted in progression-free survival and overall survival that were superior to those with a standard chemoimmunotherapy regimen among patients 70 years of age or younger with previously untreated CLL.
Abstract: Background Data regarding the efficacy of treatment with ibrutinib–rituximab, as compared with standard chemoimmunotherapy with fludarabine, cyclophosphamide, and rituximab, in patients wi...

470 citations

Journal ArticleDOI
TL;DR: In this article, the authors evaluate the range and intensity of networking among high-growth and low-growth entrepreneurial ventures in the People's Republic of China and find that the relationship between networking activities and growth transcended the stage of firm development.

470 citations

Journal ArticleDOI
Kristina J. Anderson-Teixeira1, Kristina J. Anderson-Teixeira2, Stuart J. Davies1, Stuart J. Davies3, Amy C. Bennett2, Erika Gonzalez-Akre2, Helene C. Muller-Landau1, S. Joseph Wright1, Kamariah Abu Salim, Angelica M. Almeyda Zambrano4, Angelica M. Almeyda Zambrano2, Angelica M. Almeyda Zambrano5, Alfonso Alonso2, Jennifer L. Baltzer6, Yves Basset1, Norman A. Bourg2, Eben N. Broadbent2, Eben N. Broadbent5, Eben N. Broadbent4, Warren Y. Brockelman7, Sarayudh Bunyavejchewin8, David F. R. P. Burslem9, Nathalie Butt10, Nathalie Butt11, Min Cao12, Dairon Cárdenas, George B. Chuyong13, Keith Clay14, Susan Cordell15, H. S. Dattaraja16, Xiaobao Deng12, Matteo Detto1, Xiaojun Du17, Alvaro Duque18, David L. Erikson3, Corneille E. N. Ewango, Gunter A. Fischer, Christine Fletcher19, Robin B. Foster, Christian P. Giardina15, Gregory S. Gilbert1, Gregory S. Gilbert20, Nimal Gunatilleke21, Savitri Gunatilleke21, Zhanqing Hao17, William W. Hargrove15, Terese B. Hart, Billy C.H. Hau22, Fangliang He23, Forrest M. Hoffman24, Robert W. Howe25, Stephen P. Hubbell26, Stephen P. Hubbell1, Faith Inman-Narahari27, Patrick A. Jansen1, Patrick A. Jansen28, Mingxi Jiang17, Daniel J. Johnson14, Mamoru Kanzaki29, Abdul Rahman Kassim19, David Kenfack1, David Kenfack3, Staline Kibet30, Margaret F. Kinnaird31, Lisa Korte2, Kamil Král, Jitendra Kumar24, Andrew J. Larson32, Yide Li, Xiankun Li17, Shirong Liu, Shawn K. Y. Lum33, James A. Lutz34, Keping Ma17, Damian M. Maddalena24, Jean-Remy Makana31, Yadvinder Malhi10, Toby R. Marthews10, Rafizah Mat Serudin, Sean M. McMahon1, Sean M. McMahon35, William J. McShea2, Hervé Memiaghe36, Xiangcheng Mi17, Takashi Mizuno29, Michael D. Morecroft37, Jonathan Myers38, Vojtech Novotny39, Alexandre Adalardo de Oliveira40, Perry S. Ong41, David A. Orwig42, Rebecca Ostertag43, Jan den Ouden28, Geoffrey G. Parker35, Richard P. Phillips14, Lawren Sack26, Moses N. Sainge, Weiguo Sang17, Kriangsak Sri-ngernyuang44, Raman Sukumar16, I-Fang Sun45, Witchaphart Sungpalee44, H. S. Suresh16, Sylvester Tan, Sean C. Thomas46, Duncan W. Thomas47, Jill Thompson48, Benjamin L. Turner1, María Uriarte49, Renato Valencia50, Marta I. Vallejo, Alberto Vicentini51, Tomáš Vrška, Xihua Wang52, Xugao Wang, George D. Weiblen53, Amy Wolf25, Han Xu, Sandra L. Yap41, Jess K. Zimmerman48 
Smithsonian Tropical Research Institute1, Smithsonian Conservation Biology Institute2, National Museum of Natural History3, University of Alabama4, Stanford University5, Wilfrid Laurier University6, Mahidol University7, Department of National Parks, Wildlife and Plant Conservation8, University of Aberdeen9, Environmental Change Institute10, University of Queensland11, Xishuangbanna Tropical Botanical Garden12, University of Buea13, Indiana University14, United States Forest Service15, Indian Institute of Science16, Chinese Academy of Sciences17, National University of Colombia18, Forest Research Institute Malaysia19, University of California, Santa Cruz20, University of Peradeniya21, University of Hong Kong22, University of Alberta23, Oak Ridge National Laboratory24, University of Wisconsin–Green Bay25, University of California, Los Angeles26, College of Tropical Agriculture and Human Resources27, Wageningen University and Research Centre28, Kyoto University29, University of Nairobi30, Wildlife Conservation Society31, University of Montana32, Nanyang Technological University33, Utah State University34, Smithsonian Environmental Research Center35, Centre national de la recherche scientifique36, Natural England37, Washington University in St. Louis38, Academy of Sciences of the Czech Republic39, University of São Paulo40, University of the Philippines Diliman41, Harvard University42, University of Hawaii at Hilo43, Maejo University44, National Dong Hwa University45, University of Toronto46, Washington State University Vancouver47, University of Puerto Rico, Río Piedras48, Columbia University49, Pontificia Universidad Católica del Ecuador50, National Institute of Amazonian Research51, East China Normal University52, University of Minnesota53
TL;DR: The broad suite of measurements made at CTFS-ForestGEO sites makes it possible to investigate the complex ways in which global change is impacting forest dynamics, and continued monitoring will provide vital contributions to understanding worldwide forest diversity and dynamics in an era of global change.
Abstract: Global change is impacting forests worldwide, threatening biodiversity and ecosystem services including climate regulation. Understanding how forests respond is critical to forest conservation and climate protection. This review describes an international network of 59 long-term forest dynamics research sites (CTFS-ForestGEO) useful for characterizing forest responses to global change. Within very large plots (median size 25ha), all stems 1cm diameter are identified to species, mapped, and regularly recensused according to standardized protocols. CTFS-ForestGEO spans 25 degrees S-61 degrees N latitude, is generally representative of the range of bioclimatic, edaphic, and topographic conditions experienced by forests worldwide, and is the only forest monitoring network that applies a standardized protocol to each of the world's major forest biomes. Supplementary standardized measurements at subsets of the sites provide additional information on plants, animals, and ecosystem and environmental variables. CTFS-ForestGEO sites are experiencing multifaceted anthropogenic global change pressures including warming (average 0.61 degrees C), changes in precipitation (up to +/- 30% change), atmospheric deposition of nitrogen and sulfur compounds (up to 3.8g Nm(-2)yr(-1) and 3.1g Sm(-2)yr(-1)), and forest fragmentation in the surrounding landscape (up to 88% reduced tree cover within 5km). The broad suite of measurements made at CTFS-ForestGEO sites makes it possible to investigate the complex ways in which global change is impacting forest dynamics. Ongoing research across the CTFS-ForestGEO network is yielding insights into how and why the forests are changing, and continued monitoring will provide vital contributions to understanding worldwide forest diversity and dynamics in an era of global change.

470 citations

Journal ArticleDOI
TL;DR: Secular trends for weight gain are continuing in CARDIA, but the magnitude of weight gain differed among the four race-sex groups, and each race- sex group experienced significant weight increases related to aging during their early to midtwenties.
Abstract: The prevalence of obesity increased in the United States through the 1980s. The authors examined 10-year aging and secular (time-related) trends in the Coronary Artery Risk Development in Young Adults (CARDIA) cohort for indications of whether these trends are continuing and for ages of peak weight gain in young adults. CARDIA is a population-based, prospective study of 5,115 African-American and White men and women aged 18-30 years at baseline. Body weight and overweight prevalence were measured at five time points from 1985-1986 to 1995-1996. Linear, mixed-model regression was used to partition weight gain into that due to secular trends and that due to aging. Prevalence of overweight (body mass index (BMI) > or = 25.0 kg/m2) increased markedly, and prevalence of severe obesity (BMI > or = 40.0 kg/m2) doubled in all race-sex groups. Each race-sex group experienced significant secular weight gains, ranging from 0.96 kg/year (95% confidence interval: 79, 1.13) in African-American women to 0.55 kg/year (95% confidence interval: 0.41, 0.69) in White women. Significant secular gains were present during each follow-up period. Each race-sex group also experienced significant weight increases related to aging during their early to midtwenties. Secular trends for weight gain are continuing in CARDIA, but the magnitude of weight gain differed among the four race-sex groups.

468 citations


Authors

Showing all 27508 results

NameH-indexPapersCitations
Jasvinder A. Singh1762382223370
Hongfang Liu1662356156290
Ian J. Deary1661795114161
Yongsun Kim1562588145619
Dong-Chul Son138137098686
Simon C. Watkins13595068358
Kenichi Hatakeyama1341731102438
Conor Henderson133138788725
Peter R Hobson133159094257
Tulika Bose132128588895
Helen F Heath132118589466
James Rohlf131121589436
Panos A Razis130128790704
David B. Allison12983669697
Eduardo Marbán12957949586
Network Information
Related Institutions (5)
Pennsylvania State University
196.8K papers, 8.3M citations

95% related

Michigan State University
137K papers, 5.6M citations

94% related

University of Minnesota
257.9K papers, 11.9M citations

94% related

University of Florida
200K papers, 7.1M citations

94% related

Ohio State University
222.7K papers, 8.3M citations

94% related

Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
202372
2022357
20212,703
20202,759
20192,602
20182,411