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Institution

Griffith University

EducationBrisbane, Queensland, Australia
About: Griffith University is a education organization based out in Brisbane, Queensland, Australia. It is known for research contribution in the topics: Population & Context (language use). The organization has 13830 authors who have published 49318 publications receiving 1420865 citations.


Papers
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Journal ArticleDOI
TL;DR: In this article, an approach is outlined to guide future efforts in research and programme development aimed at encouraging students' to act as catalysts of environmental communication and learning beyond school boundaries.
Abstract: Many environmental problems are desperately in need of attention. Educating both adults and young people is seen as part of the solution to such problems. Given this situation, and the already considerable investment in environmental education in schools, the notion of encouraging students to initiate environmental discussions with adults at home and in the community seems attractive and worthy of investigation. To this end, this paper critically reviews education and social science literature concerning intergenerational influence. An approach is outlined to guide future efforts in research and programme development aimed at encouraging students’ to act as catalysts of environmental communication and learning beyond school boundaries.

240 citations

Journal ArticleDOI
TL;DR: It is clear, however, that non-motorised nature based recreation has negative impacts on a diversity of birds from a range of habitats in different climatic zones and regions of the world.

240 citations

Journal ArticleDOI
01 Nov 2010-Leukemia
TL;DR: This study identifies four PMA-induced microRNAs that when overexpressed cause cell-cycle arrest and partial differentiation and when used in combination induce additional changes not seen by any individual microRNA.
Abstract: Acute myeloid leukemia (AML) involves a block in terminal differentiation of the myeloid lineage and uncontrolled proliferation of a progenitor state. Using phorbol myristate acetate (PMA), it is possible to overcome this block in THP-1 cells (an M5-AML containing the MLL-MLLT3 fusion), resulting in differentiation to an adherent monocytic phenotype. As part of FANTOM4, we used microarrays to identify 23 microRNAs that are regulated by PMA. We identify four PMA-induced microRNAs (mir-155, mir-222, mir-424 and mir-503) that when overexpressed cause cell-cycle arrest and partial differentiation and when used in combination induce additional changes not seen by any individual microRNA. We further characterize these pro-differentiative microRNAs and show that mir-155 and mir-222 induce G2 arrest and apoptosis, respectively. We find mir-424 and mir-503 are derived from a polycistronic precursor mir-424-503 that is under repression by the MLL-MLLT3 leukemogenic fusion. Both of these microRNAs directly target cell-cycle regulators and induce G1 cell-cycle arrest when overexpressed in THP-1. We also find that the pro-differentiative mir-424 and mir-503 downregulate the anti-differentiative mir-9 by targeting a site in its primary transcript. Our study highlights the combinatorial effects of multiple microRNAs within cellular systems.

240 citations

Journal ArticleDOI
01 Apr 2019-Heliyon
TL;DR: The results of the present study illustrate that the highest cooling effect distance and cooling effect intensity are for large urban parks with an area of more than 10 ha; however, in addition to the area, the natural elements and qualities of the urban green spaces, as well as climate characteristics, highly inform the urbanGreen space cooling effect.

240 citations

Journal ArticleDOI
15 Jul 2008
TL;DR: The Pearl River Estuary is a subtropical estuary and the second largest in China based on discharge volume from the Pearl River as mentioned in this paper, which shows a remarkable capacity to cope with excessive nutrients.
Abstract: The Pearl River Estuary is a subtropical estuary and the second largest in China based on discharge volume from the Pearl River. Processes in the estuary vary spatially and temporally (wet vs dry season). In the dry season at the head of the estuary, hypoxic and nearly anoxic conditions occur and NH4 reaches > 600 mu M, NO3 is similar to 300 mu M and nitrite is similar to 60 mu M indicating that nitrification and denitrification may be important dry season processes in the region extending 40 km upstream of the Humen outlet. There are very few biological studies conducted in this upper section of the estuary in either the dry or wet seasons and hence there is a need for further research in this region of the river. In the wet season, the salinity wedge extends to the Hongqimen outlet and oxygen is low (35-80% saturation). Nitrate is similar to 100 mu M, silicate similar to 140 mu M: and phosphate is relatively low at similar to 0.5 mu M, yielding an N:P ratio up to similar to 200:1 in summer. Nutrients decrease in the lower estuary and primary productivity may become potentially P-limited. Eutrophication is not as severe as one would expect from the nutrient inputs from the Pearl River and from Hong Kong's sewage discharge. This estuary shows a remarkable capacity to cope with excessive nutrients. Physical processes such as river discharge, tidal flushing, turbulent dispersion, wind-induced mixing, and estuarine circulation play an important role in controlling the production and accumulation of algal blooms and the potential occurrence of hypoxia. Superimposed on the physical processes of the estuary are the chemical and biological processes involved in the production of the bloom. For example, the 100N:1P ratio indicates that P potentially limits the amount of algal biomass (and potential biological oxygen demand) in summer. While extended periods of hypoxia are rare in Hong Kong waters, episodic events have been reported to occur during late summer due to factors such as low wind, high rainfall and river discharge which result in strong density stratification that significantly dampens vertical mixing processes. Nutrient loads are likely to change over the next several decades and monitoring programs are essential to detect the response of the ecosystem due to the future changes in nutrient loading and the ratio of nutrients. (c) 2008 Elsevier Ltd. All rights reserved.

240 citations


Authors

Showing all 14162 results

NameH-indexPapersCitations
Rasmus Nielsen13555684898
Claudiu T. Supuran134197386850
Jeffrey D. Sachs13069286589
David Smith1292184100917
Michael R. Green12653757447
John J. McGrath120791124804
E. K. U. Gross119115475970
David M. Evans11663274420
Mike Clarke1131037164328
Wayne Hall111126075606
Patrick J. McGrath10768151940
Peter K. Smith10785549174
Erko Stackebrandt10663368201
Phyllis Butow10273137752
John Quackenbush9942767029
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Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
2023162
2022572
20214,086
20203,879
20193,573
20183,318