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11篇 您的检索式:作者名="Gleeson O"
    题名 作者 年代 出处 被引量
1Examination of the photoinitiation processes in photopolymer materials显示文摘Michael R Gleeson Shui Liu Sean O’Duill 2008J Appl Phys2008,104,:1
2Bone Marrow‐Derived Mesenchymal Stem Cells Have Innate Procoagulant Activity and Cause Microvascular Obstruction Following Intracoronary Delivery: Amelioration by Antithrombin Therapy显示文摘Birgitta M. Gleeson Kenneth Martin Mohammed T. Ali Arun H. S. Kumar M. Gopala‐Krishnan Pillai Sujith P. G. Kumar John F. O’Sullivan Derek Whelan Alessia Stocca Wisam Khider Frank P. Barry Timothy O’Brien Noel M. Caplice 2015Stem Cells2015,,9:1
3Novel Microhydroxyapatite Particles in a Collagen Scaffold: A Bioactive Bone Void Filler?显示文摘Frank G. Lyons John P. Gleeson Sonia Partap Karen Coghlan Fergal J. O’Brien 2014Clinical Orthopaedics and Related Research?2014,,4:1
4A novel serum microRNA panel to discriminate benign from malignant ovarian disease显示文摘Ream Langhe Lucy Norris Feras Abu Saadeh Gordon Blackshields Rachel Varley Ashling Harrison Noreen Gleeson Cathy Spillane Cara Martin Dearbhaile M. O’Donnell Tom D’Arcy John O’Leary Sharon O’Toole 2014Cancer Letters2014,,:1
5Examination of the photoinitiation processes in photopolymer materials显示文摘Michael R Gleeson Shui Liu Sean O'Duill 2008J Appl Phys2008,104,06:1
6Competition- induced criticality in a model of meme popularity 显示文摘Gleeson J P Ward J A O'Sullivan K P 2014Physical Review Letters2014,112,04:1
7Histone deacetylase com- plexes promote trinucleotide repeat expansions显示文摘Debacker K Frizzell A Gleeson O 2012PLoS Bio2012,10,10:1
8Biologically derived nanomagnets in self-orga- nized patterned media显示文摘Mayes E Bewick A Gleeson D Hoinville J Jones R Kasyutich O Nartowski A Warne B Wiggins J Wong KKW 2003IEEE Trans Magn2003,39,:1
9EHect of milking fre- quency and nutritional level on hoof health, locomotion score and lying behavior of dairy cows 显示文摘O'Driscoll K Gleeson D OBrien B 2010Livestock Sci2010,,127:1
10Addition of hydroxyapatite improves stiffness, interconnectivity and osteogenic potential of a highly porous collagen-based scaffold for bone tissue regeneration显示文摘Gleeson JP Plunkett NA O'Brien FJ 2010Eur Cell Mater2010,20,:1
11Tissue culture tools for selenium hyperaccumulator Neptunia amplexicaulis for development in phytoextraction显示文摘Neptunia amplexicaulis is an herbaceous legume endemic to the Richmond area in central Queensland,Australia and is one of the strongest known Selenium hyperaccumulators on earth,showing significant potential to be utilised in Se phytoextraction applications.Here a protocol was established for in vitro micropropagation of Se hyperaccumula-tor N.amplexicaulis using nodal segments from in vitro-germinated seedlings.Shoot multiplication was achieved on Murashige and Skoog(MS)basal media supplemented with various concentrations of 6-Benzylaminopurine(BA)(1.0,2.0,3.0 mg L^(−1))alone or in combination with low levels of Naphthaleneacetic acid(NAA)(0.1,0.2,0.3 mg L^(−1)),with 2.0 mg L^(−1) BA+0.2 mg L^(−1) NAA found to be most effective.Elongated shoots were rooted in vitro using NAA,with highest root induction rate of 30%observed at 0.2 mg L^(−1) NAA.About 95%of the in vitro rooted shoots survived acclimatization.Clonally propagated plantlets were dosed with selenate/selenite solution and assessed for Se tissue concentrations using Inductively Coupled Plasma Atomic Emission Spectroscopy(ICP-AES)and found to retain their ability to hyperaccumulate.The protocol developed for this study has potential to be optimised for generating clonal plants of N.amplexicaulis for use in research and phytoextraction industry applications.Billy O’Donohue Jayeni Hiti-Bandaralage Madeleine Gleeson Chris O’Brien Maggie-Anne Harvey Antony van der Ent Katherine Pinto Irish Neena Mitter Alice Hayward 2022Natural Products and Bioprospecting2022,12,1:0
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