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3篇 您的检索式:作者名="Alkanat"
    题名 作者 年代 出处 被引量
1Effects of Somatostatin Analogues and Vitamin C on Bacterial Translocation in an Experimental Intestinal Obstruction Model of Rats显示文摘Mahir Akyildiz Sinan Ersin Erkan Oymaci Murat Dayanga? Murat Kapkac Murat Alkanat 2000Investigative Surgery2000,,3:1
2Perspective on rhabdo- myolysis-induced acute kidney injury and new treatment options 显示文摘Ulusoy S Ozkan G Alkanat M 2013AmJ Nephrol2013,38,5:1
3Automated phenotyping of Caenorhabditis elegans embryos with a high-throughput-screening microfluidic platform显示文摘The nematode Caenorhabditis elegans has been extensively used as a model multicellular organism to study the influence of osmotic stress conditions and the toxicity of chemical compounds on developmental and motility-associated phenotypes.However,the several-day culture of nematodes needed for such studies has caused researchers to explore alternatives.In particular,C.elegans embryos,due to their shorter developmental time and immobile nature,could be exploited for this purpose,although usually their harvesting and handling is tedious.Here,we present a multiplexed,high-throughput and automated embryo phenotyping microfluidic approach to observe C.elegans embryogenesis after the application of different chemical compounds.After performing experiments with up to 800 embryos per chip and up to 12h of time-lapsed imaging per embryo,the individual phenotypic developmental data were collected and analyzed through machine learning and image processing approaches.Our proof-of-concept platform indicates developmental lag and the induction of mitochondrial stress in embryos exposed to high doses(200mM)of glucose and NaCl,while small doses of sucrose and glucose were shown to accelerate development.Overall,our new technique has potential for use in large-scale developmental biology studies and opens new avenues for very rapid high-throughput and high-content screening using C.elegans embryos.Huseyin Baris Atakan Tunc Alkanat Matteo Cornaglia Raphael Trouillon Martin A.M.Gijs 2020Microsystems & Nanoengineering2020,6,1:0
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