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果蝇高通量呼吸代谢测量技术

时间:2021-07-27      阅读:1544

易科泰生态技术公司提供高通量果蝇呼吸代谢测量全面解决方案:

1.高分辨率、高通量果蝇能量代谢测量,8通道、16通道直至64通道供选配

2.高通量、高灵敏度果蝇采食行为在线监测技术方案

3.可分辨“品尝”行为和“采食”行为及食性选择行为

4.应用于生物医学、健康医学、神经科学、遗传性、进化生态学、发育生物学等实验研究

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部分参考文献:

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Bethany A Stahl, PhD, Melissa E Slocumb, BS, Hersh Chaitin, MS, Justin R DiAngelo, PhD,

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Luo Y, Johnson J C, Chakraborty T S, et al. Yeast volatiles double starvation survival in Drosophila[J]. Science Advances, 2021, 7(20):eabf8896.

Mallard, F., Nolte, V., Tobler, R. et al. A simple genetic basis of adaptation to a novel thermal environment results in complex metabolic rewiring in Drosophila. Genome Biol 19, 119 (2018). 

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Mishra P, Yang S E, Montgomery A B, et al. The fly liquid-food electroshock assay (FLEA) suggests opposite roles for neuropeptide F in avoidance of bitterness and shock[J]. BMC Biology, 2021, 19(1).

Mothersill C, Vo N, Lemon J, et al. The Phenotypic and Transcriptomic Response of the Caenorhabditis elegans Nematode to Background and Below-Background Radiation Levels[J]. Frontiers in Public Health, 2020, 8:581796.

Neville K E, Bosse T L, Klekos M, et al. A novel ex vivo method for measuring whole brain metabolism in model systems[J]. Journal of Neuroscience Methods, 2018, 296:32-43.

Rajpurohit S, V Vrkoslav, Hanus R, et al. Post-eclosion temperature effects on insect cuticular hydrocarbon profiles[J]. Ecology and Evolution, 2020.

Schilder R J, Raynor M. Molecular plasticity and functional enhancements of leg muscles in response to hypergravity in the fruit fly Drosophila melanogaster[J]. Journal of Experimental Biology, 2017, 220(19):3508-3518.

Suh, G., Wong, A., Hergarden, A. et al. A single population of olfactory sensory neurons mediates an innate avoidance behaviour in Drosophila. Nature 431, 854–859 (2004). 

Zorana Kurbalija Noviiet al. Lithium influences whole-organism metabolic rate in Drosophila subobscura[J]. Journal of Neuroscience Research, 2020(6).


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