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广泛应用的有除虫菊、鱼藤和烟草等。Wider application of a pyrethrum , rotenone and tobacco, and so on.

以NGF诱导后的PC12细胞作为细胞模型,采用鱼藤酮诱导细胞凋亡。Rotenone was used on NGF-differentiated PC12 cells to induce apoptosis.

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鱼藤酮非长效性,因此不会残留聚集在土壤、水中或动植物体内。Rotenone is non-persistent, so there is no accumulation in the water, soil, plants or animals.

结论谷氨酸转运体GLAST可能在鱼藤酮诱导的兴奋性损伤机制中起主要作用。Conclusion GLAST rather than GLT-1 may play a crucial role in excitotoxicity induced by rotenone.

为了优化鱼藤酮异构化制备异鱼藤酮的工艺。采用三氯化铝催化下异构化。To optimize the process of prepartion isorotenone from rotenone by using Lewis acid AlCl3 as catalyst.

染毒后细胞突起结构逐渐消失,细胞体积变小、形态变圆。After the treatment of rotenone cell ecptomas vanished gradually and cell bodies became smaller and smoother.

印楝素、除虫菊素和鱼藤酮对非靶标生物的毒性较高,尤其对家蚕风险性大。Azadirachtin, Pyrethrins and Rotenone are toxic to non-target organisms, especially high risk for Bombyx mori Linaeus.

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结论背部皮下注射鱼藤酮的方法可成功制作帕金森病大鼠模型。Conclusion Rotenone injected subcutaneously in back is an effective method to reproduce the Parkinson disease model in rats.

鱼藤酮在较高的温度下易分解,给常规有机溶剂法提取、分离、浓缩带来困难。It bring difficulties to rotenone extraction and separation from plants that rotenone decomposes easily in high temperature.

实验结果表明,三氯化铝催化鱼藤酮异构化的方法可行,反应条件温和。The process for preparation of isorotenone from rotenone by catalyst AlCl3 is feasible, and the reaction condition was mild.

采用叶片浸渍法测定了印楝素与鱼藤酮混配对牛蒡长管蚜的增效作用及两种药剂混配的最佳配比。The synergism of Azadirachtin and Rotenone against Uroleucon gobonis with immerse leafs method, and their best ratio were studied.

用电子喷雾装置测定了鱼藤酮和非洲山毛豆提取物气雾剂对致倦库蚊和德国小蠊的击倒活性。The Bioassay of rotenone and Tephrosia vogelii extracts aerosols to Culex pipiens quinquefasciatus, Blattellagermanica were researched with electron sprayer.

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美国环保署声称,鱼藤酮对野生动物与人类的毒性等级是「低」等级,建议用来消除亚洲鲤鱼的用量也不会对鸟类或哺乳动物造成毒害。The EPA calls the toxicity of rotenone to wildlife and humans "low" and says no poisoning of birds or mammals would result from concentrations recommended for wiping out Asian carp.

本文首次以毒死蜱、鱼藤酮为模板分子,采用单步溶胀聚合法制得了单分散分子印迹聚合物微球。In this paper, Chlorpyrifos and Rotenone were firstly chosen as template. Monodisperse molecular imprinted polymer microspheres were prepared by a single-step swelling and polymerization method.