1·Hydrophobic inhibitors like rotenone or piericidin most likely disrupt the electron transfer.
诸如鱼藤酮或匹利替丁的疏水性抑制剂最有可能破坏电子转移。
2·The preparation of microcapsules of bio-pesticide rotenone by means of in-situ polymerization, with melamine formaldehyde resin(MF) as the shell material, is discussed in this paper.
采用三聚氰胺甲醛树脂(MF)作为囊壁,用原位聚合法对生物农药鱼藤酮进行包囊,制备微胶囊制剂。
3·The Bioassay of rotenone and Tephrosia vogelii extracts aerosols to Culex pipiens quinquefasciatus, Blattellagermanica were researched with electron sprayer.
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。
4·Conclusion GLAST rather than GLT-1 may play a crucial role in excitotoxicity induced by rotenone.
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。
5·Here we report that intragastrically administered rotenone, a commonly used pesticide that inhibits mitochondrial Complex I, is able to reproduce PD pathological staging as found in patients.
在这里,我们报告,灌喂鱼藤酮,一种常用的农药抑制线粒体复合物i,能够产生放电病理分期的发现病人。