随着硅-光技术的突破,光片上网络系统相比传统的片上系统具有更优的性能。微环谐振器(micro ring resonators,MRR)是组成光路由器的核心器件,因温度影响或制造缺陷,MRR极易发生谐振波长的漂移,从而引起器件的桥接故障,降低光片上网络系...随着硅-光技术的突破,光片上网络系统相比传统的片上系统具有更优的性能。微环谐振器(micro ring resonators,MRR)是组成光路由器的核心器件,因温度影响或制造缺陷,MRR极易发生谐振波长的漂移,从而引起器件的桥接故障,降低光片上网络系统的安全性和可靠性。文中建立了MRR桥接故障模型,提出了光路由器桥接故障数量检测方法,首先将光路由器中的微环谐振器进行分类,依次建立3种光路寻找结构,得到3条桥接故障寻找路径,找到每条光路径下对应的可以构成桥接故障的微环谐振器。实验结果证明了文中设计的故障数量检测方法的有效性。展开更多
To study the inhibiting effects of S-Nitroso-Glutathione (GSNO) on sporulation process of Eimeria tenella (E. tenella) oocysts by detecting the sporulation rate, GSNO as nitric oxide donor was used to treat E. ten...To study the inhibiting effects of S-Nitroso-Glutathione (GSNO) on sporulation process of Eimeria tenella (E. tenella) oocysts by detecting the sporulation rate, GSNO as nitric oxide donor was used to treat E. tenella oocysts sporulated for different times; Several kinds of antioxidants and oxidants were used to investigate the inhibitory effects of GSNO on sporogony process of E. tenella oocysts. The results showed that GSNO still inhibited the oocysts sporulated 10 h, but had few inhibiting effect on the oocysts sporulated for 14 h; the antioxidants, such as Vitamin C (VC), mannitol and sodium salicylate, could not eliminate the inhibitory effects of GSNO on oocysts; neither did the ferrous sulfate (FeSO4) nor Dithiothreitol (DTT). However, the oxidants, potassium dichromate (K2Cr2OT) and potassium permanganate (KMnO4) could obviously repress the effects of GSNO on oocysts. At present, the inhibitory mechanism of GSNO on unsporulated oocysts was still unclear.展开更多
文摘随着硅-光技术的突破,光片上网络系统相比传统的片上系统具有更优的性能。微环谐振器(micro ring resonators,MRR)是组成光路由器的核心器件,因温度影响或制造缺陷,MRR极易发生谐振波长的漂移,从而引起器件的桥接故障,降低光片上网络系统的安全性和可靠性。文中建立了MRR桥接故障模型,提出了光路由器桥接故障数量检测方法,首先将光路由器中的微环谐振器进行分类,依次建立3种光路寻找结构,得到3条桥接故障寻找路径,找到每条光路径下对应的可以构成桥接故障的微环谐振器。实验结果证明了文中设计的故障数量检测方法的有效性。
文摘To study the inhibiting effects of S-Nitroso-Glutathione (GSNO) on sporulation process of Eimeria tenella (E. tenella) oocysts by detecting the sporulation rate, GSNO as nitric oxide donor was used to treat E. tenella oocysts sporulated for different times; Several kinds of antioxidants and oxidants were used to investigate the inhibitory effects of GSNO on sporogony process of E. tenella oocysts. The results showed that GSNO still inhibited the oocysts sporulated 10 h, but had few inhibiting effect on the oocysts sporulated for 14 h; the antioxidants, such as Vitamin C (VC), mannitol and sodium salicylate, could not eliminate the inhibitory effects of GSNO on oocysts; neither did the ferrous sulfate (FeSO4) nor Dithiothreitol (DTT). However, the oxidants, potassium dichromate (K2Cr2OT) and potassium permanganate (KMnO4) could obviously repress the effects of GSNO on oocysts. At present, the inhibitory mechanism of GSNO on unsporulated oocysts was still unclear.