25 resultados para 060.2430

em Chinese Academy of Sciences Institutional Repositories Grid Portal


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Microstructure optical fiber with uniform intensity distribution of the fundamental mode is proposed. The design guide line and characteristics of this kind fiber are demonstrated. The relationship between refractive index profile and structure parameters is investigated. The mechanism of forming uniform fundamental mode in these fibers is analyzed.

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Cell culture and growth in space is crucial to understand the cellular responses under microgravity. The effects of microgravity were coupled with such environment restrictions as medium perfusion, in which the underlying mechanism has been poorly understood. In the present work, a customer-made counter sheet-flow sandwich cell culture device was developed upon a biomechanical concept from fish gill breathing. The sandwich culture unit consists of two side chambers where the medium flow is counter-directional, a central chamber where the cells are cultured, and two porous polycarbonate membranes between side and central chambers. Flow dynamics analysis revealed the symmetrical velocity profile and uniform low shear rate distribution of flowing medium inside the central culture chamber, which promotes sufficient mass transport and nutrient supply for mammalian cell growth. An on-orbit experiment performed on a recovery satellite was used to validate the availability of the device.

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The dispersion compensation characteristics of the chirped fiber grating (CFG) for different dispersion compensation positions are analyzed in externally modulated cable television (CATV) lightwave system and the analytic expression of the composite second order (CSO) distortion is derived. The analyses give a reasonable explanation for the position-dependent effect of CFG dispersion compensator, which was found in practical systems. Moreover, the theoretical result is also verified by an experiment. It is believed that the theory will be helpful in designing optical CATV fiber links with nodes at proper positions both for intensity amplification and dispersion compensation.

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The nonlinear switching characteristics of fused fiber directional couplers were studied experimentally. By using femtosecond laser pulses with pulse width of 100 fs and wavelength of about 1550 nm from a system of Ti:sapphire laser and optical parametric amplifier (OPA), the nonlinear switching properties of a null coupler and a 100% coupler were measured. The experimental results were coincident with the simulations based on nonlinear propagation equations in fiber by using super-mode theory. Nonlinear loss in fiber was also measured to get the injected power at the coupler. After deducting the nonlinear loss and input efficiency, the nonlinear switching critical peak powers for a 100% and a null fused couplers were calculated to be 9410 and 9440 W, respectively. The nonlinear loss parameter P_(N) in an expression of α_(NL)=αP/P_(N) was obtained to be P_(N)=0.23 W.

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A high-power ytterbium-doped fiber laser (YDFL) with homemade double-clad fiber (DCF) is introduced in this letter. The geometric parameter and laser characteristics of the fiber have been studied. With one-end-pumping scheme, pumped by a high-power laser diode with launching power of 280 W, a maximum continuous wave (CW) output of 110 W is obtained with an optical-to-optical efficiency of 40%.

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The question of how amphibians can protect themselves from reactive oxygen species when exposed to the sun in an oxygen-rich atmosphere is important and interesting, not only from an evolutionary viewpoint, but also as a primer for researchers interested in mammalian skin biology, in which such peptide systems for antioxidant defense are not well studied. The identification of an antioxidant peptide named antioxidin-RL from frog (Odorrana livida) skin in this report supports the idea that a peptide antioxidant system may be a widespread antioxidant strategy among amphibian skins. Its ability to eliminate most of the 2,2'-azino-bis(3-ethylbenzthiazoline-6-sulfonic acid) radical tested within 2 s, which is much faster than the commercial antioxidant factor butylated hydroxytoluene, suggests that it has a potentially large impact on redox homeostasis in amphibian skins. Cys10 is proven to be responsible for its rapid radical scavenging function and tyrosines take part in the binding of antioxidin-RL to radicals according to our nuclear magnetic resonance assay. (C) 2010 Elsevier Inc. All rights reserved.

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为了阐明硅藻利用氮源的分子机制,以三角褐指藻为材料,利用抑制差减杂交技术,分离鉴定了16个在缺氮诱导条件下上调表达的基因片段。其中,与已知功能基因具有较高相似性的有7种,都是跟氮源的吸收利用相关的。Northern blotting验证其中5个基因,包括硝酸盐转运蛋白基因、铁氧化还原蛋白亚硝酸还原酶基因、铵盐转运蛋白基因、结合ATP盒的转运蛋白基因和嘌呤透过酶基因,在缺氮诱导条件下转录水平有明显上调。

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采用PCR技术获得了长江和珠江流域的两种科鱼类 1 1 37bpCytb基因的片段 ,进行了序列测定 ,并用Mega软件进行了序列分析。研究发现两种科鱼类的全序列从第十位碱基起有一个三联体密码子的缺失 ,推测为鲇形目鱼类Cytb序列所特有特征。黄颡鱼和大鳍种群间的序列差异分别为 0 .4 %和 1 .6 % ,介于一般淡水鱼类mtDNA种内序列的变异范围 ,而高于洄游鱼类序列变异。黄颡鱼属和属Cytb基因序列间的差异为 1 7.6 %— 1 8.0 % ,大大高于种间的序列差异率 ,也从分子水平上

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为了探讨淡水绿藻在适应CO2 浓度变化过程中细胞形态和结构的变化 ,通过普通显微镜和电子显微镜观察了在不同CO2 浓度培养下的莱因衣藻 (ChlamydomonasreinhardtiiDang)和斜生栅藻 (ScenedesmusobliquusK櫣tz)细胞。结果表明 ,CO2 浓度变化对莱因衣藻细胞体积没有明显的影响 ,但斜生栅藻在低浓度CO2 培养下细胞体积明显增大 ,并可见细胞内含有大量颗粒。两种绿藻细胞的超微结构显示 ,在低浓度CO2 培养下 ,细胞内叶绿体数目明显减少 ,并可见明显的淀粉盘包

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As a solution of accurate simulation of the body effect in PD SOI analogue circuit, a simulation model of distributed body contact resistance and parasitical capacitance is presented. Based on this model, we have designed and simulated a sense amplifier that applied to V a 0.8um PD SOI 64K SRAM.