49 resultados para 926

em Chinese Academy of Sciences Institutional Repositories Grid Portal


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研究两半无限大黏弹性体界面Griffith裂纹在反平面剪切突加载荷下,裂纹尖端动应力强度因子的时间响应。首先,运用积分变换方法将黏弹性混合边值问题化成变换域上的对偶积分方程。通过引入裂纹位错密度函数进一步化成Cauchy型奇异积分方程。运用分片连续函数法数值求解奇异积分方程,得到变换域内的动应力强度因子。再用Laplace积分变换数值反演方法,将变换域的解反演到时间域内,最终求得动应力强度因子的时间响应,并对黏弹性参数的影响进行了分析。

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通过水中爆炸波对水泥试样的损伤破坏实验来模拟水力裂缝层内爆炸采油中激波使岩石损伤开裂的现象.结果表明,试样预制剖面上的裂纹分布可以近似代表其内部的裂纹分布规律.观察到了四个破坏区域:压实破坏区、压实损伤区、拉伸损伤区和拉伸破坏区,并对这些区域特征做了详细描述;利用冲击波的相关理论,对水泥试样损伤开裂的机理做了初步分析.研究发现,裂纹的起裂扩展与水泥试样的初始损伤有密切关系;并且裂纹的形状受炸药与水泥试样尺度比值以及炸药的安放位置等条件控制.最后通过对压实破坏区渗透率实验,发现压实破坏区也有较好的渗透性,这对层内爆炸采油技术的深入研究具有重要意义.

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The interaction between integrin macrophage differentiation antigen associated with complement three receptor function (Mac-1) and intercellular adhesion molecule-1 (ICAM-1), which is controlled tightly by the ligand-binding activity of Mac-1, is central to the regulation of neutrophil adhesion in host defense. Several "inside-out" signals and extracellular metal ions or antibodies have been found to activate Mac-1, resulting in an increased adhesiveness of Mac-1 to its ligands. However, the molecular basis for Mac-1 activation is not well understood yet. In this work, we have carried out a single-molecule study of Mac-1/ICAM-1 interaction force in living cells by atomic force microscopy (AFM). Our results showed that the binding probability and adhesion force of Mac-1 with ICAM-1 increased upon Mac-1 activation. Moreover, by comparing the dynamic force spectra of different Mac-1 mutants, we expected that Mac-1 activation is governed by the downward movement of its alpha 7 helix. (c) 2007 Elsevier Inc. All rights reserved.

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A new chelating ligand, 2-(2-(5-tert-butylisoxazol-3-yl)hydrazono)-N-(2,4-dimethylphenyl)-3-oxobutanamide (HL), and its four binuclear transition metal complexes, M-2(L)(2) (mu-OCH3)(2) [M = Ni(II), Co(II), Cu(II), Zn(II)], were synthesized using the procedure of diazotization, coupling and metallization. Their structures were postulated based on elemental analysis, H-1 NMR, MALDI-MS, FT-IR spectra and UV-vis electronic absorption spectra. Smooth films of these complexes on K9 glass substrates were prepared using the spin-coating method and their absorption properties were evaluated. The thermal properties of the metal(II) complexes were investigated by thermogravimetry (TG) and differential scanning calorimetry (DSC. Different thermodynamic and kinetic parameters namely activation energy (E

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提出了一种利用扫描型哈特曼检测装置检验靶镜光学质量的技术.该装置对传统哈特曼检验装置的光阑进行了改进,通过扫描型哈特曼光阑的旋转扫描,可对被检靶镜全口径范围内连续采样.利用该扫描型哈特曼检测装置对一块口径为φ270 mm的非球面靶镜的能量集中度和波像差进行了检验,其结果与激光数字波面干涉仪的测量结果相吻合,其中能量集中度的相对测量误差为7.7%,波像差的相对测量误差为10.2%,验证了该检测技术的有效性.

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下载PDF阅读器将番鸭不同就巢群体(就巢1月群、就巢2月群、就巢3月群)、番鸭非就巢群和白改鸭群体作为试验材料,采用PCR-SSCP技术研究番鸭不同就巢群体、番鸭非就巢群和白改鸭5个群体250个个体催乳素(PRL)基因第5外显子多态性及其与就巢性状之间的相关性.结果表明:外显子5片段编码区发现3个SNP位点,位于5 871 bp(G/A)、5 926 bp(A/G)和6 029 bp(C/T)处,其中5 871 bp(G/A)与5 926 bp(A/G)处氨基酸序列均改变,分别为I→V和R→K.统计多态片段的基因型频率和基因频率,并对5个试验鸭群间基因频率作差异进行显著性分析,番鸭非就巢群体与各就巢群体间差异显著(P<0.05),同时番鸭与白改鸭差异极显著(P<0.01).

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用转基因和RNA干扰(RNAi)法建立5组不同成纤维细胞生长因子-2(fibroblast growth factor-2,FGF2)表达量的猕猴耳部皮肤成纤维细胞(MESF)系:过表达FGF2组(f1),过表达的阴性对照组(f2),FGF2 RNA干扰组(f3),RNA干扰的阴性对照组(f4)和未作任何处理的对照组(f5).5组MESF的FGF2表达量相对值为f1:f2:f3:f4:f5=4:2:1:2:2;c-fos,TGF-β1,INHBA,Gremlinl在f1中表达量上升,在f3中表达量下降;BMP4,TGF-β2在f1中表达量下降,在f3中表达量上升;表明内源FGF2能够作用于MESF的TGF-β信号通路,引起相关基因表达量的变化.用这砦细胞作为饲养层长期培养(10代)猕猴胚胎干细胞(RhESC),结果在f1上培养的RhESC增殖速度都比对照组快,并且c-fos,TGF-β1,INHBA,Gremlinl,Oct-4,Nanog,Sox2表达量均上升,BMP4表达下调;在f3上培养的RhESC增殖较慢,BMP4表达上调,c-fos,TGF-β1,INHBA,Gremlinl,Oct-4,Nanog,Sox2表达下调.5组MESF上培养的RhESC形成的EB均表达各胚层早期标记基因(marker),说明RhESC的多能性没有受到影响,但表达量有差异,f1上RhESC形成的EB所有marker都低表达.结果表明饲养层的FGF2含量不仅影响自身相关基凶的表达,还对RhESC的自我更新有一定的作用.

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采集滇池水体作为铜绿微囊藻培养基,研究了两种有机磷农药(甲胺磷和辛硫磷)对微囊藻生长和摄磷效应的动力学规律。结果表明,在滇池水体中添加较低浓度的甲胺磷(0.8、1.6、3.2mg/L)和辛硫磷(0.02、0.06、0.1mg/L)均能不同程度地促进微囊藻的生长,且在HGZ培养基中抑制微囊藻生长的浓度在滇池水体中却能促进微囊藻的生长。微囊藻的生长取决于细胞内磷的浓度且对磷的吸收利用存在积累性,在微囊藻生长初期,摄取各形态磷的速率较快;随后微囊藻摄取各形态磷的速率较慢。总溶解磷(TSP)和溶解反应磷(SRP)

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进化生物学研究表明,快速生长赋予生物的优势与劣势之间存在权衡.硬骨鱼类的生长率与游泳能力之间也存在这种权衡.本研究提出假说认为,快速生长将导致转基因鱼游泳能力减弱.比较F3代转“全鱼”生长激素基因黄河鲤与其对照鱼的生长和临界游泳速度,表明转基因鱼的平均体重是对照鱼的1.4~1.9倍,平均特定生长率比对照鱼高出6%~10%,而其绝对临界游泳速度和相对临界游泳速度的平均值分别比对照鱼低22%和24%.本研究暗示,具有快速生长效应的转基因黄河鲤表现出低劣的游泳能力,这也证实了生长率和游泳能力之间存在权衡,即同一

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为了探讨坛紫菜(POrphyra haitanensis)在海水中进行光合作用时的无机碳源,对其叶状体的碳酸酥酶(CA)和光合放氧特性进行了测定.CA在坛紫菜的细胞外和细胞内都有酶活性.在 pH 8.2或川刀的海水中,CA抑制剂乙酞吐磺胺(acetazolandde,AZ)或已氧苯并喷吐磺胺(6-ethoxyzolandde,EZ)对坛紫菜光合放氧速率有强烈的抑制作用,且 EZ比 AZ抑制作用更大.在 pH 8二海水中观测的光合放氧速率远大于海水中HCO。一离子的理论脱水速率.另外,坛紫菜具有很高的PH补

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Practical testing of the feasibility of cyanobacterial inoculation to speed up the recovery of biological soil crusts in the field was conducted in this experiment. Results showed that cyanobacterial and algal cover climbed up to 48.5% and a total of 14 cyanobacterial and algal species were identified at the termination of inoculation experiment; biological crusts' thickness, compressive and chlorophyll a content increased with inoculation time among 3 years; moss species appeared in the second year; cyanobacterial inoculation increased organic carbon and total nitrogen of the soil; total salt, calcium carbonate and electrical conductivity in the soil also increased after inoculation. Diverse vascular plant communities composed of 10 and 9 species are established by cyanobacterial inoculation on the windward and leeward surface of the dunes, respectively, after 3 years. The Simpson index for the above two communities are 0.842 and 0.852, while the Shannon-Weiner index are 2.097 and 2.053, respectively. In conclusion, we suggest that cyanobacterial inoculation would be a suitable and effective technique to recover biological soil crusts, and may further restore the ecological system. (C) 2008 Published by Elsevier Ltd.

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Optimized AlGaN/AlN/GaN high electron mobility transistors (HEMTs) structures were grown on 2-in semi-insulating (SI) 6H-SiC substrate by metal-organic chemical vapor deposition (MOCVD). The 2-in. HEMT wafer exhibited a low average sheet resistance of 305.3 Omega/sq with a uniformity of 3.85%. The fabricated large periphery device with a dimension of 0.35 pm x 2 nun demonstrated high performance, with a maximum DC current density of 1360 mA/mm, a transconductance of 460 mS/mm, a breakdown voltage larger than 80 V, a current gain cut-off frequency of 24 GHz and a maximum oscillation frequency of 34 GHz. Under the condition of continuous-wave (CW) at 9 GHz, the device achieved 18.1 W output power with a power density of 9.05 W/mm and power-added-efficiency (PAE) of 36.4%. While the corresponding results of pulse condition at 8 GHz are 22.4 W output power with 11.2 W/mm power density and 45.3% PAE. These are the state-of-the-art power performance ever reported for this physical dimension of GaN HEMTs based on SiC substrate at 8 GHz. (c) 2008 Elsevier Ltd. All rights reserved.