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目的探讨内质网应激(ERS)在蛛网膜下腔出血(SAH)后早期脑损伤中的作用机制。方法采用血管穿刺法制作大鼠SAH模型,应用ERS 激动剂衣霉素(Tm)、抑制剂牛磺熊去氧胆酸(TUDCA)以及自噬抑制剂3- 甲基腺嘌呤(3-MA)研究ERS 与自噬在SAH 后早期脑损伤中的作用。在SAH 模型建立后24h对大鼠进行神经功能评估,留取脑组织后分别行分子生物学和免疫组织化学检测。结果SAH后24h ERS水平显著激活,Tm预处理可显著改善SAH 大鼠的神经功能,抑制促凋亡分子caspase-3的表达,减少TUNEL阳性细胞的数量。TUDCA则显著加重SAH 大鼠神经功能障碍并导致神经细胞凋亡。Western blot结果显示,Tm预处理可显著降低自噬标记蛋白Beclin 1表达水平及LC3-Ⅱ/LC3-Ⅰ比值,而TUDCA 具有相反的作用。通过侧脑室内给予3-MA则可显著抑制Tm介导的抗凋亡作用。结论ERS对SAH后早期脑损伤具有神经保护作用,该作用与自噬的激活密切相关。 相似文献
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通过数值求解一维含时薛定谔方程,本文研究了具有较长脉宽双色激光脉冲与氢原子模型相互作用产生的谐波辐射谱。研究发现,当采用12个光学周期的特定组合脉冲时,孤立阿秒脉冲可以实现。这里特定组合脉冲由两束类似频率脉冲( )构成,附加脉冲的作用恰是调整基频光电场的形状。不同于入射基频光,整形后的基频光在时间始末端电场振幅被抑制,只有中间部分电场对谐波谱有贡献,它的作用等同于单一6飞秒超短脉冲的效果。从而扩展获得孤立阿秒脉冲所需脉宽从6飞秒到12飞秒。 相似文献
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Simultaneous Extension and Enhancement of the HHG Plateau by Using Combined Lasers Irradiating on a United Two-Atom System 总被引:4,自引:0,他引:4 下载免费PDF全文
We present the high-order harmonic generation spectrum from a united two-atom system simultaneously exposed to a fundamental Ti:sapphire and its 33rd harmonic (H33) lasers by numerically solving a one-dimensional timedependent Schroedinger equation. At a suitable inter-nuclear separation, the harmonic plateau is widened from Ip 3.2Up in the single-atom case up to Ip 5.6Up in the united-atom case. Furthermore, the plateau is heightened in excess of six orders of magnitude by using the combined lasers compared with the case of the fundamental laser alone. Such a scheme can step by step accomplish the following processes: through a single H33 photon resonance transition an appropriate amount of electrons are first populated to an excited state, in which the electrons are easily ionized and subsequently accelerated by the fundamental laser; then they can recombine with the neighbouring atom, so that high-efficiency emissions of the harmonics beyond Ip 3.2Up are successfully realized. 相似文献
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通过对影响谐波转化效率因素的分析,提出选择适宜的靶原子对象,即选择在高能区具有较强连续态-基态耦合强度的靶原子,可以优化高次谐波的发射条件.本文的数值实验结果表明,利用该方案,可以把平台区尾部谐波的转化效率提高两个数量级. 相似文献
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Using the time-dependent pseudo-spectral scheme, we solve the time-dependent Schr ¨odinger equation of a hydrogenlike atom in a strong laser field in momentum space. The intensity-resolved photoelectron energy spectrum in abovethreshold ionization is obtained and further analyzed. We find that with the increase of the laser intensity, the abovethreshold ionization emission spectrum exhibits periodic resonance structure. By analyzing the population of atomic bound states, we find that it is the multi-photon excitation of bound state that leads to the occurrence of this phenomenon, which is in fairly good agreement with the experimental results. 相似文献
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We systematically investigate the influence of atomic potentials on the above-threshold ionization (ATI) spectra in one-dimensional (1D) cases and compare them with the three-dimensional (3D) case by numerically solving the time-dependent Schrrdinger equation. It is found that the direct ionization plateau and the rescattering plateau of the ATI spectrum in the 3D case can be well reproduced by the 1D ATI spectra calculated from the supersolid-core potential and the soft-core potential, respectively. By analyzing the factors that affect the yield of the ATI spectrum, we propose a modified-potential with which we can reproduce the overall 3D ATI spectrum. In addition, the influence of the incident laser intensities and frequencies on the ATI spectra calculated from the proposed modified potential is studied. 相似文献
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通过数值求解一维含时Schrödinger方程,研究了具有较长脉宽双色激光脉冲与氢原子相互作用产生的高次谐波和阿秒(as)脉冲.这里的双色激光脉冲由一束基频钛宝石主脉冲与另一束红外附加脉冲构成.研究发现,当合成脉冲的脉宽选为12 fs时, 选取合适的附加脉冲波长,合成电场的振幅在始末端时间段能被大幅抑制, 仅中间部分的电场对谐波谱平台区和截止位置起主要贡献. 通过分析合成脉冲电场始末端时间段抑制的机理,进一步扩展了合成脉冲脉宽到60 as, 并得到160 as的孤立短脉冲.这是迄今为止在孤立阿秒脉冲产生研究中所采用的最长脉宽. 该方案中的合成脉冲等效于单一5 fs短脉冲的作用, 却克服了5 fs脉冲低输出能量导致的阿秒脉冲能量低的困难. 相似文献
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拉伸分子高次谐波产生的阿秒控制 总被引:1,自引:1,他引:0
通过数值求解一维含时薛定谔方程,本文研究了高频阿秒脉冲对拉伸双原子分子模型与低频飞秒激光脉冲相互作用产生高次谐波谱的影响.研究表明,若阿秒脉冲在低频脉冲的第二个光学周期截止处注入时,只第二个平台截止位置IP 5.6UP(IP为电离势,UP为有质动力能)附近谐波的效率得到显著提高;若阿秒脉冲的包络峰值处于低频脉冲第三个光学周期T/4(为飞秒激光脉冲的光学周期)附近时,则谐波谱出现了明显的整体抬高现象.对此,本文根据拉伸分子谐波谱的四种产生机制及阿秒脉冲在飞秒激光不同相位注入时的电子电离曲线,对这些谐波谱的结构给出了合理解释. 相似文献