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no-parallax相关的网络例句

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Look at me now i'm just an empty shell of the man i used to be with you i thought we were right i thought we were perfect but once again my dreams were broken there were no strings attached when i saw you last night i ain't fooling no one oh no - no my love will never die though it's not for you my love will never die it just moves on my love will never die it can break your heart in two my days are so cold and lonely without you but the nights, they really bring me down you left me alone on this cold and winding road on the path that leads to nowhere

不要用翻译机嘛,直译容易错现在,请看着我我只剩下一个人的空壳我一直与你在一起我认为我们是对的我们是绝配但又一次,我的梦想幻灭了没有什么好说了当我昨晚见到你我没有欺骗任何人 oh no no 我的爱永不灭亡虽然它不再属于你我的爱永不灭亡它只是离开了这里我的爱永不灭亡它让你心碎或者。。。让我们没有你的日子如此寒冷和孤独夜晚,让我沮丧你留下我孤独一人在这寒冷蜿蜒的道路没有路标不知方向

Endotoxin and tetrahydrobiopterin enhanced the activation of NO synthesis and ACO, but L-arginine, the precursor of NO, showed noticeable inhibition on the elevation of NO metabolites and the degree of ACO. In addition, L-arginine show prominent inhibition on myocardial fibrinosis.

诱导iNOS活性的药物也可加重动脉钙超负荷损害,然而NO合成的前体物质L-精氨酸对ACO早期血NO〓〓/NO〓〓升高有明显抑制,同时抑制ACO,尤其对心脏钙超负荷损害有明显的保护作用。

The relative molar concentration ratios of c(superscript * subscript NO)/c(superscript * subscript NO2) changes as the temperature and pressure change. These results reveal that the two competitive reactions of C-NO2 homolysis (to form NO2) and isomerization may occur during the fast thermolysis of DNTF. NO formation from the cracking of furazan or furoxan rings may be limited by pressure.

结果表明,DNTF快速热裂解的主要产物CO、CO2、NO和NO2的相对摩尔浓度c与温度和压强有关,通过分析相对摩尔浓度比c(上标*下标 NO/c(上标*下标 NO2)随温度和压强的变化,揭示了DNTF中碳硝基C-NO2存在均裂生成NO2和异构化生成NO两条竞争分解的可能途径,同时压强可能抑制呋咱环和氧化呋咱环生成NO的可能性。

Aortic NOS/NO and HO/CO system are impaired significantly in atherosclerotic rabbits induced by high cholesterol diet. Decreases of endogenous NO and CO production are associated with atherosclerotic progression. Both L-arginine and heme-L-lysinate inhibit atherosclerotic progression by increasing NO or CO production.

高胆固醇饮食诱导的AS显著损害了主动脉NOS/NO及HO/CO系统,内源性NO及CO生成量减少与AS的发生发展密切相关。L-精氨酸及血红素-L-赖氨酸盐分别通过增加主动脉NO及CO生成量而抑制AS进展。

Op.25'sinterpretation quality varies, some like No.3 and No.5 are beautiful,and forthe No.6 Double Third Etude shows Koczalski's great finger movements and his rubato made this popular etude more interesting.

Op.25演奏质量相对参差比较大,有的很美如Op.25 No.3, No.5,还有像Op.25 No.6双三度练习曲,听得岀Koczalski的手指功夫挺有一手的,而且我就挺喜欢他那样的速度变化,让这首被经常演奏的练习曲多了点趣味。

When NO increase abnormally,EGb can get rid of NO and free radicle,restrain the expression of iNOS mRNA and protein,reduce the production of NO and degrade the action of iNOS.It can also become effective by the way of weakening the antioxygen effects of nuclear factor-κB.

但对大多数NO异常生成过多的疾病,EGb清除NO和自由基,抑制iNOS mRNA 和蛋白的表达,减少NO生成和降低iNOS的活性,并通过减弱核因子κB活性的抗氧化效应产生效应。

Comparing with the activity of NiO/γ-Al_2O_3, NiO/TiO_2, and NiO/CeO_2catalysts, NiO/CeO_2 showed the highest light-off conversions of NO and CO and lowesttemperature of total conversion. Three kind of CeO_2 prepared by homogeneousprecipitation, precipitation, and direct decomposition method wereused as the carrier of NiO. Through the activity comparison of NiO/CeO_2, NiO/CeO_2and NiO/CeO_2, CeO_2 optimized as the preferable carrier for active component at aspace velocity of 120 000h~(-1, the coversion of NO is 50%at 170℃over NiO/CeO_2catalyst, and the complete conversion of NO and CO occurred at 210℃.

由Al_2O_3、TiO_2、CeO_2负载的NiO催化剂在NO-CO反应中的活性比较得出:NiO/CeO_2催化剂具有最好催化活性;分别采用直接分解法、氨水沉淀法和均匀沉淀法制备了载体CeO_2、CeO_2、CeO_2,并比较了NiO/CeO_2、NiO/CeO_2、NiO/CeO_2的活性差异,得出了以尿素作为沉淀剂的均匀沉淀法制备的CeO_2负载的NiO活性最好空速为120 000 h~(-1的条件下,170℃时,NO的转化率为50%;210℃时,NO和CO的转化率均达到了100%。

After NMDA stimulation, he concentrations of Ca~2+ and NO in both nuclear and plasma rise observably, especially in the netlike structures; the change of Ca~2+ concentration in nuclear is larger than that in plasma,however the changes of NO concentration in nuclear and plasma are similar. We also observed comparative increases of the concentration of Ca2+ and NO in neurodendrite after NMDA stimulation.

NMDA刺激后神经元细胞核和细胞质内Ca~(2+)和NO都明显升高,尤其在细胞核和细胞质内的网状结构处;细胞核内Ca~(2+)升高幅度大于细胞质,而细胞核内NO的升高幅度却与细胞质相近;另外,树突内的Ca~(2+)和NO升高也较明显。

Results: Small round or linear haemorrhagic erosions were induced in the oxyntic glandular area after rats exposed to WRS. Meanwhile, GMBF decreased and NO contents in plasma and gastric mucosa increased significangly compared with those without WRS. L-NAME not only further decreased GMBF and inhibited the increases of NO contents but also aggravated the extent of gastric mucosal lesions. In contrast, L-Arg increased both GMBF and NO contents resulting in the lessening of mucosal injuries. All these changes were significant compared with control group.

结果:浸水束缚应激4 h可致严重的胃粘膜损伤,同时粘膜血流量明显下降,血浆及粘膜NO含量明显升高,与正常对照组相比差异非常显著(P<0.01);L-NAME明显加重粘膜损伤,并阻抑了应激所致的血浆及粘膜内NO含量的升高,使粘膜血流量更趋下降,与实验对照组相比差异显著(P<0.05);L-Arg可明显升高粘膜血流量及血浆、粘膜内NO含量,明显减轻粘膜损伤程度,与实验对照组相比差异非常显著(P<0.01)。

From the experiment discovered for the first time the dimethyl ether may substitute CO to take the chain-carrying agent of the peroxy free radical chemistry amplifier system, and optimized the CH_3OCH_3-NO-HO_2 chemistry amplifying system determination condition, the CH_3OCH_3 best density is 1.876 ppmv, the NO best density is 1.3ppmv, and obtained this method chain length CL=124, 5 parallel determinations densities of HO_2 are the 44.0pptv, the relatively standard deviation is smaller than 4%; Although chemistry box model computed result indicated the dimethyl ether, the ethene, the propene and the ethanol all can take the chain-carrying agent of the peroxy free radical chemistry amplifier system, and their simulation chain length all grows up compared to the CO-NO-HO_2 chemistry amplifying systems, but experiments proved the ethene, the propene and the ethanol have not suit the chain-carrying agents.

首次从实验上发现二甲醚可以替代CO作为过氧自由基化学放大系统的链传递试剂,并优化了CH_3OCH_3-NO-HO_2化学放大系统的测定条件,CH_3OCH_3的最佳浓度是1876ppmv,NO的最佳浓度为1.3ppmv,并得到了这一方法的链反应长度(CL=124),5次平行测定浓度为44.0pptv的HO_2自由基,相对标准偏差<4%;虽然化学盒子模式计算结果表明二甲醚、乙烯、丙烯和乙醇都能作为过氧自由基化学放大系统的链传递试剂,并且它们的模拟链长都比CO-NO-HO_2化学放大体系的链长大,但是实验证明乙烯、丙烯和乙醇不适合作为过氧自由基化学放大系统的链传递试剂。

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