plasma membrane
- plasma membrane的基本解释
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[化] 质膜
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- plasma membranes
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From the point view of product distribution, conversion of dimethyl ether and energy consumption, with RCD plasma DME conversion was higher and was hardly affected by the residence time of dimethyl ether, and hydrogen, carbon monoxide and unsaturated hydrocarbons with RCD plasma were more than those with DBD plasma.There was no liquid product with RCD plasma, but the liquid product obtained with DBD plasma consisted of aldehydes, alcohols and methoxy-containing organic compounds, for instance, formaldehyde, methyl alcohol, dimethoxy ethane and so on.Moreover, most compositions of liquid product were methoxy-containing compounds, and the liquid product selectivity was as high as 32.23%.However, energy consumption for the reaction with DBD plasma was more than that with RCD plasma.
从产物分布、转化率及能耗上看,利用RCD所获得的二甲醚的转化率高,几乎不受二甲醚停留时间的影响,且氢气、一氧化碳和不饱和烃的含量大,几乎没有液相产物,而利用DBD能获得较多的液相产物,包括一些醇、醛和含有甲氧基的有机化合物,如甲醛、甲醇和二甲氧基乙烷,且大部分组成都是含有甲氧基的化合物,液相产物的选择性高达32.23%,但是能耗较大。
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Grew on the normal temperature, it was shown that the deposits of calcium antimonate being the indicator for Ca(superscript 2+) localization mainly concentrated within the vacuoles and intercellular spaces and there was also some Ca(superscript 2+) deposits in cell walls. But when Garyota urens L. was treated by the temperature of 2℃ for 48 h, the level of Ca(superscript 2+) increased in cytoplasm and plasma membrane, but decreased in vacuoles and intercellular spaces considerably. At the same time, the ultrastructure of chloroplasts suffered from chilling: the membrane of chloroplasts had been damaged, the layer of thylakoids was exiguous and unclear, the photosynthetic rate decreased evidently. And when Garyota urens L. was treated by the temperature of 2℃ for 120 h, the deposits of Ca(superscript 2+) mainly concentrated within the cytoplasm, nucleus and plasma membrane and there was also some Ca(superscript 2+) deposits in vacuoles, and the ultrastructure of some cells was simultaneously damaged severely: Chloroplasts structure, vacuole membrane and nuclear membrane had been damaged fully, the structure within the cell had become unclear, and the cell only have respiration.
研究结果表明,未经低温处理的董棕幼苗叶肉细胞,焦锑酸钙沉淀颗粒大量出现在液泡和细胞间隙中,细胞壁中也可见少量沉淀,而细胞基质中则看不到焦锑酸钙沉淀;经2℃ 48 h低温处理后,细胞基质和细胞膜上焦锑酸钙沉淀增加,而液泡和细胞间隙中的焦锑酸钙沉淀则显著减少,并且超微结构已初步显示出寒害的特徵,叶绿体外膜部分破损,类囊体片层稀疏且排列不规则,光合速率明显下降等;经2℃ 120 h低温处理后,细胞间隙内的焦锑酸钙沉淀极少,有的也紧贴在细胞外壁上,而细胞基质和细胞膜上则分布有非常多的焦锑酸钙沉淀,在核基质和液泡中也可见到少量的焦锑酸钙沉淀,并且超微结构遭到了显著破坏,叶绿体结构完全被破坏,核膜与液泡膜严重破损,内部结构模糊,细胞只表现为呼吸作用,不进行光合作用。
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The plasma ignition threshold of metal is got through experimental and numerical study. The vapour and plasma ignition times of the target are got based on the equation of heat conduction and cascade model. We suppose that the plasma is ignited when generations of new electrons are born in vapour generation time. The influence of temperature on the thermodynamics and optics parameters of material also have been considered in the model. The resulting theory has good agreement with the experiment and overseas report. A blade method to measure the laser spot is given in this paper with validation and error analysis. The plasma threshold of metals in atmosphere and water ambients both are diagnosed with the light deflection and piezoelectric transducer. A Q-switched pulsed Nd:YAG laser operating at infrared (1064nm), visible(532nm) and ultraviolet (355nm) wavelengths has been used. Al、Fe、Cu are used as targets and get a similar results with both method. Theoretical and experimental analyses are applied on the influence of wavelength on the threshold have been done, both of which have shown that the plasma threshold of metals decrease as the laser wavelength increases; The plasma threshold of metals are higher in water than in air and the pressure of the shock wave in water is five times higher than in air .
从热传导方程和雪崩电离机制出发,假设当电子增值210倍时,考虑了温度对材料热力学和光学参数的影响时,得到了气化和等离子体点燃的时间,利用该模型进行计算得到的结果与国内外报道及自行通过实验测得的阈值基本一致;提出了利用刀刃法测量激光光斑面积的方法,并通过实验进行了验证和误差分析;利用光偏转装置和压电换能器分别对空气和水中金属等离子体点燃阈值进行了实验诊断,激光器均为调Q-YAG激光器(波长1064nm,532nm,355nm,脉宽10ns),靶材分别为Al、Fe和Cu,两种测试方法得到的等离子体点燃阈值基本一致;本文从实验和理论计算两个方面讨论了波长对等离子体点燃阈值的影响,均得到了等离子体点燃阈值随著波长的增加而减小的结论;对空气中和水中不同环境下金属等离子体的点燃阈值进行了比较研究,得到了金属在水中的等离子体点燃阈值比空气中的大,且水中产生的冲击波的压强是空气中的5倍左右的结论。
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plasma membrane:质膜
可以引起胞内第二信使Ca2+信号的增强,这些发现说明了植物胞外CaM可以通过介导跨膜信号而发挥其信号肽的功能. 关键词:钙调素(Calmodulin, CaM);离子选择性电极(Ion-selective microelectrodes);质膜(Plasma membrane)
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plasma membrane:原生质膜
在所有细胞活动中都具有十分重要的作用.如细胞膜与生命活动中物质传输、神经传导、信息传递、能量转换、激素作用、细胞识别、免疫、癌变等均有密切关系.细胞膜也称质膜(plasmalemma)或原生质膜(plasma membrane),将细胞内部与外部环境分隔开,
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plasma membrane:细胞膜
细胞膜(plasma membrane)的基本结构和物质转运功能(跨膜物质转运,单纯扩散,易化扩散,主动转运)一种通过被转运物质与膜表面的特殊受体蛋白质相互作用而引起的入胞现象,称为受体介导式入胞.
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plasma membrane:浆膜
(1)基底细胞的胞浆膜(plasma membrane)及膜内侧的半桥粒(hemi – desmosome). 1.大疱性类天疱疮(Bullous Pemphigoid, BP) 本病是一种慢性全身性表皮下大疱性皮肤病. 直接免疫荧光(DIF)检查:90%以上患者的皮损及皮损周围正常皮肤基底膜带可见到IgG及C3呈线状排列,
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plasma membrane infolding:质膜内褶
(2)质膜内褶(plasma membrane infolding):是上皮细胞基底面细胞膜折向胞质所形成的许多内褶(图2-23). 质膜内褶的主要作作用是扩大细胞基底部的表面积,有利于水和电解质的迅速转运. 由于转运过程中需要消耗能量,故在质膜内褶附近的胞质内,
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