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Abstinence 6 hours of above. 1.2 spile method introduces recorder of the Digitrapper MDIII of Swedish CTD company, MDII PH, use vessel of small electrode of single crystal antimony, use standard amortize liquid first corrective PH value, the patient takes upright seat, cleanness is wet and rhinal, with lube before wet conduit paragraph, nasal cavity of a side of light firm will tracheal edge is inserted to pitch of head of patient of the enjoin when 15cm is controlled, make under the forehead stands by pectoral wall, in order to increase the radian of pharynx ministry passageway, make conduit is entered not easily by accident tracheal, and its do enjoin deglutition movement, slow guide conduit stomach, right now PH shows 1~2 is controlled, again will tracheal slow take out, when PH the value comes by .0 jump 5 when, judgement is ministry of gastric esophagus join , drag electrode 5cm to secure again with this.

禁食6小时以上。1.2插管方法采用瑞典CTD公司的Digitrapper MDIII、MDII型pH记录仪,应用单晶锑微电极导管,先用标准缓冲液校正pH值,患者取端坐位,清洁湿润鼻腔,用润滑油湿润导管前段,轻稳将导管沿一侧鼻腔插至15cm左右时嘱患者头部前倾,使之下额靠近胸壁,以加大咽部通道的弧度,使导管不易误入气管,并嘱其做吞咽动作,并缓慢将导管导入胃,此时pH显示1~2左右,再将导管缓慢抽出,当pH值由。0突升至5.0时,判定为胃食管连接部,以此将电极再拽5cm固定。

The cycling life of Ni 〓 was measured with powder microelectrode by cyclic voltammetry for the first time. Results show that the depth of charge is up to 75%, and the depth of discharge almost reached to 100% when the scanning range is controlled within 0~ 0.6V vs.

对Ni〓粉末微电极的测试表明,当控制三角波扫描范围0~0.6V、扫描速度20mV/s时,每次循环电极的充电率可达到75%,而放电率接近100%,完成一个周期仅需要1分钟,因此极大地缩短了测试时间。

Another straight electrode was placed outside the fascicle as reference electrode. Both distal ends were coupled to electromyogram.

以神经束外一直微电极作参考电极,远端连接肌电图仪。

In the thesis, powder microelectrode technique and the paste electrode technique were used to investigate the preparation of PbO〓/PbSO〓 and PbSO〓/Pb electrodes from lead carbonate, the electrode performances were examined by various electrochemical and analytical methods.

本工作分为粉末微电极和涂膏电极两大部分,研究和论证了由PbCO〓制备铅酸蓄电池电极材料的可行性。

The effect of the temperature on the voltammetric curves and on the electrode potential at a carbon fiber microelectrode were studied.

研究了温度对碳纤维微电极伏安曲线的影响及电极电位与温度的关系。

The glassy carbon and powder microelectrode have respective trait. It can be chosen to measure the activity of catalysts based on experimental requests.

玻碳电极和粉末微电极各有特点,测试催化剂的电催化活性时可以根据实验要求选用。

The cyclic voltammetric behavior of platinum-ruthenium alloy catalysts was studied by using the powder microelectrode technique and glass carbon electrode.

利用玻碳电极和粉末微电极测试甲醇在Pt-Ru/C催化剂上的循环伏安曲线。

As MEMS (Micro Electro-Mechanical Systems) technology progresses rapidly, the synergism between MEMS and biomedical technology becomes closer than ever before. When the uTAS was introduced in the last two decades, many microfluidic chips, microelectrodes, and microreactors are being studied for drug detection, environment detection, gene analysis etc. Due to its small volume, low pollution, low consumable and good portability, uTAS plays a very important role in biomedical, biochemical, environment engineering fields.

随着MEMS(Micro Electro-Mechanical System,微机电系统)制造技术的不断发展,生物医学与其之间的联系越来越紧密,自上世纪90年代初提出uTAS(Micro Total Analysis System,微全分析系统)之后,各种各样的微流控芯片、微反应器、微电极、微分离器等便大量涌现,广泛应用于药物检测、环境监测、基因分析等诸多领域中,并且由于其试剂消耗量少、检测效率高、环境污染小、体积小、易于携带等优点,在生物医学、化学、环境工程等领域受到越来越多的重视。

In this paper, a multi-wall carbon nanotubes modified acetylene black microelectrode was prepared and the anodic stripping voltammetric characteristics of iodine on the modified electrode was studied.

以多壁碳纳米管修饰乙炔炭黑微电极为工作电极,研究了碘离子在该修饰电极上的阳极溶出伏安特性。

The three patches of receptive field existed a few overlapping areas and also had separate area. When the intensity of mechanical stimulation was controlled to evoke only one T cell excited, the simultaneous intracellular recordings with four microelectrodes (one in AP cell and the other three in three T cells respectively) could shown that under natural conditions AP cells can positionally discriminate the area of the mechanical stimulation on a single annulus with the postsynaptic potential.

将机械刺激强度控制在只激活一个T细胞时,利用四根胞内微电极同时记录(三根电极在三个T细胞内,第四根电极在AP细胞内),结果表明AP细胞在自然条件下对单个体环上的机械刺激区域确实具有突触后电位的部位分辨功能。

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