1. Streptococcus was resistant against penicillin and ampicillin.
链球菌对青霉素和氨苄西林明显耐药。

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2. Objective To establish the quality standard of Ampicillin Sodium.
目的建立氨苄西林钠质量控制标准。

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3. Objective To discuss ampicillin drug rash's clinical characteristics.
目的探讨氨苄青霉素药疹的临床特点。

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4. The patient was initially treated with ampicillin for a period of 10 days.
患者最初用氨苄西林治疗了10天。

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5. OBJECTIVE:To determine ampicillin sodium and cloxacillin sodium for injection by RP HPLC.
目的:用RPHPLC法同时测定注射用氨苄氯唑西林的含量。

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6. The strain AS1.2352 is resistant to ampicillin, and sensitive to tetracycline and kanamycin.
菌株as1.2352对氨苄青霉素具有抗性,对四环素和卡那霉素不具有抗性。

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7. But drug resistance of Gram-positive bacilli azithromycin, ampicillin and oxacillin was serious.
革兰阳性球菌对阿奇霉素、氨苄西林、青霉素和苯唑西林耐药较严重。

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8. Over 35% resistance was observed to ampicillin and cotrimoxazole among non-fermentation bacteria.
非发酵菌对氨苄西林、复方新诺明耐药率已达到35%以上。

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9. These three major pathogenic bacteria can totally resist ampicillin with a resistant rate of 100%.
三种主要病原菌对氨苄青霉素表现为完全耐药,耐药率达到100%。

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10. The antibiotics sensitivity test showed ampicillin was the highest rate (98.2%) of drug resistance.
从药敏结果看,氨苄青霉素耐药率最强,为98.2 %。

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11. RESULTS In gram-negative isolates, the antibiotics with the high resistance rate were ampicillin (86.
结果革兰阴性菌菌株对氨苄西林耐药率最高,达86。

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12. A range of antibiotics can treat the infection, including penicillin, ampicillin, chloramphenicol and ceftriaxone.
治疗感染可使用多种抗生素,包括青霉素、氨苄西林、氯霉素及头孢曲松。

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13. Objective: To observe the characteristics of the pharmacokinetics of compound ampicillin sodium for injection.
目的:考察注射用复方氨苄西林钠的药代动力学特征。

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14. OBJECTIVE To establish an ion-pairs HPLC method for the assay of ampicillin sodium and cloxacillin sodium in injection.
目的建立离子对色谱法测定注射用氨苄西林钠氯唑西林钠含量的方法。

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15. The isolates were resistant to penicillin G and sulfamethoxazole, and highly sensitive to ampicillin, ciprofloxacin and ceftriazone.
分离菌株对青霉素、磺胺甲基异恶唑具抗药性,对氨苄青霉素、环丙沙星、头孢曲松钠高敏。

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16. The resistant rates of bacterium coli to streptomycin, ampicillin, chloromycetin and carbenicillin were 82.4%, 99.4%, 95.0% and 80.0%.
大肠埃希氏菌对链霉素、氨苄青霉素、氯霉素和羧苄青霉素的耐药率也很高,分别为82.4%,99.4%,95.0%和80.0%。

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17. When used in solid phase extraction, the ampicillin molecularly imprinted polymer microspheres have such advantages as high column efficiency and high selectivity.
本发明具有简单、高效制备出具有良好分子识别性能的分子印 迹聚合物微球优点。

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18. By using gas chromatography residual organic solvents were determined in 22 batch Numbers of ampicillin sodium produced by 7 pharmaceutical factories of our country.
本文用气相色谱法考察测定了全国7个生产厂家22个批号的氨苄青霉素钠的有机溶媒残留量。

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19. The research aimed to evaluate the curative effect of Ampicillin suspension against the chicken infected by coliform, and provide basis for clinical rational drug use.
评价氨苄西林混悬液对鸡大肠杆菌病的疗效,为临床合理用药提供依据。

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20. The Factors affecting to the quantity and stability of ampicillin are reviewed, mainly including manufacture technology, morphism, water, and storage temperature, ect.
综述了影响氨苄西林质量和稳定性的因素。这些因素主要有:生产工艺、晶型、水分、贮存温度等。

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21. A sensitive method of oscillopolarography cathodic stripping voltammetry for the determination of Ampicillin and its capsules with carbon stick electrode was established.
采用碳棒电极示波极谱阴极溶出法,测定了氨苄青霉素及其胶囊的含量。

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22. Methods Analysis and arrangements on initial period of incubation and symptoms, rash type, laboratory examinations, and results of treatment of 374 cases of ampicillin drug rash.
方法对374例氨苄青霉素药疹患者初次发病的潜伏期、症状、皮疹类型、实验室检查、治疗及结果进行分析。

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23. A model for evaluation of drug's quality is established by employing the concept of Fuzzy with pattern recognition. The ampicillin was used as an example in establishing the model.
用模糊数学的原理和模式识别的方法,以氨苄青霉素的产品质量为例,建立了一个评价药品质量的数学模型。

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24. The solubility of such a solvate may markedly differ from the nonsolvated form; eg, anhydrous ampicillin has a greater rate of dissolution and absorption than its corresponding trihydrate.
例如,无水氨苄西林的溶解速率和吸收比其它相应水合物的溶解吸收速率都要快得多。

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25. A rapid and nondestructive method using short-wavelength near-infrared diffuse reflectance spectroscopy was presented to analysis the principal component (Ampicillin) of Ampicillin powder samples.
本文采用短波近红外漫反射光谱法对氨苄西林粉末药品中主要成分氨苄西林进行快速、无损非破坏快速定量分析。

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26. A rapid and nondestructive method using short-wavelength near-infrared diffuse reflectance spectroscopy was presented to analysis the principal component (Ampicillin) of Ampicillin powder samples.
本文采用短波近红外漫反射光谱法对氨苄西林粉末药品中主要成分氨苄西林进行快速、无损非破坏快速定量分析。

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