inhibitory concentration 中文意思是什麼

inhibitory concentration 解釋
抑制濃度
  • inhibitory : adj. 禁止的;抑制的,阻止的。 inhibitory nerve 【生理】 抑制神經。
  • concentration : n. 1. 集中。2. 【化學】提濃,蒸濃,濃縮;濃度;稠密度;【礦物】汰選,選礦,富化。3. 集中注意,專心。
  1. During experiment, acetylcholine shows significant inhibitory effects on the settlement and metamorphosis of ascidian larvae, but its concentration cannot lower 1 x 10 - 7mol / l. similarly acetylcholine, y - aminobutyric ( gaba ) and picrotoxin also can inhibit the settlement and metamorphosis of s. canopus larvae

    實驗中,乙酰膽堿對冠瘤海鞘的附著變態表現出抑制作用,但當濃度降低到10 ~ ( - 7 ) mol l時,此作用已不明顯。
  2. The results showed that extract of m. arvensis had a stronger inhibitory effect to u. virens than e. helioswpia, at 10 % of concentration, the inhibition rate to the germination of chlamdospore and conidiospore of extract of m. arvensis are all 100 %, while that of e. helioswpia were 14. 79 % and 7. 23 %

    結果表明,薄荷提取液對病菌的抑制效果較好,在10 %濃度下對厚垣孢子和分生孢子的抑制達100 % ,而澤漆提取液的抑制率分別為14 . 79 %和7 . 23 % 。
  3. Results the inhibitory effects of three vasodilators on norepinephrine concentration - response curves were more powerful than that on potassium chloride concentration - response curves

    結果色滿卡林、福斯考林、硝酸甘油對去甲腎上腺素量效曲線的抑制強度明顯高於三藥對氯化鉀量效曲線的抑制。
  4. The substance with antibacteria action which had high purity was tested with escherichia coli, staphylococcus aureus, bacillus pyocyaneus and yeast by the antibacteria test to decide the minimal inhibitory concentration as 6. 37umol. l - 1, 3. 18umol. l - 1, 6. 37umol. l - 1, 6. 37umol. l - 1 25. 48umol. l - 1

    純化的抗菌活性物質通過對大腸桿菌、金黃色葡萄球菌、枯草桿菌、綠膿桿菌、酵母菌做抑菌試驗,最低抑菌濃度分別為6 . 37 mol
  5. Medical microbiology - susceptibility testing of pathogens to antimicrobial agents - part 4 : evaluation classes of the minimum inhibitory concentration - mic - breakpoints of antibacterial agents

    醫學微生物學.病原體對抗菌劑的敏感性試驗.第4部分
  6. The results showed that the extract by etoac presented a significant effect on staphylococcus aureau 、 bacillus cereus 、 bacillus megateriurn 、 proteus species, corynebacterium pekinense 、 trichoderma viride and aspergillus flavus all of which belonged to bacteria ; the extract by n - buoh presented significant inhibitory effect on bacillus mesentericus, bacillus subtilis 、 proteus species 、 bacterium prodigious, trichoderma viride and aspergillus flavus all of which belonged to bacterium ; the inhibitory effect become stronger and stronger with the extract concentration increaseing and the water phase of the extract did not present any antimicrobial effects

    結果表明,乙酸乙酯萃取物對細菌中的金黃色葡萄球菌、蠟狀芽孢桿菌、變形桿菌、巨大芽孢桿菌、北京棒狀桿菌和黴菌中的綠色木霉、黃麴黴有明顯的抑菌作用;正丁醇萃取物對細菌中的馬鈴薯芽孢桿菌、變形桿菌、枯草芽孢桿菌、靈桿菌和黴菌中的綠色木霉以及黃麴黴有明顯的抑菌作用,且提取物的抑菌作用隨濃度增大而增強,而水相則沒有抑菌活性。
  7. Results indicate that the capsaicin was evidently active in inhibiting both the bacteria and the fungi and showed strong inhibitory effects on these pathogens in a concentration dependent manner, exhibiting a stronger inhibition to the test bacteria than to the test fungi

    結果表明,辣椒堿具有廣譜的抗菌范圍和較強的拮抗病原菌的活性,且抗菌活性有明顯的量效關系,其中辣椒堿對供試細菌的拮抗作用遠大於對供試真菌的作用。
  8. Medical microbiology - susceptibility testing of pathogens to antimicrobial agents - part 4 : evaluation classes of the minimum inhibitory concentration

    醫療微生物學.病源細菌對殺菌劑敏感性的檢測.第4部分
  9. The results of changes in resistant and toxicological effects under cu2 + stress are as follows : 1. ranging from 10 - 2m to 10 - 5m, cu2 + presented inhibitory effect on the growth of m. aeruginosa, moreover, the greater the concentration of cu2 +, the more intensive the inhibitory effect on the growth of m. aeruginosa

    銅綠微囊藻生長適宜的溫度范圍為: 28 33 ,而最適溫度大約為30 。 cu ~ ( 2 + )脅迫下銅綠微囊藻抗性及毒性的變化1
  10. The results showed the lower concentration of cadmium or lead helps to increase soil microbial activities, but their higher concentration cause greater inhibitory effect on microbial activities in red soils

    結果表明:較低濃度cd 、 pb離子有利於提高土壤微生物活性,高濃度cd 、 pb離子則會對土壤微生物活性產生嚴重的抑制作用。
  11. Influence of low power diode laser irradiation on the minimal inhibitory concentration of drug resistant staphylococus aureus and pseudomonas aeruginosa

    低功率半導體激光照射后耐藥金黃色葡萄球菌與銅綠假單胞菌的耐藥性變化
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