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microfluidics造句

"microfluidics"是什么意思   

例句與造句

  1. The ability of microfluidics to mimic the flow and geometry of human blood vessels also proved critical
    微流體技術(shù)關(guān)于血流及血管構(gòu)型模擬的功能也是至關(guān)重要的。
  2. One of the great virtues of microfluidics technology is its ability to control complex reactions at critical times and locations
    微流體技術(shù)的一個顯著優(yōu)點(diǎn)就是它能在關(guān)鍵時間和關(guān)鍵區(qū)域?qū)?fù)雜的凝血反應(yīng)進(jìn)行掌控。
  3. In this review , we focus on lab - on - a - chip with fluid flow along micro - scale channels ( microfluidics ) and its application on life science and biotechnology
    現(xiàn)就基于微流通道的芯片實(shí)驗(yàn)室(微流芯片)及其在生物化學(xué)檢測上的運(yùn)用作一介紹。
  4. Several companies have now manufactured microfluidics devices ( “ labs - on - a - chip ” ) that allow the high - throughput chemistries needed in screening , synthesis and probing of biological molecules
    有幾家公司生產(chǎn)能夠進(jìn)行生物分子篩選、合成和探測所需的大規(guī)模化學(xué)反應(yīng)的顯微射流技術(shù)設(shè)備。
  5. Microfluidics is the minitiarization of fluid - based biochemistry to very small volumes such that a large series of chemical reactions can be performed in parallel in a microarray format ( see microarray )
    顯微流是將液相生化反應(yīng)縮小至非常小的量,這樣大系列的化學(xué)反應(yīng)可以在相同的微點(diǎn)陣狀態(tài)下進(jìn)行。
  6. It's difficult to find microfluidics in a sentence. 用microfluidics造句挺難的
  7. The micro total analysis systems are based on the microfluidics intergrated chemical processing and analysis . though still in many ways in its infancy , interest in this field has grown explosively over the last decades
    目前,關(guān)于微全分析系統(tǒng)在醫(yī)學(xué)疾病診斷方面的研究剛剛起步,本論文旨在對微全分析系統(tǒng)在醫(yī)學(xué)診斷方面的應(yīng)用進(jìn)行探究。
  8. Recently , advances in miniaturization and microfluidics have allowed screening of up to 100 , 000 compounds against a target on a single chip daily , allowing previously unimaginable amounts of compounds to be screened
    最近,小型化和微流體方面的進(jìn)展允許在一個芯片上每天對一個靶子篩選10萬個化合物,使得從前不可想象的大量化合物篩選成為可能。
  9. The scientists used microfluidics , a technique that allowed them to probe blood clotting on surfaces that mimic vascular damage on the micron scale , a unit of measurement much narrower than the diameter of a human hair
    他們使用了一種微流體技術(shù),這項(xiàng)技術(shù)使科學(xué)家們能夠檢測在微米(比人頭發(fā)直徑小的多)水平上模擬的血管損傷后血液的凝固過程。
  10. Elegant microfluidics , also developed at lincoln , direct the sample and nutrient media through the channel , where a charge - coupled device ( ccd ) like those found in camcorders detects even a single b cell firing
    先進(jìn)的微流體芯片? ?同樣由林肯實(shí)驗(yàn)室研制? ?指引樣本和營養(yǎng)介質(zhì)通過通道,通道中即使只有一個b細(xì)胞發(fā)光,與便攜攝像機(jī)里的裝置類似的電荷耦合器也會探測到。
  11. The essential issue with developing microfluidics - based devices is the ability to maintain adequate access to the solutions needed in each element of the array , delivered both spatially ( to each addressable location in the array ) and temporally ( at the appropriate time in the reaction )
    發(fā)展顯微流系統(tǒng)的關(guān)鍵是能夠維持點(diǎn)陣中每個元素所需的溶液的足夠的量,并按時空要求準(zhǔn)確地送到每個點(diǎn)。
  12. Examples of microfluidics - based applications include screening of biological targets , synthesis of combinatorial libraries , synthesis of dna oligomers , and analysis of polymorphic proteins , all of which can be performed in large high - throughput parallel arrays because of microfluidics
    顯微射流技術(shù)應(yīng)用的例子包括生物靶子的篩選、組合文庫的形成、 dna寡聚體的合成,蛋白質(zhì)多態(tài)性研究所有這些都因?yàn)轱@微射流技術(shù)而可以大規(guī)模進(jìn)行。
  13. Focusing on microfluidic chips for biochemical analysis , the research consists of establishing theoretical basis for system design and fabrication , solving key processing problems , developing new techniques , equipment and instrument for bio - mems , and research on microfluidics and micro stereo vision
    以應(yīng)用于生化分析的微流控芯片為研究對象,建立系統(tǒng)設(shè)計與加工理論,解決關(guān)鍵工藝技術(shù),開發(fā)新工藝、新設(shè)備和微系統(tǒng)測試技術(shù),開展微流體輸運(yùn)和顯微立體視覺研究。
  14. Recently , in the field of microfluidics system the drive mode of flow is a key problem , dc electroosmoticflow micropump bases on the principle of electroosmosis , which control the flow in the microchannel with electric field . recent years , it is more and more attracting people to realize it
    當(dāng)前在微流控系統(tǒng)中液體的驅(qū)動方式是一個關(guān)鍵問題,直流電滲流微泵是基于電滲原理,利用電場控制通道中的液體流動,實(shí)現(xiàn)無運(yùn)動部件的液體流動系統(tǒng),近年越來越受到人們的重視。
  15. In microfluidics systems , many parameters influence on the flow moving and control , for examples , microchannel surface characters , section shape . in this paper the main work is the research on the mechanism forming electroosmoticflow , theory analysis and simulation on the influence of the geometry parameters on the microflow . this paper reviews the development history of dc electroosmotic micropump and introduces the principle of electric double layer and dc electroosmotic micropump
    在微流控系統(tǒng)中微通道的表面特性、截面形狀等都會對電滲流流體的流動和控制產(chǎn)生影響,因此本文的主要工作內(nèi)容就是對電滲流的產(chǎn)生機(jī)理進(jìn)行研究和對微通道的幾何參數(shù)對其中的流體的流動狀況的影響進(jìn)行分析。

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