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So its necessary to take a research on this subject. Micro fluidic chips are a special use of Micro system in modern medicine and analysis chymistry. Micro fluidic chips are made in batchs in our country now, but it is necessary to inspect the Micro quality of them as we can make them used widely.The depth measurement of micro channels is one of the most important task in the inspection of micro fluidic chips.
微流控芯片是微系统在现代医学和分析化学中的一个实际应用,目前微流控芯片已经在我国开始大量的加工制造,但微流控芯片要广泛的运用,必须对生产的芯片的各个尺寸进行微观的质量检测,微流控芯片流道深度检测是芯片尺寸检测的一个重要内容,本文开展的基于D.F.D。
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The derivative 〓 t, x (t of the V function along a solution to a determinate ordinary differential system is changed to be 〓V t, x (t for a stochastic ordinary differential system.
众所周知,用Lyapunov直接法来研究随机常微系统的稳定性与研究确定性常微系统的稳定性有许多类似之处,表现在只需要用〓Vt,x(t代替常微系统中V函数沿解的导数〓t,x
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As one of the most important embranchment of Micro System , the inspection of micro component is closely linked with the development of Micro System and supplied each other.
目前微系统的已经在各个行业得到了广泛的研究和应用,作为微系统的一个重要分支,微构件的检测与微系统的发展相辅相成,息息相关。
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In order to install and test micro system component by higher precision and reliability, it is very necessary to research a kind of gripper having sensing function.
在微机械领域,为了能够以更高的精度和可靠性来安装和测试微系统元件,具备传感功能的微夹钳是非常必要的。
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A fully transparent microsystem based on permalloy micro-electroplating and PDMS/Glass bonding was well constructed and a macro-to-micro interface process was developed for the system. 4. On-chip experiments.
设计了磁珠微系统结构及工艺流程,制作了基于玻璃基底的镍铁合金微电铸工艺和PDMS-玻璃永久键合工艺的全透明的磁珠微系统,并开发了微芯片系统的宏微接口工艺。
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Four aspects of research achievements include:(1)several imaging correction methods and strained estimation methods for biological tissues elasticity imaging were investigated as well as elasticity reconstruction and phantom, in vitro and in vivo elasticity imaging experiments;(2)in the fields of biological microsystem and perfusion evaluation for microvascular system, three kinds of microbubbles whose shell are albumin, sugar ester and surfactant respectively were designed and produced, then the methods to estimate the thickness of their shells were presented, moreover, the interacting mechanism of ultrasound contrast agents and tissues, as well as protein drug delivery under the condition of ultrasound sonification were studied in the molecular level;(3) At the aspect of high intensity focused ultrasound therapy system, we designed and constructed the 256-element HIFU transducers using 1-3 composite materials. And furthermore we developed the integrated HIFU system with 256-element HIFU transducers. And we made preliminary and important progresses in the research of HIFU bioeffect, lesion estimation, techniques of monitoring and imaging and characterizing of structure of HIFU transducer;(4)The real-time method of voice source regeneration based on compensative regulation of physiological parameters was investigated in the field of medical rehabilitation. We addressed the physiology and biophysics of vocalization, modeled voice source regeneration based on compensative regulation mechanism, and put forward an integrated evaluation about the speech rehabilitation and the regenerated voice source; Sixty-one archived journal papers were published, as well as ten in international journals, and eighteen publications were embodied by SCI.
成果包括:(1)在生物组织弹性成像方面,研究了多种图像校正方法和应变估计方法,进行了弹性重构和仿体、离体及在体超声弹性成像实验研究;(2)在生物微系统和微血管血流灌注成像方面,制备了三种不同包膜超声造影微泡,研究了纳米包膜厚度检测与估计方法以及不同纳米包膜造影微泡断裂与药物释放机制,并在分子层次上开展了超声与生物组织相互作用机制以及蛋白质药物超声乳化微囊包裹的研究;(3)在阵列式高强聚焦超声治疗与监控成像技术方面,设计制作了新的HIFU换能器,解决了256阵元单焦点和多焦点合成HIFU治疗系统关键技术问题,并在HIFU生物效应与创伤性评价方法、HIFU过程监控成像技术和薄层复合结构与HIFU 换能器界面特性评价等方面的研究取得了初步而重要的进展,具有重要应用前景;(4)在语音听觉系统特别是嗓音康复方面,研究了基于发声系统补偿调节机制的实时多模式嗓音源再生方法和发声生理,建立基于神经、肌肉和空气动力系统的综合补偿调节模型,提出了相应的评价系统。
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Four aspects of research achievements include:(1)several imaging correction methods and strained estimation methods for biological tissues elasticity imaging were investigated as well as elasticity reconstruction and phantom, in vitro and in vivo elasticity imaging experiments;(2)in the fields of biological microsystem and perfusion evaluation for microvascular system, three kinds of microbubbles whose shell are albumin, sugar ester and surfactant respectively were designed and produced, then the methods to estimate the thickness of their shells were presented, moreover, the interacting mechanism of ultrasound contrast agents and tissues, as well as protein drug delivery under the condition of ultrasound sonification were studied in the molecular level;(3) At the aspect of high intensity focused ultrasound therapy system, we designed and constructed the 256-element HIFU transducers using 1-3 composite materials. And furthermore we developed the integrated HIFU system with 256-element HIFU transducers. And we made preliminary and important progresses in the research of HIFU bioeffect, lesion estimation, techniques of monitoring and imaging and characterizing of structure of HIFU transducer;(4)The real-time method of voice source regeneration based on compensative regulation of physiological parameters was investigated in the field of medical rehabilitation. We addressed the physiology and biophysics of vocalization, modeled voice source regeneration based on compensative regulation mechanism, and put forward an integrated evaluation about the speech rehabilitation and the regenerated voice source; Sixty-one archived journal papers were published, as well as ten in international journals, and eighteen publications were embodied by SCI.
中文摘要:成果包括:(1)在生物组织弹性成像方面,研究了多种图像校正方法和应变估计方法,进行了弹性重构和仿体、离体及在体超声弹性成像实验研究;(2)在生物微系统和微血管血流灌注成像方面,制备了三种不同包膜超声造影微泡,研究了纳米包膜厚度检测与估计方法以及不同纳米包膜造影微泡断裂与药物释放机制,并在分子层次上开展了超声与生物组织相互作用机制以及蛋白质药物超声乳化微囊包裹的研究;(3)在阵列式高强聚焦超声治疗与监控成像技术方面,设计制作了新的HIFU换能器,解决了256阵元单焦点和多焦点合成HIFU治疗系统关键技术问题,并在HIFU生物效应与创伤性评价方法、HIFU过程监控成像技术和薄层复合结构与HIFU 换能器界面特性评价等方面的研究取得了初步而重要的进展,具有重要应用前景;(4)在语音听觉系统特别是嗓音康复方面,研究了基于发声系统补偿调节机制的实时多模式嗓音源再生方法和发声生理,建立基于神经、肌肉和空气动力系统的综合补偿调节模型,提出了相应的评价系统。
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The feasibility of magnetic capture has also been discussed. 3. Process design of the MB microsystem.
在对静磁学理论及层流理论进行研究归纳的基础上,分析了磁珠微系统的工作原理,对设计的磁珠微系统进行建模,进行磁场模拟分析,建立了磁场捕获的可行性分析。
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Recent advances in the CMOS technology have reduced the power consumption of the micro system nodes to tens to hundreds of microwatts.
当微系统的技术越来越成熟时,各种利用微感测器或微传感器所形成的智慧型网路或系统应用也随之而生。
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Micro/nanotechnology ; micro/nanofabrication ; microsystem technology ; miniaturisation
微纳米技术;微纳米加工;微系统技术;微小型化
- 更多网络解释与微系统相关的网络解释 [注:此内容来源于网络,仅供参考]
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microsystems:微系统
1978年世界上第一块DSP芯片S2811在美国微系统(Microsystems)公司的AMI子公美国TI公司是1930年成立于美国德肯萨斯(Texas)州的一家从事石油勘探的公司,1951平台(OMAP)这4个平台为发展基础.此外,
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Sun Microsystems:太阳微系统
这些人中有科雷尼尔.珀金斯(Kleiner Perkins)的约翰.多尔(John Doerr),硅谷最为人尊重、最有影响的人物之一;维诺德.科斯拉(Vinod Khosla),太阳微系统(Sun Microsystems)的创始首席执行官;史蒂夫.凯斯,美国在线的创始人之一;
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Sun Microsystems:太阳微系统公司
肯.阿尔瓦雷斯(Ken Alvares)-- 太阳微系统公司(Sun Microsystems)人力资源副总裁,该公司位于加利福尼亚州芒廷维尤(Mountain View). 在合同方面,医疗中心与PDS的外包合同显然也有很多地方需要改进. 实际上,正是合同的不完善,
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American Microsystems:美国缩微系统公司
American Maize-Products 美国玉米生产公司 | American Microsystems 美国缩微系统公司 | American Motors 美国汽车公司
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Ashling Microsystems Ltd Ashling:微系统有限公司
ascending 上升,升幂 Ascd | Ashling Microsystems Ltd Ashling 微系统有限公司 company | Aspec Technology, Inc. Aspec 科技公司 company
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Vinod Khosla:太阳微系统公司的创始人,硅谷著名的投资家
83 Adam Kolawa:美国Parasoft公司的主席兼首席执行官. | 84 Vinod Khosla:太阳微系统公司的创始人,硅谷著名的投资家. | 85 Nick Ibrahim:Ruby Tuesday's公司CIO.
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MicroSystem:微系统
微系统(Microsystem)和MEMS(微机电系统)-由微传感器、微电子学电路(信号处理、控制电路、通信接品等)和微执行器构成一个三级级联系统、集成在一个芯片上的器件称之为微系统.
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microsystem organization:微系统结构
microswitch 微型开关 | microsystem organization 微系统结构 | microtelephone 小型话筒
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Microsystem Integration Technology:微系统综合技术
Management of Logistics and Transportation 物流管理 | Microsystem Integration Technology微系统综合技术 | Naval Architechture 海洋建筑工程
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Stems:太阳微系统 美国 计算机
stems 太阳微系统 美国 计算机 | 320 Dexia Group 的 比利时/法国 银行 | 321 Faros 的 法国 的