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相关论文: Microfluidics for Biofabrication

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Paul Blainey is professor of Biological Engineering at MIT. In this contribution he describes three microfluidic technologies that he and his team has developed to extend the capability, accessibility, and applications of microfluidics: (1)…

流体动力学 · 物理学 2018-02-16 Paul Blainey

Petra S. Dittrich is associate professor for Bioanalytics at the Department of Biosystems Science and Engineering at ETH Z\"urich. Here she describes the microfluidic devices that her lab develops to facilitate comprehensive studies on…

流体动力学 · 物理学 2018-02-16 Petra S. Dittrich

Yoon-Kyoung Cho is a full professor in Biomedical Engineering at UNIST. In this contribution she describes a fully integrated and automated lab-on-a-disc using centrifugal microfluidics to provide a "sample-in and answer-out" type of…

流体动力学 · 物理学 2018-02-16 Yoon-Kyoung Cho

Microfluidics-based biochips are soon expected to revolutionize clinical diagnosis, DNA sequencing, and other laboratory procedures involving molecular biology. Most microfluidic biochips are based on the principle of continuous fluid flow…

硬件体系结构 · 计算机科学 2011-11-09 Fei Su , Krishnendu Chakrabarty

Joel Voldman is a professor in the Electrical Engineering and Computer Science Department at MIT. Here he describes his labs efforts to develop microfluidic devices for cell manipulation and analysis.

流体动力学 · 物理学 2018-02-16 Joel Voldman

Organoids offer a promising alternative in biomedical research and clinical medicine, with better feature recapitulation than 2D cultures. They also have more consistent responses with clinical results when compared to animal models.…

组织与器官 · 定量生物学 2025-10-15 Caroline Ferguson , Yan Li , Yi Zhang , Xueju Wang

Klavs F. Jensen is Warren K. Lewis Professor in Chemical Engineering and Materials Science and Engineering at the Massachusetts Institute of Technology. Here he describes the use of microfluidics for chemical synthesis, from the early…

流体动力学 · 物理学 2018-02-16 Klavs F. Jensen

Microorganisms can create engineered materials with exquisite structures and living functionalities. Although synthetic biology tools to genetically manipulate microorganisms continue to expand, the bottom-up rational design of engineered…

Mehmet Toner is the Helen Andrus Benedict Professor of Biomedical Engineering at the Massachusetts General Hospital (MGH), Harvard Medical School, and Harvard - MIT Health Sciences & Technology. Here he describes his labs efforts to advance…

流体动力学 · 物理学 2018-02-16 Mehmet Toner

Given the ever-increasing advances of digital microfluidic biochips and their application in a wide range of areas including bio-chemistry experiments, diagnostics, and monitoring purposes like air and water quality control and etc.,…

新兴技术 · 计算机科学 2020-01-01 Alireza Abdoli

George Whitesides is a Woodford L. and Ann A. Flowers Professor at Harvard University. In this contribution he describes the development of microfluidic techniques, from the spark that ignited this branch of academic research and its…

流体动力学 · 物理学 2018-02-16 George Whitesides

A new type of microfluidic system for biological cell manipulation, a CMOS/microfluidic hybrid, is demonstrated. The hybrid system starts with a custom-designed CMOS (complementary metal-oxide semiconductor) chip fabricated in a…

定量方法 · 定量生物学 2007-05-23 Hakho Lee , Yong Liu , Donhee Ham , Robert M. Westervelt

Sindy Tang is assistant professor at in the Department of Mechanical Engineering at Stanford University. In this contribution she describes how her team uses droplet microfluidics to identify bacteria that could increase the efficiency of…

流体动力学 · 物理学 2018-02-16 Sindy Tang

Microfluidics, the study of fluids in microscopic channels, has led to important advances in fields as diverse as microelectronics, biotechnology and chemistry. Microfluidic research is primarily based on the use of microfluidic chips,…

系统与控制 · 电气工程与系统科学 2024-07-15 Jorge Vicente Martinez , Edgar Ramirez-Laboreo , Pablo Calderon Gil

Andrew J. deMello is professor of Biochemical Engineering in the Department of Chemistry and Applied Biosciences at ETH Z\"urich. In this contribution he describes the efforts that his lab has undertaken in developing novel microfluidic…

流体动力学 · 物理学 2018-02-16 Andrew deMello

As microfluidics-based biochips become more complex, manufacturing yield will have significant influence on production volume and product cost. We propose an interstitial redundancy approach to enhance the yield of biochips that are based…

硬件体系结构 · 计算机科学 2011-11-09 Fei Su , Krishnendu Chakrabarty , Vamsee K. Pamula

Tissue Engineering (TE) is an interdisciplinary field dealing with the principles of engineering and life sciences toward the development of biological substitutes that restore, maintain, or improve tissue function or a whole organ.…

组织与器官 · 定量生物学 2015-01-22 S. Sircar , J. N. Majumdar

Microfluidic chips provide unparalleled control over droplets and jets, which have advanced all natural sciences. However, microfluidic applications could be vastly expanded by increasing the per-channel throughput and directly exploiting…

流体动力学 · 物理学 2020-02-06 Claas Willem Visser , Tom Kamperman , Lisanne P. Karbaat , Detlef Lohse , Marcel Karperien

Surface assays, such as ELISA and immunofluorescence, are nothing short of ubiquitous in biotechnology and medical diagnostics today. The development and optimization of these assays generally focuses on three aspects: immobilization…

细胞行为 · 定量生物学 2021-04-09 Iago Pereiro , Anna Fomitcheva-Khartchenko , Govind V. Kaigala

Stochastic microstructure reconstruction involves digital generation of microstructures that match key statistics and characteristics of a (set of) target microstructure(s). This process enables computational analyses on ensembles of…

材料科学 · 物理学 2023-01-02 Anindya Bhaduri , Ashwini Gupta , Audrey Olivier , Lori Graham-Brady
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