Examples of using Microfluidic systems in English and their translations into German
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And it is here that microfluidic systems play an important role.
The SNI team willuse a small experiment to show how microfluidic systems work.
Optochemical sensors are integrated into microfluidic systems in order to detect the conversion of substances.
It is therefore of specific interest to adapt optical tweezers for the use in microfluidic systems.
In the pharmaceutical industry, microfluidic systems have many analytical uses in biopharmaceutical production, e. g.
The team conducts in vitro research on the human immune system, specifically in small(credit card size) microfluidic systems, also known as organ-on-a-chip systems. .
Microfluidic systems, for example, are based on microscale liquid channels and are used for more efficient blood analysis.
The Chemical andOptical Sensing Division develops chemical sensors, microfluidic systems, and optical and mass spectrometric methods.
Microfluidic systems and structures are of interest in many technical application areas, for example in medical engineering and biotechnology.
The scientists in the MiPIS project are now using microfluidic systems to prepare samples and hope to see major advantages over the traditional methods.
Areas of application are the characterization of semiconductor components and materials, solar cells, dielectric spectroscopy,bioimpedance tasks, and microfluidic systems.
The flow behavior of complex fluids in microfluidic systems is often determined by confinement effects of individual macromolecules and cells.
Research focuses on the development of optical systems to improve techniques such as optical tweezing and digital holography for the micromanipulation andanalysis of particle flows in integrated microfluidic systems.
Microfluidic systems are developed using a simple technique called photolithography, which was originally developed for creating small features on circuits in the semiconductor industry.
The latest pharmaceutical advances, related technologies of miniaturization(nano-objects,…), microfluidic systems have been developed by start-up that large pharmaceutical companies private and public research work on these areas.
Furthermore, microfluidic systems at the micro- and nano-scale more accurately reflect the cellular environment, as physicochemical transport processes of most biological systems function at the same scale.
Development of a microfluidic-supplied multi-organ system for reproducing metabolic interactions between liver, kidney and intestine Within the research project,artificial human organ replicas of the liver will be integrated into microfluidic systems, which will be established as an in vitro model for pharmacological and toxicological tests of active agents.
Thanks to the expertise of the engineers at IWS, the microfluidic system is extremely miniaturized.
Typically NALF systems combine lateral-flow strips with a microfluidic system.
The scientists' microfluidic system consists of a main channel with many delicate side channels that branch off T junctions.
The microfluidic system can be used in conjunction with MALDI-TOF mass spectrometry to optimize organic reaction conditions on a submicrogram level.
Apart from cancer research, the microfluidic system is also suited for use in inflammation and coagulation research.
Assisted by microtechnology, the Heidelberg researchers will attempt to replicate the natural,physiological cell environment in a so-called microfluidic system.
The young scientist Gianpiero Lazzari from the Institute Galien of the Université de Paris-Sudhas developed a complex pancreas model in a microfluidic system.
So what I plan to do with this technology is to actually take the current state of the technology andbuild an HIV kit in a microfluidic system.
This time, he developed a microfluidic system that allows rapid replacement of the culture medium, so that it is possible to study the influence of various components of the nutrient medium on the assembly of the bacterial harpoon.
We introduce in this project a microfluidic system enabling direct monitoring of tumor cells escaping from the blood vessel(extravasation), and permitting the analysis of the continual effects of shear force, contacts with the capillary wall, flow pulsations and also the gradient-aligned chemotaxis of tumor cells.
Since the NANODETECT project was launched in 2008, biological detection systems have been developed at laboratory scale andare now being integrated into an industrial prototype together with a microfluidic system which will track quality parameters along the food chain.