Multidisciplinary Spin A Centrifugal Microfluidics Project

  1. Water: A Powerful Theme for an Interdisciplinary Course.
  2. 'Game-changing' technology to improve COVID-19 face mask protection.
  3. South African Journal of Science Volume 110 Issue 1/2.
  4. Jackie Gao - Boston, Massachusetts, United States - LinkedIn.
  5. Jing Bai - Project Engineer - Triton Systems, Inc. | LinkedIn.
  6. Awardees phase 1 details | NSF SBIR.
  7. Spira mirabilis enhanced whole blood processing in a lab-on-a-disk.
  8. Hand-powered centrifugal microfluidic platform inspired by the spinning.
  9. Fabrication of Biohybrid Nanofibers by the Green Electrospinning.
  10. Team - ECME.
  11. Jens Ducrée - A.
  12. Perspectives in translating microfluidic devices from laboratory.
  13. US8333934B2 - Gradient structures interfacing microfluidics and.
  14. Development of a Portable Centrifugal Machine for Microfluidic and.

Water: A Powerful Theme for an Interdisciplinary Course.

. At the beginning of a project, involving a professional who has experience in micromanufacturing and microfluidic cartridge scale-up can be important. In Sec. IV , we selected important scale-up manufacturing processes for scale-up production of plastic microfluidic devices, which can help researchers to primarily select the required processes.

'Game-changing' technology to improve COVID-19 face mask protection.

Sep 04, 2020 · This technique relies on the sequential separation of particles by sedimentation dependent on their size and density using a series of centrifugal forces and duration. dUC can isolate relatively pure populations of exosomes and is generally considered to be the gold standard technique for exosomal isolation. Since the LOAD device works by spinning, centrifugal force drives reagents into different chambers at specific time points for reaction development, without the need of a micro pump for liquid handling. For this test, basophils were exposed to acridine orange to label granulocytes and allow the observation of the degranulation process.

South African Journal of Science Volume 110 Issue 1/2.

Abstract The centrifugal microfluidic "lab-on-a-disk" paradigm is particularly suited to white blood cell (WBC) separation from whole blood, a key step for sample preparation in point-of-care diagnostics. Enter the email address you signed up with and we'll email you a reset link. Specifically, we emphasize electrospinning, soln. blow spinning, centrifugal spinning, and microfluidic spinning approaches. We first introduce the fundamentals of these spinning methods and then highlight the potential biomedical applications of such micro- and nanostructured fibers for drug delivery, tissue engineering, regenerative medicine.

Jackie Gao - Boston, Massachusetts, United States - LinkedIn.

This is a multidisciplinary lab with the focus on tissue engineering, microfluidics, lab-on-chip, organ-on-chip, biosensors and high-throughput drug discovery platforms. Research capabilities: On-chip single-cell studies Our lab is focused on studying the effects of mechanical cues on cell response at both the single cell and the high.

Jing Bai - Project Engineer - Triton Systems, Inc. | LinkedIn.

Entrepreneurship. High experience on technology solutions, innovative microsystems and lab-on-a-chip design and fabrication.Microfluidics, microfabrication, IVD diagnostics, Food and Water Safety, nanomaterials and nano-lithography. · 10+ years research experience in conception, design and fabrication of microfluidic systems (DNA chips, Cell. • Designed, developed and produced a fully automated centrifugal microfluidic device for DNA amplification and detection targeting different proteins and diseases in collaboration with an.

Awardees phase 1 details | NSF SBIR.

Centrifugal microfluidics is a promising area of research for the automation of a variety of processes, including biological assays and sample preparation 24, 25. The field is especially appealing for point-of-care and deployable devices, due to the fact that minimal instrumentation is needed, and the centrifugal force present is inherently. Biography. David Kinahan is an Assistant Professor in the School of Mechanical and Manufacturing Engineering since October 2018. David completed a BEng in Aeronautical Engineering (2003) and a PhD (2008) at University of Limerick (UL). His PhD focused on high-throughput droplet microfluidics for DNA analysis. In late 2007 David joined Stokes Bio Ltd, a spin-out from UL, as a Senior Engineer. Microfluidic structures Prior art date 2002-04-16 Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.) Active, expires 2023-12-13 Application number US10/414,620 Other versions US20040033515A1 (en Inventor.

Spira mirabilis enhanced whole blood processing in a lab-on-a-disk.

Tissue engineering is a multidisciplinary field that is rapidly emerging as a promising new approach in the restoration and reconstruction of imperfect tissues. In this approach, scaffolds play a pivotal role in supporting the cells to accommodate and guide their growth into a specific tissue; therefore, designing scaffolds that are favorable to cellular growth is of great importance. A multidisciplinary, team-taught, introductory course that has been taught for several years at The Evergreen State College is described. Water, the theme of the course, has proven to be a more powerful integrating theme than the original planners of the course anticipated and has involved faculty in chemistry, marine biology, environmental policy, oceanography, and geology to name a few. The.

Hand-powered centrifugal microfluidic platform inspired by the spinning.

Gorkin, R. et al. Centrifugal microfluidics for biomedical applications. Lab Chip 10 , 1758-1773 (2010). CAS Article Google Scholar. 4.3.4 Flow in Microfluidic Biochip 4.3.5 Conclusions 4.4 EXTENSIONS OF THE PIV TECHNIQUE 4.4.1 Microfluidic Nanoscope 4.4.2 Microparticle Image Thermometry 4.4.3 Infrared PIV 4.4.4 Particle-Tracking Velocimetry Problems References Chapter 5 Microfluidics for External Flow Control 5.1 VELOCITY AND TURBULENCE MEASUREMENT 5.1.1 Velocity Sensors. May 2014 - Nov 20184 years 7 months. Boston, Massachusetts, United States. • Developed a 3D in vitro cell-based assay to study angiogenesis using various genetical backgrounds of mice. Optimized.

Fabrication of Biohybrid Nanofibers by the Green Electrospinning.

The centrifugal microfluidic disc presented here is designed for nitrite detection in water samples, as a proof of principle. A limit of detection of 9.31 ppb, along with similar coefficient of correlation and precision, were obtained from the Centrifugal Microfluidic Analysis System compared with the same parameters measured using a UV-Vis. • Identified and procured basic lab equipments like microscope, CNC milling and drilling machine, vinyl cutter, magnetic stirrer with hot plate and consumables like pipette, EDTA tubes, reagents, Whatman filter paper, gloves, face masks etc. in a cost-effective manner for pathology detection on centrifugal and paper microfluidics platform. 1.1 Microfluidics and droplet-based microfluidic methods. Microfluidic technology is a multidisciplinary field that deals with the science of manipulating fluids, usually in the submicron scale. In recent years, microfluidic technology has made noteworthy progress in improving diagnostic test performance.

Team - ECME.

Expatica is the international community’s online home away from home. A must-read for English-speaking expatriates and internationals across Europe, Expatica provides a tailored local news service and essential information on living, working, and moving to your country of choice. Browse our listings to find jobs in Germany for expats, including jobs for English speakers or those in your native language.

Jens Ducrée - A.

US8333934B2 US11/536,178 US53617806A US8333934B2 US 8333934 B2 US8333934 B2 US 8333934B2 US 53617806 A US53617806 A US 53617806A US 8333934 B2 US8333934 B2 US 8333934B2 Authority. Concepts 1 and 2 are strongly considered models for this project. Concept 3 is a high budget project. And concept 4 has a minimal budget.... Once this value is calculated a centrifuge is used to spin down the culture to get a nice pellet of cells.... Chien-Hsuan "Automatic microfluidic platform for cell separation and nucleus" Biomed. Centrifugal microfluidics has been successfully implemented to carry out standard laboratory protocols, e.g., nucleic-acid-based assays and immunoassays, without needing an external pump [3], [4]. Intended fluidic operations are conducted in microstructured chips based on the induced rotational forces and in external forces.

Perspectives in translating microfluidic devices from laboratory.

Scientists at the University of Aberdeen are using a "game-changing" technology as they aim to produce a new type of face mask that is more effective in stopping the spread of COVID-19.

US8333934B2 - Gradient structures interfacing microfluidics and.

A Technological Approach for Miniaturization of 3D Inductive Levitation Micro-Suspensions Mamleyev, E. R.; Voigt, A.; Moazenzadeh, A.; Korvink, J.; Kohl, M.; Poletkin, K. Prof. Ala'aldeen Al-Halhouli. Tel.: +962 6 4294444 Ext. 4500. E-mail: Mail: P.O.Box 35247, Amman 11180, Jordan. The Energy Analysis and Design Project is designed to provide mechanical engineering skills in energy applications, renewable energy, and technologies related to energy which can involve heat transfer, thermodynamics, and fluid mechanics. The project topic can be chosen by the student or can be developed by both the student and faculty sponsor.

Development of a Portable Centrifugal Machine for Microfluidic and.

The laboratory houses a clear centrifugal slurry flow pump loop and heart pump loop. Current research projects include investigation of flow through microchip devices, CSF flow in ventricles, investigation of solid-slurry flow in centrifugal pumps using ultrasound technique and PIV, thermo-acoustic refrigeration for space application. The broader impact/commercial potential of this Small Business Technology Transfer Program (STTR) Phase I project is to develop a microfluidic assay for applications related to drug discovery/screening, personalized medicine, drug toxicity assessment, evaluation of patient clinical status, and predicting patient-specific responses to certain.


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