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Field
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analysis. Our laboratory develops physiologically relevant in vitro platforms, including three-dimensional culture systems, tunable hydrogel matrices, microfluidic devices, organ-on-chip models, and
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and development methods (for conventional drug and newer therapeutic modalities), 3D printing and bioprinting, homogenization techniques, and microfluidics-based formulation strategies. Expertise in
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inexpensive microfluidic techniques. While the mechanism of these drops’ motion is well-known, controlling their trajectory is often challenging. There exist experimental proofs-of-concept that utilize imposed
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Posting Description POSTDOCTORAL ASSOCIATE, Chemical Engineering,to work in the area of microfluidics and microphysiological systems (“organ-on-a-chip”) and under the direction of Professor Maggie
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methods (for conventional drug and newer therapeutic modalities), 3D printing and bioprinting, homogenization techniques, and microfluidics‑based formulation strategies. Expertise in developing and applying
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heterogeneity of their environments. For more details, please view https://idmxs.org/ . Key Responsibilities: Design, prototype, and optimize passive microfluidic cartridges integrating plasma-separation
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Changhuei Yang, is focused on the development of novel tools that combine optics and microfluidics to tackle diagnostic and measurement problems in biology and medicine. The major techniques that are under
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- “Advanced manufacturing of nanomaterials using an AI-enhanced automated microfluidic system”. Qualifications Applicants should have an honours degree or an equivalent qualification. Applicants are invited
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and microfluidic platforms. He/ She will also oversee and mentor graduate and undergraduate students involved in the project, providing guidance on research design, experimental execution, and data
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. Successful candidates will contribute to one or more of the following research areas: • Electrochemical biosensors for disease biomarker detection • Passive microfluidic plasma separation devices