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Field
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interfaces and sensor material-electrode contacts; and (2) methods to reduce/eliminate drift and to provide self-calibration routines. Arrays; Bio-inspired methods; Biosensors; Chemical sensors; MEMS
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or nanostructures (including aptamers). Bio-interfaces; Biomolecules; Biosensors; Chemical sensors; Nanomaterials; Nanosensors; Optical methods; Photoemission spectroscopy; Scanning probe microscopy; Surfaces
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collaboration with NIH with any of the developed devices. key words Body-on-a-chip; Organ-on-a-chip; Tissues-on-chips, Microfluidics, microphysiologic systems; MPS; Biosensors; Nanofabrication; Liver; Toxicity
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Schools, houses a vibrant multidisciplinary bioengineering research community with expertise in Healthcare AI, synthetic biology, systems bioengineering, bioimaging, biosensors, molecular, cellular and
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address the selection criteria below and attach your CV (including a list of three referees). Essential A PhD in analytical chemistry, bioanalysis, biosensors or a related discipline and/or relevant
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other computer related tasks, such as Microsoft Office. Preferred Special Knowledge, Skills and Abilities: -ImageJ and Matlab. -Expertise in biosensors or protein design. -Familiarity with genetic model
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biosensors or optics. Should be comfortable being hands-on. Requires experience in circuit design and microcontroller programming. How to apply Apply for this scholarship at the same time you apply
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, biosensors, environmental health, and biomedical sciences. The host group has expertise in Safe and Sustainable by Design (SSbD) approaches, nanomaterials, advanced analytical methods, and translational
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for pediatric applications Pediatric medical devices and biosensors, and monitoring systems Microfluidics, organ-on-chip, and in vitro models for childhood diseases Advanced biomaterials for clinical applications
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devices and biosensors, and monitoring systems – Microfluidics, organ-on-chip, and in vitro models for childhood diseases – Advanced biomaterials for clinical applications – Biological modeling and