-
interdisciplinary team of biologists and engineers to leverage in vitro organ-on-a-chip (Organ Chip) microfluidic culture systems and injectable formulations to study and model adaptive immunity in female
-
of biologists and engineers to leverage in vitro organ-on-a-chip (Organ Chip) microfluidic culture systems to study and model and compare adaptive immunity and radiation toxicity in non-human primate and humans
-
statistical physics, biophysics, or in experimental method development including genomics and microfluidics. The successful candidate will work with Dr. Klein to develop an independent research project within
-
statistical physics, biophysics, or in experimental method development including genomics and microfluidics. The successful candidate will work with Dr. Klein to develop an independent research project within
-
interdisciplinary team of biologists and engineers to leverage in vitro organ-on-a-chip (Organ Chip) microfluidic culture systems and injectable formulations to study and model adaptive immunity in female
-
freezing; Time-resolved freezing -Microfluidics; design, simulation, prototyping, fabrication and testing of fluidic devices -Electron microscopy (cryo and regular) for structural and cell biology
-
work outside of his/her discipline to accomplish project goals. · Experience with flow cytometry, immunofluorescent imaging, confocal microscopy, ELISAs, and PCR. · Experience with microfluidics