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processing, cell and bacterial culture, and imaging workflows underpinning studies of disease progression and treatment response. This work sits within a wider programme applying tissue-engineered, in vivo
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/ . The successful candidate will receive hands-on training in isolation and culture of different primary human cells from patient lung tissues, and in differentiation of these cells into 2D and 3D tissue-like
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for emissions and noise models for further research projects, • prepare input data (2D, 3D) for environmental modeling in transportation, • work with the 3D Analyst, Network Analyst, and other extensions
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-graduate, hands-on laboratory experience. Documented experience with advanced human cell culture, including 3D models and organ-on-chip systems. Hands-on experience with pluripotent stem cell culture
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Jetzt online bewerben: https://karriere.klinikum.uni-heidelberg.de/index.php?ac=application&jobad_id=28347 PhD/Postdoc position in computational biology to elucidate NR2F1 dosage dependent
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, Microsoft Outlook Required Other Computer Applications: Required Additional Knowledge, Skills and Abilities: High degree of technical skills and experience in laboratory science, particularly tissue cultures
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Development and Biomedical Applications; Hybrid Manufacturing; Sand-Printing for Metal Casting. You can read more information on the SHAPE Lab at https://sites.psu.edu/shapelab/ . The Research Engineer supports
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The University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 3 months ago
, test, and validate innovative concepts. The ideal candidate will have experience in design thinking, human factors, CAD/CAM, rapid prototyping, and 3D printing, along with familiarity with medical device
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artificial cell / cell co-culture Assembly of artificial cell / mammalian cell co-spheroids Lithographic or colloidal approaches to 2D and 3D organization Quantitative fluorescence and confocal microscopy
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research and to drive in vitro drug target and mechanistic discovery efforts using 3D triple culture system based on iPSCs. The cell lines will be derived from participants of the Flemish Cognitive Compass