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Field
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identification of cases with a high potential for progression. The aim of the project is to develop an innovative in vitro model enabling investigation of the (micro-)invasion process in DCIS and identification
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. Preferential Requirements Additional professional experience in laboratory management, as indicated in the CV and/or motivation letter; Knowledge in 3D cell models, including spheroids, cloning and CRISPR/Cas9
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fields. Experience: Priority specialization: Microfabrication, bioengineering and organ-on-a-chip models In addition, the following will be positively valued: 1. Experience in cell culture (2D and 3D). 2
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experiences and sonic architecture. This project will use state-of-the-art robot-aided acoustic measurements and employ advanced computational and acoustic modelling techniques to create a versatile Acoustic
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and the environment. The developed methods will combine wireless sensing with digital map information (e.g. 3D building models), enabling safe autonomous navigation in complex urban environments
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– for manipulating images Familiarity with computer vision libraries, like OpenCV or Dlib, for developing and implementing vision-based models Familiar with 3D refractive imaging technique with demonstratable track
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systems programming and real-time control (e.g., LabVIEW, Simulink Real-Time, ROS, C/C++, STM32); analog and digital PCB design; machine design and prototyping (e.g., CAD modelling, 3D printing, machining
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function. The candidate will participate in an integrated set of projects aimed at developing a model of the normal human lung against which individuals can be compared to identify and evaluate early