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a project linked to the “Helmholtz School for Data Science in Life, Earth and Energy (HDS-LEE)”. Your Job: Develop 3D+t image reconstruction methods in a cell microscopy setting using image sequences
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have opened up new opportunities for breaking barriers in focusing, dispersing, and otherwise controlling X-ray pulses in space and time, which enables exciting new applications in imaging, spectroscopy
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: 3D model learning, prediction models from imaging and molecular data, model-based simulation coupling, and uncertainty-aware outputs for lab/clinical validation. Work with 3D datasets, time-series
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methodology toward 3D spatial and temporal strain–temperature imaging for the optimization of next-generation electronic and optoelectronic devices. Further information may be obtained from: Tobias Schülli (tel
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" Tumor viscoelasticity as a central player in glioblastoma treatment - towards mechanopharmacology". As part of the experimental work, the tasks will include: Development of 3D hydrogels with controlled
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skull implantable stimulation hubs forming a communication network for 3D targeting by self-organization, providing semantic information transfer and synchronization, and thus enabling self-adjusting
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simulation framework for paired visible-light and X-ray images of fruit and developing methods for fast 3D shape modelling of fruits, correcting X-ray images for object thickness, and estimating physiological
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in situ across length scales and relate their structure/organization to fertility phenotypes. The work includes include (i) investigating the 3D structure and composition of unknown macromolecular
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University of California, San Francisco | San Francisco, California | United States | about 2 months ago
+, which include 3D printers, imaging workstations and VR/AR equipment. The 3D Engineer will perform post-processing, segmentation and design for 3D printing on high-end and desktop 3D printers. They will
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through chemical analyses (ICP-AES and ICP-MS), physicochemical analyses (DLS, zeta potential), structural analyses (XRD, XANES, EXAFS), X-ray imaging (2D and 3D), microbial community analyses, and