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, advanced two-dimensional (2D) and three-dimensional (3D) cell culture systems, primary cell isolation and culture, epithelial biology, stem cell-based culture systems, immune cell culture and co-culture
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to address key experimental and computational challenges currently limiting the clinical translation of spatial biology. By integrating multi-omics approaches, enabling the transition from 2D to 3D tissue
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Instituto de Investigação e Inovação em Saúde da Universidade do Porto (i3S) | Portugal | about 2 months ago
cell-matrix communication in human-relevant experimental settings. To achieve this, we will develop bioengineered platforms that combine cell-laden bioinstructive hydrogels, advanced 3D culture systems
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photolithography, 3D printing and multiphoton lithography, together with innovative biomaterials. These models will be used to investigate, through advanced microscopy and quantitative image analysis, how
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student-scholarship holder at the Poznan Doctoral School of Institutes of Polish Academy of Sciences
for the increased aggressiveness of cancer cells. The project will provide the first comprehensive picture of the changes occurring in lung cancer cells under the influence of hypoxia and will explain how
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research, development and implementation studies, develop prototype tools and other devices, as well as provide research and technological services. The recipients of our solutions are, among others
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with existing 3D image data Application Procedure Application Deadline: 29 June 2026 Applicants should submit a completed application package to: Name: Gareth W. Young, Assistant Professor (Graphics and
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with existing 3D image data. Application Procedure Application Deadline: 29 June 2026 Applicants should submit a completed application package to: Name: Nils Peters, Assistant Professor School: School
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device development, photocrosslinkable hydrogels, PRIMO 405 nm light-based photopatterning, advanced imaging, and technological integration. RESTORE will contribute its expertise in human adipose tissue
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Koopman operators, plant imaging, and 3D microclimate sensors to enable crop control instead of only indirect climate control. The Koopman operator formalism offers applicability in data-driven settings