Sort by
Refine Your Search
-
Listed
-
Category
-
Program
-
Employer
- Università Campus Bio-Medico di Roma
- Università di Bologna
- ALMA MATER STUDIORUM - UNIVERSITA' DI BOLOGNA - - DIPARTIMENTO DI INGEGNERIA INDUSTRIALE
- Alma Mater Studiorum - Universita' di Bologna
- European Molecular Biology Laboratories
- HUMANITAS UNIVERSITY
- Luiss Guido Carli
- University of Foggia
- Università Campus Bio-Medico
- Università degli Studi di Firenze
- Università di Foggia
- Università di Pavia
- 2 more »
- « less
-
Field
-
of human microbiomes in endometriosis.” - The research project aims to develop and characterize 3D tissue models based on collagen and other hydrogel matrices to investigate cell-matrix interactions and
-
ALMA MATER STUDIORUM - UNIVERSITA' DI BOLOGNA - - DIPARTIMENTO DI INGEGNERIA INDUSTRIALE | Italy | 11 days ago
the variability and statistical significance of the experimental findings. Where to apply Website http://www.unibo.it Requirements Additional Information Eligibility criteria to apply for research grants fill out
-
microscopy, in order to identify differences in bone tissue architecture, osteocyte network organization, and skeletal development processes. Particular attention will also be devoted to characterizing
-
within the context of their tissue microenvironment and enabling the identification of the mechanisms underlying the maintenance of normal tissue structure in adults Where to apply Website https
-
1970 Is the job funded through the EU Research Framework Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description Tissue
-
the activity of excitable cells and tissues, with particular emphasis on cardiac tissue and neurons. Parameter optimization of the developed models for the reproduction of experimental data. Investigation
-
on scientific and educational activities in the study of human tissues in their dynamic nature, starting from a morphological-functional approach to understand the processes that determine and control the origin
-
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
-
characterise, at both the patient and synovial level, the link between metabolic syndrome and pain in PsA, integrating multidimensional clinical phenotyping with a molecular signature of the synovial tissue, in
-
disuse conditions, with particular focus on the remodelling of muscle tissue and its resident cellular niche. The activity will involve the use of spatial transcriptomics approaches on biological samples