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  • Associate Professor
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  • Clinical Research Nurse
  • Clinician Researcher
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  • Permanent Researcher
  • Pharmacist
  • PhD Student
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  • Post-doc
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  • Research Associate
  • Research Engineer
  • Retired scientist
  • Technician
  • Undergraduate Student
  • Veterinary
  • Visiting Scientist
  • Deputy Director of Center
  • Deputy Director of Department
  • Deputy Director of National Reference Center
  • Deputy Head of Facility
  • Director of Center
  • Director of Department
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Scientific Fields
Diseases
Organisms
Applications
Technique

Published in BMC biology - 11 Aug 2022

Ronteix G, Aristov A, Bonnet V, Sart S, Sobel J, Esposito E, Baroud CN,

Link to Pubmed [PMID] – 35953853

Link to DOI – 10.1186/s12915-022-01376-2

BMC Biol 2022 08; 20(1): 178

Microscopy techniques and image segmentation algorithms have improved dramatically this decade, leading to an ever increasing amount of biological images and a greater reliance on imaging to investigate biological questions. This has created a need for methods to extract the relevant information on the behaviors of cells and their interactions, while reducing the amount of computing power required to organize this information.This task can be performed by using a network representation in which the cells and their properties are encoded in the nodes, while the neighborhood interactions are encoded by the links. Here, we introduce Griottes, an open-source tool to build the “network twin” of 2D and 3D tissues from segmented microscopy images. We show how the library can provide a wide range of biologically relevant metrics on individual cells and their neighborhoods, with the objective of providing multi-scale biological insights. The library’s capacities are demonstrated on different image and data types.This library is provided as an open-source tool that can be integrated into common image analysis workflows to increase their capacities.