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Paul Bourgine

Researcher at Lund University

Publications -  102
Citations -  6924

Paul Bourgine is an academic researcher from Lund University. The author has contributed to research in topics: Mesenchymal stem cell & Stem cell. The author has an hindex of 28, co-authored 99 publications receiving 6376 citations. Previous affiliations of Paul Bourgine include University Hospital of Basel & Université Paris-Saclay.

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Proceedings ArticleDOI

Twister Segment Morphological Filtering. A New Method for Live Zebrafish Embryos Confocal Images Processing

TL;DR: This work proposes an extension of the classical morphological filtering based on openings by line segment structuring elements that has been applied to remove noise from confocal laser scanning microscopy images of live zebrafish embryos engineered to fluorescently label all their cell membranes.
Journal ArticleDOI

Orthotopic Bone Formation by Streamlined Engineering and Devitalization of Human Hypertrophic Cartilage.

TL;DR: The suitability of engineered devitalized HyC ECM as a bone substitute material, with a performance superior to a state-of-the-art commercial graft, is demonstrated.
Proceedings Article

A framework for 4-d biomedical image processing, visualization and analysis

TL;DR: A software framework is presented that aims at providing support for managing these kinds of multidimensional images, designing and validating new image processing algorithms, and analyzing processed images through different visualization techniques.
Proceedings ArticleDOI

Synthetic biology and microelectronics: A similar design flow

TL;DR: The argument is illustrated by a case study on a specific biodevice, which is modeled and simulated using three different languages: MATLAB-Simulink and two hardware description languages (VHDL-AMS and VHDL).
Proceedings ArticleDOI

3-D Zebrafish Embryo Image Filtering by Nonlinear Partial Differential Equations

TL;DR: In this paper, the application of nonlinear PDE based methods to filtering of 3-D confocal images of embryogenesis is discussed, where the mean curvature driven and the regularized Perona-Malik equations are used.