International audienceThree-dimensional (3-D) large-scale imaging of microvascular networks is of interest in various areas of biology and medicine related to structural, functional, developmental, and pathological issues. Light-sheet fluorescence microscopy (LSFM) techniques are rapidly spreading and are now on the way to offer operational solutions for large-scale tissue imaging. This contribution describes how reliable vessel segmentation can be handled from LSFM data in very large tissue volumes using a suitable image analysis workflow. Since capillaries are tubular objects of a few microns scale radius, they represent challenging structures to reliably reconstruct without distortion and artifacts. We provide a systematic analysis of mu...
Blood vessels are capable of continuous structural changes in response to varying conditions and fun...
Background: Research in heart disease can be aided by modelling myocardial hemodynamics with knowled...
Characterization of the cardiac capillary network structure is of critical importance to understand ...
International audienceWe present a multi-disciplinary image-based blood flow perfusion modeling of a...
Summary: Light sheet fluorescence microscopy (LSFM) of large tissue samples does not require mechani...
We present a multi-disciplinary image-based blood flow perfusion modeling of a whole organ vascular ...
ObjectiveQuantification of angiographic images with two-photon laser scanning fluorescence microscop...
Advances in high-throughput microscopy allow researchers to collect three-dimensional images of whol...
We present a multi-disciplinary image-based blood flow perfusion modeling of a whole organ vascular ...
Analyzing dynamic biological systems, such as blood vessel growth in healing wounds or tumour develo...
Analyzing dynamic biological systems, such as blood vessel growth in healing wounds or tumour develo...
Visualising vascular endothelial cell function in individual blood microvessels allows elucidation o...
Vasculature is known to be of key biological significance, especially in the study of tumors. As suc...
Rationale: Classic histology is the gold standard for vascular network imaging and analysis. The met...
The health and function of tissue rely on its vasculature network to provide reliable blood perfusio...
Blood vessels are capable of continuous structural changes in response to varying conditions and fun...
Background: Research in heart disease can be aided by modelling myocardial hemodynamics with knowled...
Characterization of the cardiac capillary network structure is of critical importance to understand ...
International audienceWe present a multi-disciplinary image-based blood flow perfusion modeling of a...
Summary: Light sheet fluorescence microscopy (LSFM) of large tissue samples does not require mechani...
We present a multi-disciplinary image-based blood flow perfusion modeling of a whole organ vascular ...
ObjectiveQuantification of angiographic images with two-photon laser scanning fluorescence microscop...
Advances in high-throughput microscopy allow researchers to collect three-dimensional images of whol...
We present a multi-disciplinary image-based blood flow perfusion modeling of a whole organ vascular ...
Analyzing dynamic biological systems, such as blood vessel growth in healing wounds or tumour develo...
Analyzing dynamic biological systems, such as blood vessel growth in healing wounds or tumour develo...
Visualising vascular endothelial cell function in individual blood microvessels allows elucidation o...
Vasculature is known to be of key biological significance, especially in the study of tumors. As suc...
Rationale: Classic histology is the gold standard for vascular network imaging and analysis. The met...
The health and function of tissue rely on its vasculature network to provide reliable blood perfusio...
Blood vessels are capable of continuous structural changes in response to varying conditions and fun...
Background: Research in heart disease can be aided by modelling myocardial hemodynamics with knowled...
Characterization of the cardiac capillary network structure is of critical importance to understand ...