Deep Learning Convolutional Networks for Multiphoton Microscopy Vasculature Segmentation

06/08/2016
by   Petteri Teikari, et al.
0

Recently there has been an increasing trend to use deep learning frameworks for both 2D consumer images and for 3D medical images. However, there has been little effort to use deep frameworks for volumetric vascular segmentation. We wanted to address this by providing a freely available dataset of 12 annotated two-photon vasculature microscopy stacks. We demonstrated the use of deep learning framework consisting both 2D and 3D convolutional filters (ConvNet). Our hybrid 2D-3D architecture produced promising segmentation result. We derived the architectures from Lee et al. who used the ZNN framework initially designed for electron microscope image segmentation. We hope that by sharing our volumetric vasculature datasets, we will inspire other researchers to experiment with vasculature dataset and improve the used network architectures.

READ FULL TEXT

page 3

page 5

page 6

page 8

page 11

page 12

page 15

research
07/06/2017

On the Compactness, Efficiency, and Representation of 3D Convolutional Networks: Brain Parcellation as a Pretext Task

Deep convolutional neural networks are powerful tools for learning visua...
research
04/09/2019

Machine Vision Guided 3D Medical Image Compression for Efficient Transmission and Accurate Segmentation in the Clouds

Cloud based medical image analysis has become popular recently due to th...
research
05/31/2016

The use of deep learning in image segmentation, classification and detection

Recent years have shown that deep learned neural networks are a valuable...
research
11/22/2019

Identify the cells' nuclei based on the deep learning neural network

Identify the cells' nuclei is the important point for most medical analy...
research
04/02/2018

Bridging the Gap Between 2D and 3D Organ Segmentation

There has been a debate on whether to use 2D or 3D deep neural networks ...
research
01/03/2018

Deep convolutional neural networks for segmenting 3D in vivo multiphoton images of vasculature in Alzheimer disease mouse models

The health and function of tissue rely on its vasculature network to pro...
research
03/15/2022

UNet Architectures in Multiplanar Volumetric Segmentation – Validated on Three Knee MRI Cohorts

UNet has become the gold standard method for segmenting 2D medical image...

Please sign up or login with your details

Forgot password? Click here to reset