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4 months ago

Microscopy Cell Segmentation via Convolutional LSTM Networks

Assaf Arbelle; Tammy Riklin Raviv

Microscopy Cell Segmentation via Convolutional LSTM Networks

Abstract

Live cell microscopy sequences exhibit complex spatial structures and complicated temporal behaviour, making their analysis a challenging task. Considering cell segmentation problem, which plays a significant role in the analysis, the spatial properties of the data can be captured using Convolutional Neural Networks (CNNs). Recent approaches show promising segmentation results using convolutional encoder-decoders such as the U-Net. Nevertheless, these methods are limited by their inability to incorporate temporal information, that can facilitate segmentation of individual touching cells or of cells that are partially visible. In order to exploit cell dynamics we propose a novel segmentation architecture which integrates Convolutional Long Short Term Memory (C-LSTM) with the U-Net. The network's unique architecture allows it to capture multi-scale, compact, spatio-temporal encoding in the C-LSTMs memory units. The method was evaluated on the Cell Tracking Challenge and achieved state-of-the-art results (1st on Fluo-N2DH-SIM+ and 2nd on DIC-C2DL-HeLa datasets) The code is freely available at: https://github.com/arbellea/LSTM-UNet.git

Code Repositories

alvchn/fcn
tf
Mentioned in GitHub
ruveydayilmaz0/bvdm
pytorch
Mentioned in GitHub

Benchmarks

BenchmarkMethodologyMetrics
cell-segmentation-on-dic-c2dh-helaDecLSTM
SEG (~Mean IoU): 0.511
cell-segmentation-on-dic-c2dh-helaEncLSTM
SEG (~Mean IoU): 0.793
cell-segmentation-on-fluo-n2dh-gowt1EncLSTM
SEG (~Mean IoU): 0.85
cell-segmentation-on-fluo-n2dh-gowt1DecLSTM
SEG (~Mean IoU): 0.854
cell-segmentation-on-fluo-n2dh-simEncLSTM
SEG (~Mean IoU): 0.811
cell-segmentation-on-fluo-n2dh-simDecLSTM
SEG (~Mean IoU): 0.802
cell-segmentation-on-fluo-n2dl-helaEncLSTM
SEG (~Mean IoU): 0.811
cell-segmentation-on-fluo-n2dl-helaDecLSTM
SEG (~Mean IoU): 0.839
cell-segmentation-on-phc-c2dh-u373EncLSTM
SEG (~Mean IoU): 0.842

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