instarr.in
Log In

Joint optic disc and cup segmentation based on densely connected depthwise separable convolution deep network, BMC Medical Imaging

$ 20.00

4.9 (271) In stock

Background Glaucoma is an eye disease that causes vision loss and even blindness. The cup to disc ratio (CDR) is an important indicator for glaucoma screening and diagnosis. Accurate segmentation for the optic disc and cup helps obtain CDR. Although many deep learning-based methods have been proposed to segment the disc and cup for fundus image, achieving highly accurate segmentation performance is still a great challenge due to the heavy overlap between the optic disc and cup. Methods In this paper, we propose a two-stage method where the optic disc is firstly located and then the optic disc and cup are segmented jointly according to the interesting areas. Also, we consider the joint optic disc and cup segmentation task as a multi-category semantic segmentation task for which a deep learning-based model named DDSC-Net (densely connected depthwise separable convolution network) is proposed. Specifically, we employ depthwise separable convolutional layer and image pyramid input to form a deeper and wider network to improve segmentation performance. Finally, we evaluate our method on two publicly available datasets, Drishti-GS and REFUGE dataset. Results The experiment results show that the proposed method outperforms state-of-the-art methods, such as pOSAL, GL-Net, M-Net and Stack-U-Net in terms of disc coefficients, with the scores of 0.9780 (optic disc) and 0.9123 (optic cup) on the DRISHTI-GS dataset, and the scores of 0.9601 (optic disc) and 0.8903 (optic cup) on the REFUGE dataset. Particularly, in the more challenging optic cup segmentation task, our method outperforms GL-Net by 0.7 $$\%$$ % in terms of disc coefficients on the Drishti-GS dataset and outperforms pOSAL by 0.79 $$\%$$ % on the REFUGE dataset, respectively. Conclusions The promising segmentation performances reveal that our method has the potential in assisting the screening and diagnosis of glaucoma.

Joint optic disc and cup segmentation based on densely connected

A Novel Deep Learning Algorithm for Optical Disc Segmentation for

Joint optic disk and cup segmentation for glaucoma screening using

C2FTFNet: Coarse-to-fine transformer network for joint optic disc

DSCA-Net: A depthwise separable convolutional neural network with

Improved optic disc and cup segmentation in Glaucomatic images

PDF) Joint optic disc and cup segmentation based on densely

Sensors, Free Full-Text

A Novel Deep Learning Algorithm for Optical Disc Segmentation for Glaucoma Diagnosis

Applied Sciences, Free Full-Text

PDF) Joint optic disc and cup segmentation based on densely

Optic disc and cup segmentation

Mathematics, Free Full-Text

Related products

3-1/2 Deep Cup Kitchen Sink Drain Assembly, 304 Stainless Steel Construction With Fixed Post Basket and Long Extended Shank/CAS Approved and Oil

Mason Jar Divider Cup for Salads, Dips, and Snacks · Mason Jar

What is Deep Drawing and How Does the Process Work

Deep Drawn Stainless Steel Cup, Thickness: 4 To 8 Mm, Size: 45 Mm

Espresso Cup & Saucer by Thomas Keller Collection for Raynaud – Finesse The Store