Keyword search (4,163 papers available)

"Zunair H" Authored Publications:

Title Authors PubMed ID
1 CosSIF: Cosine similarity-based image filtering to overcome low inter-class variation in synthetic medical image datasets Islam M; Zunair H; Mohammed N; 38492455
ENCS
2 Quantifying imbalanced classification methods for leukemia detection Depto DS; Rizvee MM; Rahman A; Zunair H; Rahman MS; Mahdy MRC; 36516574
ENCS
3 Knowledge distillation approach towards melanoma detection Khan MS; Alam KN; Dhruba AR; Zunair H; Mohammed N; 35594685
CONCORDIA
4 Sharp U-Net: Depthwise convolutional network for biomedical image segmentation Zunair H; Ben Hamza A; 34348214
ENCS
5 A comparative analysis of deep learning architectures on high variation malaria parasite classification dataset. Rahman A, Zunair H, Reme TR, Rahman MS, Mahdy MRC 33465520
ENCS
6 Melanoma detection using adversarial training and deep transfer learning. Zunair H, Ben Hamza A 32252036
CONCORDIA

 

Title:Melanoma detection using adversarial training and deep transfer learning.
Authors:Zunair HBen Hamza A
Link:https://www.ncbi.nlm.nih.gov/pubmed/32252036?dopt=Abstract
DOI:10.1088/1361-6560/ab86d3
Publication:Physics in medicine and biology
Keywords:
PMID:32252036 Category:Phys Med Biol Date Added:2020-04-07
Dept Affiliation: CONCORDIA
1 Concordia University Montreal QC Canada.

Description:

Melanoma detection using adversarial training and deep transfer learning.

Phys Med Biol. 2020 Apr 06;:

Authors: Zunair H, Ben Hamza A

Abstract

Skin lesion datasets consist predominantly of normal samples with only a small percentage of abnormal ones, giving rise to the class imbalance problem. Also, skin lesion images are largely similar in overall appearance owing to the low inter-class variability. In this paper, we propose a two-stage framework for automatic classification of skin lesion images using adversarial training and transfer learning toward melanoma detection. In the first stage, we leverage the inter-class variation of the data distribution for the task of conditional image synthesis by learning the inter-class mapping and synthesizing under-represented class samples from the over-represented ones using unpaired image-to-image translation. In the second stage, we train a deep convolutional neural network for skin lesion classification using the original training set combined with the newly synthesized under-represented class samples. The training of this classifier is carried out by minimizing the focal loss function, which assists the model in learning from hard examples, while down-weighting the easy ones. Experiments conducted on a dermatology image benchmark demonstrate the superiority of our proposed approach over several standard baseline methods, achieving significant performance improvements. Interestingly, we show through feature visualization and analysis that our method leads to context based lesion assessment that can reach an expert dermatologist level.

PMID: 32252036 [PubMed - as supplied by publisher]





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