Malignancy Detection on Mammography Using Dual Deep Convolutional Neural Networks and Genetically Discovered False Color Input Enhancement

被引:0
|
作者
Philip Teare
Michael Fishman
Oshra Benzaquen
Eyal Toledano
Eldad Elnekave
机构
[1] Zebra Medical Vision LTD,
[2] Beth Israel Deaconess Medical Center,undefined
[3] Rabin Medical Center,undefined
来源
Journal of Digital Imaging | 2017年 / 30卷
关键词
Deep learning; Machine learning; Convolutional neural networks; Mammography;
D O I
暂无
中图分类号
学科分类号
摘要
Breast cancer is the most prevalent malignancy in the US and the third highest cause of cancer-related mortality worldwide. Regular mammography screening has been attributed with doubling the rate of early cancer detection over the past three decades, yet estimates of mammographic accuracy in the hands of experienced radiologists remain suboptimal with sensitivity ranging from 62 to 87% and specificity from 75 to 91%. Advances in machine learning (ML) in recent years have demonstrated capabilities of image analysis which often surpass those of human observers. Here we present two novel techniques to address inherent challenges in the application of ML to the domain of mammography. We describe the use of genetic search of image enhancement methods, leading us to the use of a novel form of false color enhancement through contrast limited adaptive histogram equalization (CLAHE), as a method to optimize mammographic feature representation. We also utilize dual deep convolutional neural networks at different scales, for classification of full mammogram images and derivative patches combined with a random forest gating network as a novel architectural solution capable of discerning malignancy with a specificity of 0.91 and a specificity of 0.80. To our knowledge, this represents the first automatic stand-alone mammography malignancy detection algorithm with sensitivity and specificity performance similar to that of expert radiologists.
引用
收藏
页码:499 / 505
页数:6
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