Computer-aided detection (CAD) developer iCAD will collaborate with researchers from the Karolinska Institute in Stockholm on developing an artificial intelligence (AI) algorithm that can determine an individual's risk of breast cancer.
Together, iCAD and Karolinska plan to develop an AI breast cancer risk assessment model geared toward commercial use, with the expectation of entering an exclusive license agreement upon its completion. Development of the new model will stem from a prior breast cancer risk-prediction model that the Karolinska researchers developed using mammography data provided by iCAD's AI cancer detection software.
"Our research using the iCAD AI technology has shown that by simply using the information available in the mammogram images, we can more accurately stratify women based on short-term risk," Dr. Per Hall of Karolinska said in a statement.
In a Friday presentation at ECR 2019 in Vienna, Hall will discuss the institute and iCAD's collaborative approach to paving the way for risk-stratified breast cancer screening.











![A normal mammogram confirmed by three-year radiologic follow-up illustrates reader-marked regions of interest (ROIs) during (A) unaided (round 1) and (B) artificial intelligence (AI)–assisted (round 2) reading. Each colored dot represents an ROI for recall by a human reader. Readers could mark more than one ROI per case, represented by multiple dots of the same color. During AI-assisted reading, the AI system displayed three visible prompts: two with suspicion of malignancy scores of 35% (left mediolateral oblique [L MLO] and craniocaudal [L CC]) and one with a suspicion of malignancy score of 10% (right craniocaudal [R CC]), shown as polygonal overlays. Without AI, six of 10 readers (60%) marked a false-positive ROI. With AI assistance, this fell to two of 10 (20%). R MLO = right mediolateral oblique.](https://img.auntminnie.com/mindful/smg/workspaces/default/uploads/2026/07/2026-07-14-radiology-mammogram-ai-auto-bias.H0bYO8QlWs.jpg?auto=format%2Ccompress&fit=crop&h=112&q=70&w=112)






