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Published on: August 28, 2018
Associations of Breast Arterial Calcifications with Cardiovascular Disease
Mu'ath Ibrahim1, Mo'ayyad E Suleiman1, Ziba Gandomkar1
1Faculty of Medicine and Health, Sydney School of Health Sciences, The University of Sydney, Sydney, Australia.
Insights
Breast arterial calcifications (BAC) on mammograms may help predict cardiovascular disease (CVD) risk in women. This could offer a convenient, gender-specific tool complementing traditional methods.
Area of Science:
- Cardiology
- Radiology
- Women's Health
Background:
- Cardiovascular diseases (CVD) are the leading cause of death in women, with traditional risk factors often underestimating risk.
- Mammography screening is common for women over 40, presenting an opportunity for integrated CVD risk assessment.
Approach:
- This review examines studies linking breast arterial calcifications (BAC), visible on mammograms, to CVD and coronary artery disease (CAD).
- It critically evaluates previous study designs, including sample size, population, assessment methods, and confounding factors.
- The review explores the potential of mammographic data for novel, gender-specific CVD risk prediction.
Key Points:
- Breast arterial calcifications (BAC) show a potential association with cardiovascular disease (CVD) and coronary artery disease (CAD).
- Mammograms offer a readily available data source for identifying CVD/CAD risk factors in women.
- Current risk prediction models may underestimate CVD/CAD risk in women compared to men.
Conclusions:
- Mammographic data, including BAC, could provide a cost-effective, gender-specific approach to cardiovascular risk prediction.
- Further research is needed to refine the use of BAC and other radiomic features like breast density for CVD/CAD risk assessment.
- Integrating mammographic findings into CVD/CAD risk models may improve early detection and prevention strategies for women.
Abstract:
Cardiovascular diseases (CVD), including coronary artery disease (CAD), continue to be the leading cause of global mortality among women. While traditional CVD/CAD prevention tools play a significant role in reducing morbidity and mortality among both men and women, current tools for preventing CVD/CAD rely on traditional risk factor-based algorithms that often underestimate CVD/CAD risk in women compared with men. In recent years, some studies have suggested that breast arterial calcifications (BAC), which are benign calcifications seen in mammograms, may be linked to CVD/CAD. Considering that millions of women older than 40 years undergo annual screening mammography for breast cancer as a regular activity, innovative risk prediction factors for CVD/CAD involving mammographic data could offer a gender-specific and convenient solution. Such factors that may be independent of, or complementary to, current risk models without extra cost or radiation exposure are worthy of detailed investigation. This review aims to discuss relevant studies examining the association between BAC and CVD/CAD and highlights some of the issues related to previous studies' design such as sample size, population types, method of assessing BAC and CVD/CAD, definition of cardiovascular events, and other confounding factors. The work may also offer insights for future CVD risk prediction research directions using routine mammograms and radiomic features other than BAC such as breast density and macrocalcifications.
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