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Published on: December 2, 2016
Cardiac Remodeling in Hypertension: Clinical Impact on Brain, Heart, and Kidney Function
Sophie Mavrogeni1, George Piaditis2, Flora Bacopoulou3
1Cardiology, National and Kapodistrian University of Athens, Athens, Greece.
Insights
Hypertension causes organ remodeling in the heart, brain, and kidneys. A new MRI protocol allows simultaneous assessment of this "hypertensive remodeling" in all three organs.
Area of Science:
- Cardiovascular Medicine
- Nephrology
- Neurology
- Radiology
Background:
- Hypertension is a primary cause of cardiac remodeling, affecting brain and kidney function.
- Current blood biomarkers for cardiac remodeling lack clarity, necessitating advanced imaging.
- Cardiac remodeling is part of a broader
- hypertensive remodeling
- affecting multiple organs.
Purpose of the Study:
- To propose a novel, simultaneous magnetic resonance imaging (MRI) protocol for assessing
- hypertensive remodeling
- across the heart, brain, and kidneys.
- To establish MRI as a noninvasive tool for early detection of silent organ damage.
Main Methods:
- Development of a combined MRI protocol for simultaneous heart, brain, and kidney assessment.
- Inclusion of comprehensive indices for evaluating
- hypertensive remodeling
- in all three organs.
- Ensuring the protocol is patient-friendly, completed within one hour.
Main Results:
- The proposed MRI protocol enables simultaneous, noninvasive evaluation of cardiac, cerebral, and renal remodeling.
- A single contrast injection allows for post-contrast assessments across all three organs, limiting contrast dose.
- The protocol aims for an
- all in one examination
- approach.
Conclusions:
- Simultaneous assessment of heart, brain, and kidney remodeling using MRI is feasible and efficient.
- This comprehensive approach aids in identifying early, silent lesions of total
- hypertensive remodeling
- .
- MRI offers a radiation-free, noninvasive modality for evaluating the systemic effects of hypertension.
Abstract:
Hypertension is the most common causative factor of cardiac remodeling, which, in turn, has been associated with changes in brain and kidney function. Currently, the role of blood biomarkers as indices of cardiac remodeling remains unclear. In contrast, cardiac imaging, including echocardiography and cardiovascular magnetic resonance (CMR), has been a valuable noninvasive tool to assess cardiac remodeling. Cardiac remodeling during the course of systemic hypertension is not the sole effect of the latter. "Remodeling" of other vital organs, such as brain and kidney, also takes place. Therefore, it will be more accurate if we discuss about "hypertensive remodeling" involving the heart, the brain, and the kidneys, rather than isolated cardiac remodeling. This supports the idea of their simultaneous assessment to identify the early, silent lesions of total "hypertensive remodeling". In this context, magnetic resonance imaging is the ideal modality to provide useful information about these organs in a noninvasive fashion and without radiation. For this purpose, we propose a combined protocol to employ MRI in the simultaneous assessment of the heart, brain and kidneys. This protocol should include all necessary indices for the evaluation of "hypertensive remodeling" in these 3 organs, and could be performed within a reasonable time, not exceeding one hour, so that it remains patient-friendly. Furthermore, a combined protocol may offer "all in one examination" and save time. Finally, the amount of contrast agent used will be limited granted that post-contrast evaluations of the three organs will be performed after 1 injection.
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