Goal 2: Reduce Human Disease

Balancing Risks and Benefits: How Do Clinical Guidelines in Cardiovascular Medicine Promote the Health of an Individual?

Much of the hopes for precision medicine (as outlined Dr. Dr. Collins) are based on deriving large amounts of genomic, proteomic, epigenomic and metabolomic data on large cohorts of patients. It will take decades to build these cohorts and even more time to analyze them and derive specific conclusions on how these will help individualize treatments. However, there is a pressing need for how to individualize contemporary ...more »

Submitted by (@jalees)

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Goal 2: Reduce Human Disease

Reducing Atrial Fibrillation by treating modifiable risk factors

Would better management of modifiable risk factors, including obesity, sleep apnea, hypertension, hyperglycemia, and metabolic syndrome, reduce atrial fibrillation recurrence? Furthermore, what are the best methods to reduce the onset, hospitalization, and death due to atrial fibrillation, especially that associated with aging

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Goal 2: Reduce Human Disease

Should clinical primary prevention of ASCVD be guided by subclincal disease or estimated risk?

Current approaches to guiding use of clinical primary prevention interventions, e.g., statins and aspirin, are based on treating patients who exceed a specific risk threshold. The performance of risk estimation is good, but not outstanding, and results from clinical and population studies continue to support the value of new biomarkers. Given the widespread use of preventive therapies, the lack of untreated cohorts is ...more »

Submitted by (@david.goff)

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Goal 3: Advance Translational Research

Develop biomarker panel to predict CVD risk in -omics era

There is a need to utilize the vast data generated in -omics research to develop biomarker panels for better prediction of cardiovascular disease (CVD) risks. •Cardiovascular diseases develop over decades and different panels of markers may be required for different stages •Lead molecules as potential biomarkers need to be selected by a panel of experts •Standard procedures about sample preparation, data acquisition, ...more »

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Goal 2: Reduce Human Disease

Does lowering circulating lipoprotein(a) levels influence cardiovascular outcomes?

A comprehensive research strategy and plan is needed to determine the most efficient, safe, cost-effective and widely applicable strategy to decrease circulating levels of lipoprotein(a) and to determine whether lowering circulating lipoprotein(a) levels will reduce the risk of developing cardiovascular disease such as a heart attack or a stroke as well as the progression of atherosclerosis or aortic stenosis.

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Goal 2: Reduce Human Disease

Develop and validate a metric to address the full spectrum of patient-level comorbidities affecting critical illness

An individual metric to inform about the additive and not individual impact of comorbidities on critical illness and peri-operative mortality. For instance, we know the impact of COPD or MI or CKD on mortality after hemicolectomy, but not necessarily the additive impact of all three.

Submitted by (@greg.martin)

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Goal 2: Reduce Human Disease

Identifying the High Venous Thromboembolism-Risk Individual

Over 500,000 incident or recurrent venous thromboembolism (VTE) events occur annually in the US. Almost one-quarter of acute pulmonary embolism patients suffer sudden death. To improve survival, the occurrence of VTE must be reduced. However, the incidence of VTE has increased over the last 30 years. Moreover, near universal prophylaxis of patients hospitalized for surgery or for medical illness has not reduced hospitalization-associated ...more »

Submitted by (@heit.john)

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