Framingham Risk MCP for AI. Quantify Heart Disease Risk in Seconds.
Works with every AI agent you already use
…and any MCP-compatible client








How this MCP server connects to your AI agent
Framingham Cardiovascular Risk Calculator calculates a patient's estimated 10-year risk of heart attack or stroke and determines their vascular age.
This MCP uses established medical formulas, requiring inputs like blood pressure, cholesterol levels, smoking status, and diabetes history to give clinicians standardized health metrics.
What AI agents can do with Framingham Cardiovascular Risk Calculator Automation
Calculate ten year risk
Calculates a patient’s estimated 10-year cardiovascular probability using age, sex, cholesterol levels, blood pressure, smoking status, and diabetes status.
Estimate vascular age
Determines a patient's apparent arterial age based on total cholesterol, HDL-C, systolic blood pressure, and chronological age.
The tool calculates a patient’s probability of a major cardiac event over the next decade using seven key inputs.
It determines how old a person's arterial system appears to be, based on current cholesterol and blood pressure readings.
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What AI agents can do with Framingham Cardiovascular Risk Calculator MCP (2 Tools)
These tools allow you to calculate the 10-year cardiovascular risk percentage and estimate a patient's apparent arterial age using standard clinical inputs.
Make your AI actually useful.
Add this MCP to Claude, Cursor, or Windsurf and your AI stops guessing. It gets real tools to look things up, take action, and handle the stuff you keep doing by hand.
Start using Framingham Cardiovascular Risk Calculator on VinkiusCalculate Ten Year Risk
Calculates a patient’s estimated 10-year cardiovascular probability using age, sex, cholesterol levels, blood pressure, smoking status, and...
Estimate Vascular Age
Determines a patient's apparent arterial age based on total cholesterol, HDL-C...
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Built on the Model Context Protocol (MCP) for Claude, ChatGPT, Cursor, and more
The Model Context Protocol standardizes how applications expose capabilities to LLMs. Instead of operating in isolation, your AI gains direct access to external platforms, live data, and real-world actions through secure, standardized connections.
This connection provides 2 powerful capabilities that interface natively with Claude, ChatGPT, Cursor, and other compatible AI platforms. No middleware. No custom integration required.
The Struggle of Manual Risk Assessment, Solved with Vinkius AI Gateway
Right now, determining true cardiovascular risk means pulling together vitals sheets, cholesterol reports, and lifestyle questionnaires. You're running multiple calculations—one for the 10-year probability, another for vascular age—and constantly cross-referencing which variables belong where. It’s a tedious process that slows down patient intake.
With this MCP, you simply list all the known metrics: age, sex, blood pressure, total cholesterol, and smoking status. Your agent handles the complex math behind the Framingham model instantly. You get clear, definitive risk percentages or estimated ages—metrics that matter.
Get a Dual-View Assessment with Framingham Risk Calculator
You no longer have to manually calculate separate scores for vascular age and 10-year probability. The platform coordinates the inputs, allowing you to run both estimate_vascular_age and calculate_ten_year_risk in one session.
The result isn't just data points; it’s a comprehensive narrative of risk that lets you guide patient care immediately. It changes how quickly and confidently you can diagnose.
What your AI can actually do with this
Knowing a patient’s actual cardiovascular risk means more than just taking vitals. The Framingham model gives doctors a reliable way to predict the probability of major cardiac events over ten years. This MCP helps you quantify that risk using detailed medical data, letting you move past general advice and toward actionable diagnoses.
You input standard metrics—age, blood pressure, cholesterol, lifestyle factors—and get two key numbers: your 10-year risk percentage and a measure of arterial wear known as vascular age. All these calculations are housed within the Vinkius catalog, giving you access to standardized medical assessments without needing complex local software. You just connect your preferred AI client and start diagnosing.
019ecb73-a2f8-735b-9182-626550b794ca Here's how it actually works
The bottom line is that you get structured, evidence-based risk metrics instantly, without manually running calculations on separate platforms.
You tell your AI client which calculation you need—either the 10-year risk or the vascular age estimate.
Your agent prompts you for the required data points, like total cholesterol, systolic blood pressure, and whether the patient smokes or has diabetes.
The MCP runs these inputs through the Framingham model and returns a clear percentage risk score or an estimated age in years.
Who is this actually for?
Cardiologists and primary care physicians who need rapid, standardized risk stratification. It’s also perfect for advanced medical students or health educators needing reliable calculation tools.
Uses the MCP to calculate a patient's 10-year cardiovascular probability during an annual physical, helping guide preventative lifestyle changes.
Runs the estimate_vascular_age tool quickly at intake to spot patients whose circulatory health is worse than their chronological age suggests.
Demonstrates the Framingham model by calculating sample risk scores for community members, making complex data easy to understand.
What Changes When You Connect
Determine 10-Year Probability: Use calculate_ten_year_risk to get a standardized, objective percentage showing a patient's likelihood of major cardiac events over the next decade. No guesswork here.
Gauge Arterial Health: Run estimate_vascular_age to see if your patient’s blood vessels appear older or younger than they actually are. This is critical for advanced diagnosis.
Consolidate Inputs: Instead of cross-referencing multiple guidelines, this MCP takes all necessary metrics—smoking status, diabetes, cholesterol—in one place for a full picture.
Speed Up Consultations: Your agent handles the complex math instantly. You spend time talking to the patient instead of calculating risk scores in an Excel sheet.
Standardized Metrics: The calculations follow established medical guidelines (Framingham), giving you results that are recognized and repeatable across different care settings.
See it in action
Initial Annual Checkup
A primary care physician needs to know if a 58-year-old patient is high risk. They ask their agent to run both the calculate_ten_year_risk and estimate_vascular_age tools, getting two immediate numbers to guide medication recommendations.
High-Risk Follow-Up
A nurse needs to assess a patient who smokes and has high cholesterol. They use calculate_ten_year_risk with the latest vitals to see if the risk score increased since last month, signaling an urgent need for intervention.
Preventative Screening
A health educator uses estimate_vascular_age on a young patient. The results show their vascular age is 10 years higher than expected, prompting the group to focus on diet and blood pressure management immediately.
The honest tradeoffs
Treating symptoms with guesswork
Guessing that high cholesterol means high risk without knowing if the patient is diabetic or what their actual systolic blood pressure is.
Use calculate_ten_year_risk. It forces you to input all necessary metrics—age, sex, total cholesterol, HDL-C, SBP, smoking status, and diabetes status—for a comprehensive score.
Only checking one marker
Checking blood pressure alone and assuming the patient is low risk, even if their cholesterol levels are significantly elevated.
You must run estimate_vascular_age. It combines total cholesterol, HDL-C, SBP, and age to give a much more accurate picture of vascular wear.
Using old formulas
Relying on outdated risk scoring methods that don't account for smoking history or current diabetes status.
Always use calculate_ten_year_risk. It incorporates the full suite of modern variables, including smoking and diabetes status.
When It Fits, When It Doesn't
Use this MCP if you need a standardized, quantitative measure of cardiovascular health risk based on established formulas. If your goal is simply to track blood pressure changes or manage medication dosages, this tool isn't enough; look for specialized monitoring tools instead. You must use calculate_ten_year_risk when you need the full 10-year probability score because it requires inputs like smoking status and diabetes status that estimate_vascular_age ignores. Only use estimate_vascular_age if your primary concern is assessing arterial damage relative to chronological age, making it a quick check for vascular stress.
Questions you might have
What does calculate_ten_year_risk require? +
It requires age, sex, total cholesterol, HDL-C, systolic blood pressure, smoking status, and diabetes status. You need all these inputs to get the full 10-year probability score.
Can I just check my vascular age with estimate_vascular_age? +
Yes, you can run estimate_vascular_age if your main concern is arterial wear. Remember it uses total cholesterol, HDL-C, SBP, and age for that specific calculation.
Is this MCP better than using a generic calculator? +
Yes. This MCP follows the standardized Framingham model, ensuring your results are based on established medical guidelines, which is more reliable than general online tools.
Do I need to provide smoking status for calculate_ten_year_risk? +
Yes, providing accurate smoking status is mandatory. The model uses this variable because it significantly affects the calculated 10-year risk percentage.
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