Artificial Intelligence-Driven Hypertension Management: Implications for Quality Improvement and Prevention of

Laura Ramlawi1, Serge Sicouri2, Vasiliki Androutsopoulou3

  • 1Department of Science, Marianopolis College, Westmount, QC H3Y 1X9, Canada.

Insights

Artificial intelligence (AI) can enhance hypertension management by improving early detection and risk stratification. AI applications aim to shift care from reactive blood pressure control to proactive organ protection, requiring careful implementation and evaluation.

Area of Science:

  • Cardiovascular Medicine
  • Medical Informatics
  • Quality Improvement

Background:

  • Hypertension is a major modifiable risk factor for cardiovascular disease, yet blood pressure control remains suboptimal.
  • Artificial intelligence (AI) shows promise in cardiovascular medicine, but applications in hypertension often lack real-world outcome data.
  • Current AI research in hypertension focuses on algorithmic performance rather than clinical integration and patient benefits.

Purpose of the Study:

  • To review AI-driven hypertension management, focusing on quality improvement and end-organ damage prevention.
  • To evaluate AI applications in hypertension detection, risk stratification, and clinical workflow integration.
  • To explore AI's potential beyond blood pressure reduction to predict organ damage and adverse cardiovascular events.

Main Methods:

  • Review of current AI applications including machine learning, deep learning, natural language processing, and imaging analytics.
  • Critical evaluation of AI integration into clinical workflows, emphasizing therapeutic inertia and primary care.
  • Assessment of AI's role in continuous quality improvement frameworks for hypertension management.

Main Results:

  • AI tools can aid in hypertension detection, risk stratification, and identifying patients at risk for hypertensive heart disease, heart failure, renal dysfunction, and cerebrovascular events.
  • Implementation challenges include external validation, algorithmic bias, workflow integration, and regulatory hurdles.
  • AI offers a shift towards proactive organ protection in hypertension management.

Conclusions:

  • AI has the potential to transform hypertension management towards proactive organ protection.
  • Successful AI deployment requires addressing implementation challenges and ensuring equitable access.
  • AI-driven interventions must be rigorously evaluated against non-AI strategies to demonstrate added clinical value.

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