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Peripheral Artery Disease (PAD) is characterized by narrowed arteries that diminish blood flow to the extremities. Effective management of PAD requires an interprofessional approach involving various healthcare professionals. The critical aspects of interprofessional care for PAD patients focus on risk factor modification, drug therapy, exercise therapy, nutrition therapy, critical limb ischemia care, and interventional radiology and surgical procedures.The primary treatment goal for PAD...
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Managing cardiomyopathy involves addressing underlying or precipitating causes, treating heart failure with medications, and implementing dietary changes and a balanced exercise and rest regimen.Lifestyle ModificationsCardiomyopathy patients should adopt a low-sodium diet to reduce fluid retention and manage heart failure. A personalized exercise and rest plan helps maintain physical fitness without overstraining the heart. Avoiding alcohol and tobacco is essential to prevent further damage to...
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Interprofessional care for coronary artery disease includes pharmacological therapy and revascularization procedures.Pharmacological therapy for Coronary Artery Disease (CAD) aims to manage symptoms, prevent complications, and improve patient outcomes through various classes of medications:Antiplatelet Agents:Aspirin and Clopidogrel: These medications inhibit platelet aggregation, preventing blood clots, which is crucial for avoiding heart attacks and strokes. Doctors often prescribe these...
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Cardiac catheterization is an invasive diagnostic technique used to identify and evaluate structural and functional diseases of the heart and major blood vessels. This technique diagnoses congenital heart disease, coronary artery disease, valvular heart disease, and coronary spasms and assesses ventricular function. It helps guide treatment decisions, including the need for revascularization procedures like percutaneous coronary intervention (PCI) or coronary artery bypass grafting (CABG) and...
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Cardiac Catheterization III: Left Heart Catheterization01:24

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Left heart catheterization is an invasive diagnostic procedure used to evaluate the function and structure of the left side of the heart. It is generally performed to diagnose and treat cardiovascular conditions such as valve abnormalities, coronary artery disease, and congenital heart defects.Diagnostic and therapeutic purposesLeft heart catheterization serves various diagnostic and therapeutic purposes, including:Assessing coronary artery bypass grafts.Evaluating coronary artery disease in...
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IntroductionThe management of Acute Coronary Syndrome (ACS) aims to minimize myocardial damage, preserve myocardial function, and prevent complications.Initial ManagementInpatient management involves continuous cardiac monitoring, preferably in an ICU, focusing on blood pressure, serum sodium, potassium, and creatinine levels, and urine output. Ongoing pharmacologic management is crucial for stabilizing the patient.Supplemental Oxygen: Administer supplemental oxygen if oxygen saturation is...
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Interventional Diagnostic Procedure: A Practical Guide for the Assessment of Coronary Vascular Function
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Precision Medicine in Interventional Cardiology.

Thijmen W Hokken1, Joana M Ribeiro1,2, Peter P De Jaegere1

  • 1Department of Cardiology, Thoraxcenter, Erasmus University Medical Center Rotterdam, the Netherlands.

Interventional Cardiology (London, England)
|May 9, 2020
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Summary

Precision medicine tailors treatments to individual patients using their unique characteristics. In silico testing, combining AI and computational modeling, helps predict risks and optimize therapies for better patient outcomes.

Keywords:
Precision medicinecomputational modellingheart team

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Area of Science:

  • Biomedical Engineering
  • Computational Biology
  • Pharmacogenomics

Background:

  • Precision medicine is gaining traction, focusing on individual patient variability.
  • It considers genetic, biomarker, phenotypic, and psychosocial factors for personalized therapy.
  • In silico testing is emerging as a key tool in healthcare.

Purpose of the Study:

  • To explain the principles of precision medicine.
  • To highlight the role of in silico testing in optimizing patient treatment.
  • To showcase the integration of AI and computational modeling in healthcare.

Main Methods:

  • Reviewing the concept of precision medicine and its patient-centric approach.
  • Describing in silico testing methodologies, including the Virtual Physiological Human project.
  • Explaining the application of artificial intelligence and computational modeling.

Main Results:

  • Precision medicine optimizes therapy by integrating diverse patient data.
  • In silico testing aids in predicting individual patient risk.
  • Computational models and AI can identify the most effective therapeutic strategies.

Conclusions:

  • Precision medicine offers a personalized approach to healthcare.
  • In silico methods are crucial for advancing risk prediction and treatment selection.
  • The integration of AI and computational modeling enhances therapeutic optimization.