A review on the mechanical characterization of human atherosclerotic plaque

Subraya Krishna Bhat1

  • 1Department of Mechanical and Industrial Engineering, Manipal Institute of Technology, Manipal Academy of Higher Education, Manipal, India.

Insights

Understanding the mechanical properties of human atherosclerotic plaque is crucial for cardiovascular disease management. This review highlights advanced techniques for plaque characterization, aiding in risk stratification and targeted interventions.

Area of Science:

  • Biomedical Engineering
  • Cardiovascular Research
  • Materials Science

Background:

  • Atherosclerosis is a leading cause of global mortality, characterized by arterial plaque buildup.
  • Plaque rupture leads to severe clinical events like heart attack and stroke.
  • Accurate plaque characterization is vital for effective disease management strategies.

Purpose of the Study:

  • To provide a comprehensive overview of the mechanical characterization of human atherosclerotic plaque.
  • To emphasize the importance of understanding plaque mechanics for pathophysiology and clinical implications.
  • To review advanced techniques for assessing plaque mechanical behavior.

Main Methods:

  • Review of diverse technical literature on mechanical characterization of atherosclerotic plaque.
  • Emphasis on experimental and computational hybrid approaches.
  • In-silico analysis for investigating mechanical behavior, especially in soft fibrotic plaques.

Main Results:

  • Mechanical characterization provides critical insights into plaque pathophysiology.
  • Advanced techniques offer detailed understanding of complex plaque mechanical properties.
  • In-silico methods are valuable for analyzing mechanical behavior, particularly in softer plaque tissues.

Conclusions:

  • Accurate assessment of atherosclerotic plaque mechanical properties is essential for improved risk stratification.
  • Understanding plaque mechanics aids in patient management and the development of targeted interventions.
  • Advancing knowledge in this area can help mitigate the global burden of cardiovascular diseases.

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