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Synapse
January 1, 2024Flow22 citationsOpen Access

Cardiovascular fluid dynamics: a journey through our circulation

KMKarthik MenonZHZinan HuAMAlison L. Marsden

Key Result

Cardiovascular fluid dynamics and computational modeling play a central role in understanding the functioning of the human cardiovascular system and the progression of its associated diseases.

PICO

P
Population
Cardiovascular diseases

Limitations

  • Limited resolution of non-invasive in vivo flow imaging
  • Lack of validation of simulation tools with in vivo flow fields
  • Challenges in performing realistic and accurate simulations requiring patient-specific geometries and physiological wall motion

Abstract

This article presents a broad overview of the fluid mechanics of the human cardiovascular system. Beginning in the heart, we travel through the main features of our circulation to highlight important functions and diseases where fluid mechanics plays a central role. Of particular focus is the role of computational modelling in uncovering the dynamic flow phenomenon throughout our body, its association with cardiovascular disease mechanisms and progression and its importance in clinical treatment planning. We also emphasize the multiscale nature of the cardiovascular system, and associated challenges. The main aim of this review is to highlight progress and ongoing challenges in our understanding of cardiovascular haemodynamics, as well as the future outlook for translating the current state-of-the-art to widespread clinical application and improved patient outcomes.

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Cite This Study

Menon et al. (2024) conducted a review in Cardiovascular diseases. Cardiovascular fluid dynamics and computational modeling play a central role in understanding the functioning of the human cardiovascular system and the progression of its associated diseases.

synapsesocial.com/papers/6a15fdadb312764fb9127362https://doi.org/10.1017/flo.2024.5
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