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January 1, 1998IEEE Engineering in Medicine and Biology Magazine7 citations

Exploring in vivo blood flow dynamics

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GYGuang‐Zhong Yang

Key Result

MR phase velocity mapping and quantitative flow imaging provide detailed in vivo blood flow information, complementing computational fluid dynamics to understand cardiovascular mechanics.

Key Points

  • The aim is to explore in vivo blood flow dynamics using advanced MR imaging techniques, focusing on quantification and analysis.
  • Utilized MR phase velocity mapping for noninvasive flow quantification.
  • Analyzed in vivo flow patterns to provide detailed insights into blood dynamics.
  • Employed computational fluid dynamics to enhance understanding of cardiovascular mechanics.
  • Quantitative MR velocity imaging successfully provided detailed blood flow information.
  • Imaging techniques facilitated noninvasive acquisition of complex flow patterns.
  • Advancements in flow imaging correlate with better understanding of cardiovascular disease origins.

Structured PICO

I
Intervention
MR phase velocity mapping / MR flow imaging techniques

MR flow imaging techniques provide detailed in vivo blood flow information that complements computational fluid dynamics for understanding cardiovascular mechanics.

Abstract

With the development of improved MR imaging techniques, there has been a resurgence of interest since the early 1980s. Today, MR flow imaging techniques are regarded as important clinical tools for providing detailed in vivo blood flow information. MR phase velocity mapping is a versatile noninvasive flow quantification method that is well suited for analyzing in vivo flow patterns. Since the introduction of quantitative MR velocity imaging methods, clinical and research applications of these techniques have flourished, enabling noninvasive acquisition of detailed quantitative blood flow information. The success of quantitative flow imaging complements recent advances in computational fluid dynamics, which may provide further understanding of cardiovascular mechanics and the genesis and development of cardiovascular disease.

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Cite This Study

Guang‐Zhong Yang (1998) conducted a review in Cardiovascular disease. MR flow imaging techniques was evaluated. MR phase velocity mapping and quantitative flow imaging provide detailed in vivo blood flow information, complementing computational fluid dynamics to understand cardiovascular mechanics.

synapsesocial.com/papers/6a12de1016f0ac689b9e4397https://doi.org/10.1109/51.677171
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