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September 1, 2002IEEE Transactions on Medical Imaging144 citations

Echocardiographic strain and strain-rate imaging: a new tool to study regional myocardial function

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JDJan D’hoogeBBBart BijnensJTJan Thoen

Key Result

Ultrasonic strain and strain-rate imaging provide a feasible and clinically valuable method for the quantitative assessment of regional myocardial function.

Key Points

  • To review the principles, technical methodologies, clinical validation, and diagnostic relevance of ultrasonic strain and strain-rate imaging for assessing regional myocardial function.
  • Evaluated technical aspects of data acquisition, strain-rate estimation, signal postprocessing, and parameter extraction in cardiac ultrasound.
  • Reviewed clinical validation data and diagnostic applications across cardiac pathologies using single-view and multi-transducer configurations.
  • Ultrasonic strain and strain-rate imaging provide quantitative assessment of regional heart function beyond standard grayscale velocity measures.
  • Current clinical setups primarily record one-dimensional deformation requiring combined transducer angles, but single-acquisition multidimensional tracking is feasible in vivo.

Structured PICO

E
Exposure
Ultrasonic strain and strain-rate imaging

Echocardiographic strain and strain-rate imaging provide a feasible and clinically valuable method for quantifying regional myocardial function.

Limitations

  • In the clinical setting, these techniques currently only allow one component of the true three-dimensional deformation to be measured.

Abstract

Ultrasonic imaging is the noninvasive clinical imaging modality of choice for diagnosing heart disease. At present, two-dimensional ultrasonic grayscale images provide a relatively cheap, fast, bedside method to study the morphology of the heart. Several methods have been proposed to assess myocardial function. These have been based on either grayscale or motion (velocity) information measured in real-time. However, the quantitative assessment of regional myocardial function remains an important goal in clinical cardiology. To do this, ultrasonic strain and strain-rate imaging have been introduced. In the clinical setting, these techniques currently only allow one component of the true three-dimensional deformation to be measured. Clinical, multidimensional strain (rate) information can currently thus only be obtained by combining data acquired using different transducer positions. Nevertheless, given the appropriate postprocessing, the clinical value of these techniques has already been shown. Moreover, multidimensional strain and strain-rate estimation of the heart in vivo by means of a single ultrasound acquisition has been shown to be feasible. In this paper, the new techniques of ultrasonic strain rate and strain imaging of the heart are reviewed in terms of definitions, data acquisition, strain-rate estimation, postprocessing, and parameter extraction. Their clinical validation and relevance will be discussed using clinical examples on relevant cardiac pathology. Based on these examples, suggestions are made for future developments of these techniques.

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Cite This Study

D’hooge et al. (2002) conducted a review in Heart disease. Ultrasonic strain and strain-rate imaging was evaluated. Ultrasonic strain and strain-rate imaging provide a feasible and clinically valuable method for the quantitative assessment of regional myocardial function.

synapsesocial.com/papers/6a89aec84c30e1095aec8703https://doi.org/10.1109/tmi.2002.804440
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Regional Strain and Strain Rate Measurements by Cardiac Ultrasound: Principles, Implementation and Limitations2000 · 992 citations
  2. 2Strain and Strain Rate Imaging by Echocardiography - Basic Concepts and Clinical Applicability2009 · 449 citations
  3. 3Clinical applications and prognostic implications of strain and strain rate imaging2015 · 11 citations
  4. 4Recent advances in echocardiography: strain and strain rate imaging2016 · 29 citations
  5. 5The strain and strain rate imaging paradox in echocardiography: overabundant literature in the last two decades but still uncertain clinical utility in an individual case2020 · 27 citations