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Updated: Apr 11, 2026

In Vivo Quantitative Assessment of Myocardial Structure, Function, Perfusion and Viability Using Cardiac Micro-computed Tomography
Published on: February 16, 2016
[The use of novel technologies for assessment of myocardial function in clinical practice]
Insights
Advanced imaging techniques like tissue Doppler and speckle tracking offer quantitative analysis of myocardial function for heart failure (HF) patients. These methods aid in early diagnosis, assessing cardiac remodeling, and predicting treatment response.
Area of Science:
- Cardiology
- Medical Imaging
- Physiology
Background:
- Cardiac remodeling and myocardial contractility are key prognostic factors in heart failure (HF).
- New visualization methods for myocardial motion are emerging but underutilized in clinical practice.
- Accurate assessment of cardiac function is crucial for diagnosis and treatment monitoring.
Purpose of the Study:
- To summarize indicators of systolic and diastolic dysfunction in various pathologies.
- To present the assessment of mechanical dyssynchrony using tissue Doppler (TD) and speckle tracking (2D/3D).
- To highlight the importance of quantitative myocardial motion analysis for clinical practice and future method development.
Main Methods:
- Evaluation of systolic and diastolic functions using tissue Doppler (TD).
- Analysis of 2D and 3D speckle tracking data for myocardial motion.
- Quantitative assessment of mechanical dyssynchrony.
Main Results:
- TD, 2D, and 3D speckle tracking provide quantitative analysis of myocardial motion.
- These methods aid in differential diagnosis and understanding of cardiac dysfunction.
- Most analyzed parameters are nonspecific but show unidirectional changes with remodeling.
Conclusions:
- Myocardial function analysis enables early diagnostics, detection of subclinical dysfunction, and prediction of treatment response.
- These advanced imaging techniques are valuable for monitoring heart failure treatment.
- Summarizing current knowledge is vital for advancing the clinical application of these methods.
Abstract:
Key factors defining the prognosis of patients with heart failure (HF) are cardiac remodeling and myocardial contractility. New methods of visualization of myocardial motion gave impulse to research in the area of heart physiology and pathology. However in clinical practice these methods are still rarely used. Evaluation of systolic and diastolic functions based on tissue Doppler (TD), 2D and 3D speckle tracking data provides information on the pressure of left ventricular (LV) filling and enables carrying out differential diagnosis between constrictive pericarditis and myocardial diseases with diastolic dysfunction, dyspnea caused by cardiac and extracardiac causes. It also helps to understand physiology of systolic and diastolic dysfunction, impairment of LV pump function. It also enables monitoring response to HF treatment. Myocardial function analysis gives an opportunity to carry out early diagnostics, to detect subclinical LV dysfunction, to detect dyssynchrony and to predict response to resynchronising therapy. In this article we sum up indicators of systolic and diastolic dysfunction in various types of pathology and present assessment of mechanical dyssynchrony with the aid of TD, 2D and 3D speckle tracking. It is stressed that these methods allow carrying out quantitative analysis of myocardial motion. Practically all analyzed parameters are nonspecific and similar to parameters of remodeling change unidirectionally irrespective of pathology. The aim of this article is to summarize available data and knowledge on the determination of myocardial function. This is important for clinical practice and understanding of future development of the above methods.
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