Key result
Recent advances in echocardiography, including contrast, 3D imaging, and strain, improve the accuracy and reproducibility of cardiac function evaluation in clinical practice.
Recent advances in echocardiography technologies improve diagnostic quality and reproducibility, and clinicians are encouraged to adopt them.
Supports advanced echocardiography adoption in practice; leaves open outcome impact in prospective studies.
Echocardiography is the mainstay of cardiovascular diagnostics, and is the most performed test for the evaluation of cardiac function. Critical and costly management decisions are based on quantification of left ventricular volumes and ejection fraction. Recent advances in echocardiography, such as microsphere contrast echocardiography for left ventricular opacification and perfusion imaging, three-dimensional transthoracic and trans-oesophageal imaging, strain and tissue Doppler imaging, all contribute to improving accuracy and reproducibility of these important measurements. Such techniques are now routinely available on standard echocardiography equipment in Australian centres for daily use. Hand-carried ultrasound devices have been developed, which are portable, are affordable and offer increased availability of echocardiography to the wider community. Clinicians should be actively encouraged to adopt these technologies to improve the diagnostic quality and reproducability of echocardiography for our patients. This article provides an overview of important recent advances in echocardiographic imaging with an emphasis on their role in clinical practice today.
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Hudaverdi et al. (2010) conducted a review in Cardiovascular diagnostics. Recent advances in echocardiography (contrast, 3D, strain, tissue Doppler, hand-carried ultrasound) was evaluated. Recent advances in echocardiography, including contrast, 3D imaging, and strain, improve the accuracy and reproducibility of cardiac function evaluation in clinical practice.
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