Noninvasive imaging modalities offer the possibility to dynamically evaluate cardiac motion during the cardiac cycle by means of ECG-gated acquisitions. Such motion characterization along with orientation, segmentation preprocessing, and ultimately, phase analysis, can provide quantitative estimates of ventricular mechanical synchrony. Current evidence on the role of mechanical synchrony evaluation is mainly available for echocardiography and gated single-photon emission computed tomography, but less is known about the utilization of gated positron emission tomography (PET). Although data available are sparse, there is indication that mechanical synchrony evaluation can be of diagnostic and prognostic values in patients with known or suspec...
Background It is thought that heart failure (HF) patients may benefit from the evaluation of mechani...
Abstract Background Myocardial perfusion imaging (MPI) with single-photon emission computed tomograp...
Cardiac autonomic innervation is an integrative part of the physiology of the heart. This chapter re...
Noninvasive imaging modalities offer the possibility to dynamically evaluate cardiac motion during t...
Noninvasive imaging modalities offer the possibility to dynamically evaluate cardiac motion during t...
Background: The outcome of patients with severe ischaemic left ventricular (LV) dysfunction is deter...
Background: It is thought that heart failure (HF) patients may benefit from the evaluation of mechan...
BACKGROUND Due to partly conflicting studies, further research is warranted with the QGS software pa...
Although many patients with heart failure benefit from cardiac resynchronization therapy (CRT), pred...
Background: Recently, the phase analysis of gated single-photon emission computed tomography (SPECT)...
ObjectivesThe purpose of this study was to compare left ventricular (LV) dyssynchrony assessment by ...
Cardiac mechanical dyssynchrony describes the variation in the timing of contraction or relaxation w...
The evaluation of stress-induced myocardial perfusion defects by non-invasive myocardial perfusion i...
Objectives: The purpose of this study is to develop a right-ventricular (RV) phase analysis tool whi...
Phase analysis is a technique used to assess left ventricular mechanical dyssynchrony (LVMD) in nucl...
Background It is thought that heart failure (HF) patients may benefit from the evaluation of mechani...
Abstract Background Myocardial perfusion imaging (MPI) with single-photon emission computed tomograp...
Cardiac autonomic innervation is an integrative part of the physiology of the heart. This chapter re...
Noninvasive imaging modalities offer the possibility to dynamically evaluate cardiac motion during t...
Noninvasive imaging modalities offer the possibility to dynamically evaluate cardiac motion during t...
Background: The outcome of patients with severe ischaemic left ventricular (LV) dysfunction is deter...
Background: It is thought that heart failure (HF) patients may benefit from the evaluation of mechan...
BACKGROUND Due to partly conflicting studies, further research is warranted with the QGS software pa...
Although many patients with heart failure benefit from cardiac resynchronization therapy (CRT), pred...
Background: Recently, the phase analysis of gated single-photon emission computed tomography (SPECT)...
ObjectivesThe purpose of this study was to compare left ventricular (LV) dyssynchrony assessment by ...
Cardiac mechanical dyssynchrony describes the variation in the timing of contraction or relaxation w...
The evaluation of stress-induced myocardial perfusion defects by non-invasive myocardial perfusion i...
Objectives: The purpose of this study is to develop a right-ventricular (RV) phase analysis tool whi...
Phase analysis is a technique used to assess left ventricular mechanical dyssynchrony (LVMD) in nucl...
Background It is thought that heart failure (HF) patients may benefit from the evaluation of mechani...
Abstract Background Myocardial perfusion imaging (MPI) with single-photon emission computed tomograp...
Cardiac autonomic innervation is an integrative part of the physiology of the heart. This chapter re...