Spectral pulsed tissue doppler imaging in diastole: A tool to increase our insight in and assessment of diastolic relaxation of the left ventricle
Conventional Doppler echocardiography offers an indirect assessment of left ventricular (LV) diastolic function, hampered by preload dependency. Tissue Doppler imaging (TDI) is a tool to study diastolic function in a more direct and less preload-dependent manner. The Medline database has been search...
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Published in | The American heart journal Vol. 146; no. 3; pp. 411 - 419 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
New York, NY
Mosby, Inc
01.09.2003
Elsevier Elsevier Limited |
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Abstract | Conventional Doppler echocardiography offers an indirect assessment of left ventricular (LV) diastolic function, hampered by preload dependency. Tissue Doppler imaging (TDI) is a tool to study diastolic function in a more direct and less preload-dependent manner.
The Medline database has been searched for literature on TDI for the analysis of diastolic function. A secondary search reviewed the relevant references related to TDI or diastolic function in general.
TDI measures myocardial velocities with a high temporal and velocity resolution but lacks spatial information. In particular, the velocity of early diastolic wall motion (E
m) and its timing are promising indices of local myocardial relaxation. E
m at the mitral annulus offers fair estimates of ventricular relaxation, relatively independent of preload and systolic function. Combined with early transmitral flow velocity (E), detection of pseudo-normalized filling patterns and estimation of filling pressures are enhanced by E/E
m.
TDI has an emerging role in the study and assessment of diastolic function. However, TDI-derived information needs to be integrated with other echocardiographic data because single diagnostic accuracy remains unsatisfactory. |
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AbstractList | Background Conventional Doppler echocardiography offers an indirect assessment of left ventricular (LV) diastolic function, hampered by preload dependency. Tissue Doppler imaging (TDI) is a tool to study diastolic function in a more direct and less preload-dependent manner. Methods The Medline database has been searched for literature on TDI for the analysis of diastolic function. A secondary search reviewed the relevant references related to TDI or diastolic function in general. Results TDI measures myocardial velocities with a high temporal and velocity resolution but lacks spatial information. In particular, the velocity of early diastolic wall motion (Em) and its timing are promising indices of local myocardial relaxation. Emat the mitral annulus offers fair estimates of ventricular relaxation, relatively independent of preload and systolic function. Combined with early transmitral flow velocity (E), detection of pseudo-normalized filling patterns and estimation of filling pressures are enhanced by E/Em. Conclusion TDI has an emerging role in the study and assessment of diastolic function. However, TDI-derived information needs to be integrated with other echocardiographic data because single diagnostic accuracy remains unsatisfactory. Conventional Doppler echocardiography offers an indirect assessment of left ventricular (LV) diastolic function, hampered by preload dependency. Tissue Doppler imaging (TDI) is a tool to study diastolic function in a more direct and less preload-dependent manner.BACKGROUNDConventional Doppler echocardiography offers an indirect assessment of left ventricular (LV) diastolic function, hampered by preload dependency. Tissue Doppler imaging (TDI) is a tool to study diastolic function in a more direct and less preload-dependent manner.The Medline database has been searched for literature on TDI for the analysis of diastolic function. A secondary search reviewed the relevant references related to TDI or diastolic function in general.METHODSThe Medline database has been searched for literature on TDI for the analysis of diastolic function. A secondary search reviewed the relevant references related to TDI or diastolic function in general.TDI measures myocardial velocities with a high temporal and velocity resolution but lacks spatial information. In particular, the velocity of early diastolic wall motion (E(m)) and its timing are promising indices of local myocardial relaxation. E(m) at the mitral annulus offers fair estimates of ventricular relaxation, relatively independent of preload and systolic function. Combined with early transmitral flow velocity (E), detection of pseudo-normalized filling patterns and estimation of filling pressures are enhanced by E/E(m).RESULTSTDI measures myocardial velocities with a high temporal and velocity resolution but lacks spatial information. In particular, the velocity of early diastolic wall motion (E(m)) and its timing are promising indices of local myocardial relaxation. E(m) at the mitral annulus offers fair estimates of ventricular relaxation, relatively independent of preload and systolic function. Combined with early transmitral flow velocity (E), detection of pseudo-normalized filling patterns and estimation of filling pressures are enhanced by E/E(m).TDI has an emerging role in the study and assessment of diastolic function. However, TDI-derived information needs to be integrated with other echocardiographic data because single diagnostic accuracy remains unsatisfactory.CONCLUSIONTDI has an emerging role in the study and assessment of diastolic function. However, TDI-derived information needs to be integrated with other echocardiographic data because single diagnostic accuracy remains unsatisfactory. Conventional Doppler echocardiography offers an indirect assessment of left ventricular (LV) diastolic function, hampered by preload dependency. Tissue Doppler imaging (TDI) is a tool to study diastolic function in a more direct and less preload-dependent manner. The Medline database has been searched for literature on TDI for the analysis of diastolic function. A secondary search reviewed the relevant references related to TDI or diastolic function in general. TDI measures myocardial velocities with a high temporal and velocity resolution but lacks spatial information. In particular, the velocity of early diastolic wall motion (E m) and its timing are promising indices of local myocardial relaxation. E m at the mitral annulus offers fair estimates of ventricular relaxation, relatively independent of preload and systolic function. Combined with early transmitral flow velocity (E), detection of pseudo-normalized filling patterns and estimation of filling pressures are enhanced by E/E m. TDI has an emerging role in the study and assessment of diastolic function. However, TDI-derived information needs to be integrated with other echocardiographic data because single diagnostic accuracy remains unsatisfactory. Conventional Doppler echocardiography offers an indirect assessment of left ventricular (LV) diastolic function, hampered by preload dependency. Tissue Doppler imaging (TDI) is a tool to study diastolic function in a more direct and less preload-dependent manner. The Medline database has been searched for literature on TDI for the analysis of diastolic function. A secondary search reviewed the relevant references related to TDI or diastolic function in general. TDI measures myocardial velocities with a high temporal and velocity resolution but lacks spatial information. In particular, the velocity of early diastolic wall motion (E(m)) and its timing are promising indices of local myocardial relaxation. E(m) at the mitral annulus offers fair estimates of ventricular relaxation, relatively independent of preload and systolic function. Combined with early transmitral flow velocity (E), detection of pseudo-normalized filling patterns and estimation of filling pressures are enhanced by E/E(m). TDI has an emerging role in the study and assessment of diastolic function. However, TDI-derived information needs to be integrated with other echocardiographic data because single diagnostic accuracy remains unsatisfactory. |
Author | Jaarsma, Wybren De Boeck, Bart W.L Oh, Jae K Cramer, Maarten-Jan M van der Aa, Ronald P.L.M |
Author_xml | – sequence: 1 givenname: Bart W.L surname: De Boeck fullname: De Boeck, Bart W.L organization: Department of Non-invasive Cardiac Imaging, University Medical Centre, Heart Lung Centre Utrecht, Utrecht, The Netherlands – sequence: 2 givenname: Maarten-Jan M surname: Cramer fullname: Cramer, Maarten-Jan M email: m.j.m.cramer@hli.azu.nl organization: Department of Non-invasive Cardiac Imaging, University Medical Centre, Heart Lung Centre Utrecht, Utrecht, The Netherlands – sequence: 3 givenname: Jae K surname: Oh fullname: Oh, Jae K organization: Division of Cardiovascular Diseases and Internal Medicine, Mayo Clinic and Mayo Foundation, Rochester, Minn, USA – sequence: 4 givenname: Ronald P.L.M surname: van der Aa fullname: van der Aa, Ronald P.L.M organization: Department of Non-invasive Cardiac Imaging, University Medical Centre, Heart Lung Centre Utrecht, Utrecht, The Netherlands – sequence: 5 givenname: Wybren surname: Jaarsma fullname: Jaarsma, Wybren organization: St Antonius Hospital, Nieuwegein, The Netherlands |
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Keywords | Sonography Doppler ultrasound study Relaxation Tissue Diastole Heart disease Cardiovascular disease Medical imagery Increase Left ventricle |
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Snippet | Conventional Doppler echocardiography offers an indirect assessment of left ventricular (LV) diastolic function, hampered by preload dependency. Tissue Doppler... Background Conventional Doppler echocardiography offers an indirect assessment of left ventricular (LV) diastolic function, hampered by preload dependency.... |
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SubjectTerms | Accuracy Biological and medical sciences Cardiology Cardiology. Vascular system Cardiomyocytes Coronary Disease - diagnostic imaging Coronary Disease - physiopathology Diastole - physiology Echocardiography, Doppler - methods Heart failure Humans Medical sciences Mitral Valve - diagnostic imaging Mitral Valve - physiology Myocardial Contraction - physiology Myocardial Ischemia - diagnostic imaging Myocardial Ischemia - physiopathology Ventricular Function, Left - physiology |
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Title | Spectral pulsed tissue doppler imaging in diastole: A tool to increase our insight in and assessment of diastolic relaxation of the left ventricle |
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