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Alessandro Salustri

Publications and source records attributed to Alessandro Salustri.

10 recordsLinked to original sources

The DAVES (Disfunzione Asintomatica VEntricolare Sinistra) study by the Italian Society of Cardiovascular Echography: rationale and design.

BACKGROUND: Diagnosis of heart failure (HF) is based on clinical signs, instrumental findings and response to treatment. The recent classification of the European Society of Cardiology identifies early stages of ventricular dysfunction not associated with symptoms of HF (Stage A-B). However, only few data are available on the prevalence and prognostic value of asymptomatic left ventricular dysfunction. METHODS: The SIEC (Società Italiana di Ecografia Cardiovascolare - Italian Society of Cardiovascular Echography) has planned a national multicenter observational study aimed to assess: (1) the prevalence of left ventricular (LV) systolic and diastolic dysfunction in asymptomatic subjects without a history of HF (transversal phase); (2) the relationship between cardiovascular risk factors and LV asymptomatic dysfunction; (3) the relationship between comorbidities and LV asymptomatic dysfunction; and (4) the incidence of cardiac events at follow-up (longitudinal phase). Data from 75 echocardiographic laboratories were recorded, merged, and analyzed using a dedicated software. CURRENT STATUS: Recruitment started in June 2003 and closed in February 2004. Overall, 16 099 patients (men, 8496; women, 7603; male: female ratio, 1.11) have been screened and 6679 (men, 3504; women, 3175; male: female ratio, 1.10) were enrolled. The follow-up is currently ongoing.

Cardiac Output, Low↗

Echocardiographic estimation of pulmonary pressures.

Cardiac ultrasound plays a pivotal role in assessing pulmonary artery pressures. Estimation of right atrial pressure can be derived from the dimensions and respiratory variation of the inferior vena cava and Doppler modalities provide an accurate and comprehensive evaluation of right ventricular and pulmonary artery pressures. Peak pulmonary artery pressure can be calculated from continuous wave Doppler sampling of the tricuspid regurgitant jet, while pulsed wave Doppler sampling of the pulmonary regurgitant jet allows evaluation of mean and diastolic pulmonary artery pressures. In patients with tricuspid regurgitation that is either absent or not adequately detectable by Doppler method, Doppler right ventricular outflow tract investigation can be helpful. Recent data indicate that analysis of right ventricular function using myocardial Doppler echocardiography may also provide new insights for the non-invasive estimation of pulmonary artery pressures. In particular, right ventricular isovolumic relaxation time measured by myocardial Doppler echocardiography at the tricuspid annulus may provide an alternative method for estimating pulmonary artery pressure, especially in patients with tricuspid regurgitation not detectable or spectral Doppler not properly interpretable.

Atrial Function, Right↗

[Mitral valve prolapse].

Mitral valve prolapse (MVP) is still a clinical challenging problem. In this report, we review the main characteristics of this entity. Epidemiology of MVP, which relies on the diagnostic criteria adopted, and the incidence of complications, both arrhythmic and structural, are influenced by the characteristics of the population studied, which may lead to bias in data interpretation. Even the definition of MVP may differ according to the cardiologist's or cardiac surgeon's point of view. Usually, cardiologists define MVP as the protrusion of all or part of the mitral leaflets into the left atrium, independent of maintenance of coaptation. Therefore, using this definition, mitral regurgitation is considered as a complication rather than a diagnostic criterion. Arrhythmias, either supraventricular or ventricular, are other possible complications, mostly not life-threatening and associated with myxomatous degeneration of the valve. Diagnosis of MVP is based on echocardiography, which provides detailed anatomic and functional evaluation of the affected valve. Leaflet thickness and motion as well as presence and severity of mitral regurgitation can be assessed, with important diagnostic and prognostic implications. Echocardiographic evaluation of the mitral valve requires a systematic approach in order to define the leaflet/scallop involved and the mechanisms of mitral regurgitation. To this aim, three-dimensional reconstruction may add further insights into objective rendering of mitral valve pathology. Finally, surgical timing in mitral regurgitation due to MVP is an evolving issue and the likelihood of surgical repair is a crucial factor in the optimal timing of surgical intervention, especially in asymptomatic patients with severe mitral regurgitation.

Echocardiography, Three-Dimensional↗

Bedside diagnosis and follow-up of patients with pleural effusion by a hand-carried ultrasound device early after cardiac surgery.

OBJECTIVES: The aim of this study was to assess the potential value of hand-carried ultrasound (HCU) devices in the diagnosis and follow-up of patients with pleural effusion (PE) after cardiac surgery. METHODS: Seventy consecutive patients were evaluated at bedside early after cardiac surgery, in the upright sitting position, using an HCU device on hospital admission and every 3 days until hospital discharge. The posterior chest wall was scanned along the paravertebral, scapular, and posterior axillary lines. For each hemithorax, an effusion index was derived as the sum of the intercostal spaces between the lower and upper limits of the PE along the lines of scanning, divided by 3. A standard chest radiograph was performed in all patients on hospital admission and at hospital discharge, and was qualitatively scored (0, absent; 1, small; 2, large PE). The findings of the HCU device and radiograph were compared using kappa statistics and the Kruskal-Wallis test. RESULTS: A chest ultrasound was feasible in all patients (mean [+/- SD] time, 5 +/- 2 min). Compared with the chest ultrasound, a physical examination showed a sensitivity of 69% and a specificity of 77%. On hospital admission, the HCU device detected a PE in 72 of 140 hemithoraxes. Agreement with the finding of the radiograph was 76% (kappa = 0.52). In 15 hemithoraxes, the HCU device revealed a PE that had not been diagnosed using the radiograph. Conversely, in 18 hemithoraxes a PE that had been diagnosed with a radiograph was not confirmed by the HCU device. The correlation between ultrasound and radiographic scores was statistically significant (p < 0.001). At hospital discharge, a PE was present in 31 of 140 hemithoraxes according to the findings of the HCU device, and in 38 of 140 hemithoraxes according to the findings of the radiograph (agreement, 78%; kappa = 0.44). CONCLUSIONS: In patients early after cardiac surgery, HCU devices allow rapid PE detection and improve the clinical diagnosis. Compared to a radiograph, this method offers the unique advantage of the bedside evaluation of patients without the need for radiation exposure.

Aged↗

Intracardiac echocardiography to guide transseptal catheterization for radiofrequency catheter ablation of left-sided accessory pathways: two case reports.

Intracardiac echocardiography (ICE) is a useful tool for guiding transseptal puncture during electrophysiological mapping and ablation procedures. Left-sided accessory pathways (LSAP) can be ablated by using two different modalities: retrograde approach through the aortic valve and transseptal approach with puncture of the fossa ovalis. We shall report two cases of LSAP where transcatheter radiofrequency ablation (TCRFA) was firstly attempted via transaortic approach with ineffective results. Subsequently, a transseptal approach under ICE guidance has been performed. During atrial septal puncture ICE was able to locate the needle tip position precisely and provided a clear visualization of the "tenting effect" on the fossa ovalis. ICE allowed a better mapping of the mitral ring and a more effective catheter ablation manipulation and tip contact which resulted in a persistent and complete ablation of the accessory pathway with a shorter time of fluoroscopic exposure. ICE-guided transseptal approach might be a promising modality for TCRFA of LSAP.

Adult↗

[Digital echocardiography laboratory].

The implementation of a digital echocardiography laboratory exists today using the DICOM (Digital Imaging Communication in Medicine) standard to acquire, store and transfer echocardiographic digital images. The components of a laboratory include: 1) digital echocardiography machines with DICOM output, 2) a switched high-speed local area network, 3) a DICOM server with abundant local storage, and 4) a software to manage image and measurement information. The aim of this article was to describe the critical components of a digital echocardiography laboratory, discuss strategies for implementation, and describe some of the pitfalls that we encountered in our own implementation of the digital third level echocardiography laboratory.

Ambulatory Care Facilities↗

[Portable ultrasound devices. A new era for clinical cardiologists].

Recent advances in ultrasound technology have led to the development of fully portable ultrasound machines for point-of-care cardiac examination. Limited comparative studies indicate that these devices are more accurate than physical examination in identifying cardiac abnormalities. Though their diagnostic performance is generally inferior to standard echocardiography, there appears to be good concordance at least for some conditions. However, it must be emphasized that reported results were obtained with cardiologists or sonographers trained and experienced in performing and interpreting echocardiography. The potential role of these devices in cardiac care will depend on their impact on patient management, compatibility with individual practice, their cost, and further technical developments. Operator training in performance and interpretation of examinations obtained using these ultrasound devices seems to be vitally important.

Ambulatory Care↗

Assessment of left atrial appendage wall velocities by transesophageal tissue Doppler echocardiography: a clinical study in patients with sinus rhythm.

To assess left atrial appendage (LAA) wall velocities, 42 patients in sinus rhythm underwent tissue Doppler interrogation during a clinically indicated transesophageal echocardiography. Color Doppler (B-mode and M-mode) and pulsed Doppler of LAA walls were obtained and analyzed in all patients. Color-coded tissue Doppler rendered a qualitative assessment of LAA wall, depicting both the timing and the sequence of LAA contraction. With pulsed Doppler interrogation, a triphasic signal was recorded in all patients, consisting of a positive wave (D1), followed by a biphasic wave (positive D2 and negative D3). Peak velocities of D1, D2, and D3 were 6.1 +/- 2, 20.1 +/- 7, and 16.1 +/- 5 cm/s, respectively. Mean coefficient of variation of LAA wall velocities was 6%, significantly lower than that of LAA percentage area change (29%). Compared with patients with abnormal relaxation, patients with normal mitral inflow had higher D1 peak velocities (7.3 +/- 1.2 vs 4.3 +/- 1 cm/s, respectively; P <.0001). Time sequence of ECG, LAA flow, and mitral inflow indicates that D1 component of LAA wall occurs in early diastole and is likely due to the upward movement of the mitral ring toward the base of the LAA wall. In conclusion, evaluation of LAA wall using tissue Doppler is feasible and reproducible. Although color tissue Doppler analysis allows a qualitative assessment, pulsed Doppler gives new quantitative insights for the comprehensive assessment of LAA wall dynamics, which complements the information obtained with flow interrogation.

Atrial Appendage↗

[Tissue Doppler in the assessment of myocardial function in stress echocardiography].

Recently, stress echocardiography has emerged as a valuable tool for the diagnosis and evaluation of coronary artery disease, but its interpretation still remains subjective, relying on image quality and reader's experience. These problems could be overcome by quantitative analysis of wall motion. Tissue Doppler provides quantitative information on regional myocardial systolic and diastolic velocities that can be displayed either in spectral mode or color coded, reflecting the peak velocity increment induced by exercise or dobutamine administration. Pulsed wave tissue Doppler allows to measure regional instantaneous myocardial velocities with high temporal resolution and has been shown valuable for detecting stress-induced changes of both myocardial systolic and diastolic function. This method may also identify myocardial viability by measuring increase in systolic peak velocity at low-dose of dobutamine in dysfunctional myocardial segments. Color coded tissue Doppler resolves mean velocities with higher spatial resolution, and post-processing analysis of digital acquired images has been shown feasible and reproducible. Myocardial velocity gradient is a more sensitive parameter compared to the simple measurement of the peak endocardial systolic velocity for evaluating myocardial ischemia during dobutamine echocardiography. From the raw data, it is also possible to measure strain and strain rate. These new parameters have the potential to differentiate between wall motion and contractility, with obvious implications when applied to stress echocardiography. In conclusion, tissue Doppler is able to quantify regional myocardial function. After a large scale validation, this technique will be incorporated with stress echocardiography in clinical practice.

Diastole↗

Three-Dimensional Echocardiography of the Aortic Valve: Feasibility, Clinical Potential, and Limitations.

OBJECTIVES: The purpose of our study was to assess the feasibility and potential clinical utility of three-dimensional echocardiography for evaluation of the aortic valve. BACKGROUND: The value of three-dimensional echocardiographic assessment of the aortic valve has not been established yet. METHODS: The study group comprised 32 patients (11 women, 21 men), mean age 56.1 (range 20-82). Seven morphologically normal valves, 5 homografts, 6 mechanical prostheses, and 14 valves of abnormal morphology were evaluated. Images were acquired during a routine multiplane transesophageal echocardiographic examination (rotational scan with 2 degrees interval, respiration, and electrocardiogram [ECG] gating) and postprocessed off-line. A selection of reconstructed cutplanes (anyplane mode) and volume-rendered three-dimensional views of aortic valve anatomy were analyzed by two observers and compared with two-dimensional echocardiography findings. RESULTS: The quality of reconstructions was scored excellent when permitting unrestricted assessment of aortic valve anatomy with optimized planimetric measurements (19 patients, 59%), adequate when aortic valve was partially visualized (7 patients, 22%), or inadequate when no assessment was possible (6 patients, 19%, including 5 with prosthetic valves). Three-dimensional echocardiography provided additional information in ten (31%) patients as compared with the two-dimensional echocardiographic findings. CONCLUSIONS: It can be concluded that three-dimensional echocardiographic reconstruction of the aortic valve is feasible, with excellent or adequate quality in 81% of patients, more frequently in native than in prosthetic valves, P < 0.05. Morphologic information additional to that provided by two-dimensional echocardiography is obtained in a significant proportion of patients.

Journal Article↗