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Biomedical subjects

Luigi Paolo Badano

Publications and source records attributed to Luigi Paolo Badano.

4 recordsLinked to original sources

Anomalous origin of the right coronary artery mimicking aortic dissection at transesophageal echocardiography.

Transesophageal echocardiography (TEE) is the most common imaging modality for the detection of acute aortic syndromes. However anomalous anatomic structures may be occasionally misunderstood as pathologic due of lack of familiarity with anatomical variations; false-positive diagnosis can result, potentially leading to unnecessary surgical intervention. It is crucial for echocardiographers to be aware of possible pitfalls which may create false positive findings, since the complementary use of other imaging modalities, such as multislice spiral computed tomography (MSCT), could improve the diagnostic accuracy of TEE. We report a case in which an image resembling an acute aortic dissection (AAD) on transthoracic (TTE) and transesophageal echocardiography was found in a patient with acute chest pain; MSCT detected an anomalous origin of the right coronary artery as cause of false aortic dissection image at echocardiography.

Aortic Dissection↗

[Isolated left ventricular non-compaction].

Isolated left ventricular noncompaction is a genetically heterogeneous congenital disorder characterized by an altered structure of the myocardial wall. This cardiomyopathy is thought to be due to an arrest of intrauterine compaction of the myocardial fibers in the absence of any other structural heart disease. Noncompaction of the left ventricular myocardium is an uncommon finding and remains frequently overlooked even by experienced echocardiographers. However, a correct diagnosis of noncompaction has important implications due to the possible association with other cardiac abnormalities and/or muscle disorders, progressive left ventricular dysfunction, risk of thromboembolism, and life-threatening arrhythmias. Furthermore, because of the familial association described with ventricular noncompaction, screening with echocardiography of first relatives is recommended. Since echocardiography is the diagnostic technique of choice, missed diagnoses may be due to nonoptimal imaging of the lateral and apical myocardium, and/or insufficient disease awareness by echocardiographers. To increase awareness of left ventricular noncompaction, the present paper reviews embryology, genetics, clinical features and pathophysiology, diagnosis, treatment and prognosis of patients affected by isolated left ventricular noncompaction.

Adolescent↗

Prevalence, clinical characteristics, quality of life, and prognosis of patients with congestive heart failure and isolated left ventricular diastolic dysfunction.

Prevalence of isolated left ventricular (LV) diastolic dysfunction has been reported to be as high as one-third of all heart failure (HF) cases, with an increasing prevalence in the elderly population. However, there is a paucity of prospective data about the prevalence and prognosis of isolated LV diastolic dysfunction in an unselected population of patients hospitalized with HF. Therefore, we prospectively evaluated 179 consecutive patients discharged from our hospital with HF to assess the prevalence of systolic versus diastolic LV dysfunction among patients hospitalized with HF and to compare their demographics, clinical features, self-perceived quality of life (QOL), and 6-month readmission rate and mortality. Among them, 133 (59% men, median age 74 years) showed in sinus rhythm and had no significant primary valvular disease. LV diastolic dysfunction was diagnosed on the basis of the European Study Group on Diastolic HF echocardiographic criteria. QOL was assessed at hospital discharge and 6-month follow-up visit using the Minnesota Living with HF questionnaire. Survival of patients with HF was compared with that of age- and sex-matched general population. In all, 29 patients (22%) had isolated LV diastolic dysfunction and 102 (78%) had prevalent LV systolic dysfunction (ie, LV ejection fraction </= 45%). There was no difference in age, sex, or New York Heart Association functional class between patients with LV diastolic or systolic dysfunction. QOL scores were similar between the 2 patient groups with HF both at discharge (39.4 and 34) and at 6-month visit (10.4 and 10.4). Both 6-month readmission rate (48% and 48%) and median inhospital length-of-stay during readmissions (10 days and 10 days) were similar between the 2 patient groups with HF. Finally, 6-month survival, adjusted for age and sex, was similar between patients with LV diastolic or systolic dysfunction (hazard ratio 0.68; 95% confidence interval 0.20-2.35). Using standardized echocardiographic criteria, isolated LV diastolic dysfunction among unselected patients hospitalized with HF was less than previously reported. Patients with HF and isolated diastolic dysfunction showed similar clinical symptoms, self-perceived QOL, readmission rate, and 6-month mortality to patients with prevalent LV systolic dysfunction.

Adrenergic beta-Antagonists↗

Contrast echocardiographic evaluation of early changes in myocardial perfusion after recanalization therapy in anterior wall acute myocardial infarction and their relation with early contractile recovery.

Temporal changes in myocardial perfusion after recanalization and their relation with functional recovery in patients with acute myocardial infarction (AMI) using intravenous myocardial contrast echocardiography (MCE) have not yet been clarified. To address this issue, 19 patients with first, uncomplicated anterior wall AMI were studied using intravenous MCE within 24 hours of recanalization and before discharge. MCE was performed using harmonic power Doppler. Each asynergic left ventricular (LV) myocardial segment was scored for myocardial perfusion (1 = complete, 0.7 = patchy but >50%, 0.3 = patchy <50%, and 0 = absent) and a regional perfusion index was calculated within the dysfunctioning myocardium. During the day-1 study (11 +/- 2 hours from recanalization), the regional perfusion index was 0.4 +/- 0.3 and the LV wall motion score index was 1.9 +/- 0.2. During the study before discharge (7 +/- 4 days from admission), all but 2 patients showed an improvement of either perfusion index (0.6 +/- 0.3, p <0.0001) or wall motion score index (1.7 +/- 0.4, p <0.0001). Changes in perfusion score from 24-hours to before discharge showed a significant correlation with LV segment contractile recovery at 2-month of follow-up (R(2) = 0.42, 95% confidence interval 0.33 to 0.50, p <0.0001). Thus, our data show that after recanalized AMI, there is a significant amount of microvascular obstruction that recovers in the days after, and the extent of this perfusion improvement appears to be related with early myocardial contractile recovery. Our data provide clinical evidence for a transient microvascular dysfunction after successfully recanalized AMI.

Adult↗