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Biomedical subjects

A C Pearson

Publications and source records attributed to A C Pearson.

At least 37 records · Page 2Linked to original sources

Transthoracic echocardiography versus transesophageal echocardiography in detecting cardiac sources of embolism.

Although the yield of potential cardiac sources of embolism by echocardiography in patients with stroke and arterial embolism has been low, with the advent of transesophageal echocardiography, a renewed enthusiasm for echocardiography in these patients has developed. This article reviews the six major studies comparing transthoracic to transesophageal echocardiography in the search for potential cardiac sources of embolism. The overall yield of transesophageal echocardiography in these studies for potential cardiac sources of embolism is 43% compared to 14% by transthoracic echocardiography in a total of 367 patients. In patients without clinical cardiac disease, the yield is lower but still substantially higher by transesophageal echocardiography (24% compared to 7% by transthoracic echocardiography). For left atrial thrombus, left atrial spontaneous contrast, patent foreman ovale, and atrial septal aneurysm (ASA), transesophageal echocardiography is clearly superior than transthoracic echocardiography. Data on the detection of mitral valve prolapse and left ventricular thrombus are conflicting and neither method is clearly superior. In addition, transesophageal echocardiography identifies certain abnormalities including debris in the aorta and prosthetic strands that transthoracic echocardiography is incapable of identifying. Although transthoracic echocardiography should continue to be the initial screening modality for stroke patients, transesophageal echocardiography should be performed when surface findings are negative or equivocal in patients with likely cardioembolic stroke.

Cerebrovascular Disorders↗

Echocardiographic evaluation of pulmonary artery distensibility.

The aim of this study was to verify the hypothesis that pulmonary artery (PA) distensibility may modify the pattern of right ventricular ejection. Pulmonary artery distensibility was evaluated with M-mode measurements of right pulmonary artery diameter from suprasternal notch simultaneous with pulmonary pressure measurements. Pulmonary artery pressure was measured in 19 subjects, 29 to 75 years old (mean age, 49 years). Pulmonary artery systolic pressure was 22 to 108 mm Hg (mean, 52 mm Hg). Pulmonary artery pressure strain modulus (Ep) was calculated as follows: PADD x (PASP-PADP)/PADD-PADS (PADS-PA diameter in systole, PADD-PA diameter in diastole, PASP-PA systolic pressure, PADP-PA diastolic pressure) was 6 +/- 8 10(5) dynes/cm2. Right ventricular outflow tract velocity was recorded with pulsed Doppler echocardiography and acceleration times (AT) and ejection times (ET) were measured. Log Ep was correlated with pulmonary artery systolic and mean pressure (r = 0.90 and r = 0.87, p < 0.0001) but not with age (r = 0.30, p = NS). Acceleration time and AT/ET ratio were correlated with log Ep (r = 0.73 and r = 0.76, p < 0.001) and with pulmonary artery mean pressure (r = 0.91 and r = 0.89, p < 0.0001). When pulmonary artery pressure was included in multiple analyses, the relationships between Doppler indices and elastic modulus did not prove to be significant. These findings emphasize the independence of Doppler right ventricular outflow tract velocity indexes used for noninvasive evaluation of pulmonary hypertension from pulmonary artery distensibility in a clinical setting.

Adult↗

Evaluation of aortic distensibility with transesophageal echocardiography.

Distensibility of the descending aorta was evaluated during routine transesophageal echocardiography (TEE) in 50 subjects (16 to 80 years, average age 53). M-mode measurements of aortic systolic (SD) and diastolic diameter (DD) were taken distal to the left subclavian artery. Simultaneously, cuff brachial artery systolic (SBP) and diastolic (DBP) pressures were measured. Aortic pressure strain modulus (Ep), calculated as brachial artery pulse pressure/aortic strain, averaged 1.19 +/- 0.95 10(6) dynes/cm2. Elasticity index beta, defined as 1n (SBP/DBP)/aortic strain, averaged 3.77 +/- 2.12. Both Ep and beta were correlated with age (r = 0.65, p less than 0.001; and r = 0.70, p less than 0.0001). In 20 subjects aortic pulse wave velocity was assessed at the same time using simultaneous high fidelity recordings of carotid and femoral artery pressure waveforms. Aortic pulse wave velocity averaged 818 +/- 231 cm/sec and was correlated with Ep (r = 0.60, p less than 0.01) and with age (r = 0.55, p less than 0.05). Intraobserver and interobserver variability for aortic diameter measurement ranged from 0.2 to 0.5 mm.

Adolescent↗

Comparison of transthoracic and transesophageal echocardiography in evaluation of 47 Starr-Edwards prosthetic valves.

OBJECTIVES: Our objectives were to characterize by transesophageal echocardiography the normal appearance of the Starr-Edwards prosthetic heart valve and to compare the utility of transesophageal and transthoracic echocardiography in detection of valve abnormality. BACKGROUND: The Starr-Edwards prosthetic heart valve, the first mechanical valve to be used, has demonstrated excellent durability. METHODS: Fifty transthoracic and transesophageal echocardiographic studies on 37 patients with 47 Starr-Edwards prosthetic valves were analyzed retrospectively. Six cases of surgically confirmed infective endocarditis were studied. RESULTS: Vegetation or abscess formation, or both, was identified by transesophageal echocardiography in all six cases of infective endocarditis but was found in only one of these cases by transthoracic echocardiography. Thrombus was detected by transesophageal echocardiography in 9 of 11 patients with transient ischemic attacks or stroke and in 2 patients by transthoracic echocardiography with 3 confirmed at surgery. In 26 of the 30 patients with a mitral Starr-Edwards valve, the valve demonstrated a trivial or mild "closing volume" early systolic or holosystolic leak on transesophageal echocardiography alone. Transthoracic evaluation identified significant mitral regurgitation in six of the eight patients who had this finding on transesophageal echocardiography. Serial studies were performed to assess response to treatment or need for surgical intervention in eight patients. Seventeen valves have been implanted for 12 years; six of these had significant leakage without apparent cause, a finding not observed more recently implanted valves. CONCLUSIONS: These observations demonstrated the unique utility of transesophageal echocardiography in patients with Starr-Edwards prosthetic valve dysfunction, endocarditis or thrombus formation, and of the clear superiority of transesophageal echocardiography over transthoracic echocardiography in these situations.

Adult↗

The role of Doppler echocardiography in the assessment of left ventricular diastolic function.

The role of Doppler echocardiography of transmitral filling velocities in the assessment of diastolic function in man has not been adequately defined. It is now appreciated that multiple interacting factors such as loading conditions influence the transmitral velocity profile independent of intrinsic left ventricular diastolic function. Extrapolating the status of diastolic function from the transmitral velocity profile is complicated by these factors. The load dependence of ventricular filling has tempered the initial enthusiasm for the clinical application of the Doppler technique. In the present review, studies examining invasive parameters of diastolic function and Doppler indices of diastolic filling are discussed to gain greater insight and understanding of the role of Doppler echocardiography in the noninvasive assessment of diastolic function. These studies have demonstrated a relatively consistent influence of left ventricular relaxation, chamber stiffness, and left atrial pressure on the transmitral velocity filling profile. Impairment of relaxation impedes early filling and may result in a compensatory increase in atrial contribution to filling. An independent decrease in left atrial pressure from altered loading conditions may also reduce filling in early diastole. Increased left ventricular chamber stiffness (i.e., noncompliant left ventricle) impairs atrial contribution to filling and may enhance early filling. Theoretically, reduced left atrial contractility may decrease atrial contribution to filling. Pulmonic vein flow demonstrating increased retrograde flow during atrial systole helps to exclude impaired left atrial contractility. An increased left atrial pressure from altered loading conditions may also augment early filling. Therefore, an invasive or clinical assessment of left atrial pressure as being increased, decreased, or normal greatly aids in the interpretation of the transmitral filling velocity profile when inferences on the status of diastolic function are being made. Diastolic dysfunction is likely when a given pattern of filling cannot be explained on the basis of left atrial pressure. In situations where reasonable estimates on the status of left atrial pressure cannot be done, striking alterations in the transmitral velocity filling profile may be useful.

Animals↗

Comparison of transthoracic and transesophageal echocardiography for assessment of left-sided valvular regurgitation.

To compare transthoracic and transesophageal echocardiography in the clinical assessment of left-sided valvular regurgitation, 118 patients who underwent both transesophageal and transthoracic echocardiographic studies within a 24-hour period were included in this study. Presence or absence of aortic regurgitation was identified concordantly by both techniques in 93 patients (79%). Complete agreement between both techniques was found in 88 patients (75%). Presence or absence of mitral regurgitation was identified concordantly by both techniques in 89 patients (75%). Complete agreement in grade was found in only 74 patients (63%). Twenty-nine patients (25%) had mitral regurgitation detected by transesophageal echocardiography, but not by transthoracic echocardiography. Four of these patients (14%) had significant (2 to 3+) mitral regurgitation. Differences between transesophageal and transthoracic echocardiography do not appear to be clinically important in patients with aortic regurgitation. In mitral regurgitation, significant differences exist between these 2 techniques, with transesophageal echocardiography being much more sensitive.

Aortic Valve↗

Atrial septal aneurysm and stroke: a transesophageal echocardiographic study.

The prevalence and morphologic characteristics of atrial septal aneurysms identified by transesophageal echocardiography in 410 consecutive patients are described. Two groups of patients were compared: Group I consisted of 133 patients referred for evaluation of the potential source of an embolus and Group II consisted of 277 patients referred for other reasons. An atrial septal aneurysm was diagnosed by transesophageal echocardiography in 32 (8%) of the 410 patients. Surface echocardiography identified only 12 of these aneurysms. Atrial septal aneurysm was significantly more common in patients with stroke (20 [15%] of 133 vs. 12 [4%] of 277) (p less than 0.05); right to left shunting at the atrial level was demonstrated in 70% of patients in Group I and 75% of patients in Group II by saline contrast echocardiography. Four patients in Group I had an atrial septal defect with additional left to right flow. There was no difference between the two groups in aneurysm base width, total excursion or left atrial or right atrial excursion. However, Group I patients had a thinner atrial septal aneurysm than did Group II patients. It is concluded that an atrial septal aneurysm occurs commonly in patients with unexplained stroke, is more frequently detected by transesophageal echocardiography than by surface echocardiography and is usually associated with right to left atrial shunting. Treatment (anticoagulant therapy vs. surgery) of atrial septal aneurysm identified in stroke patients can be determined only by long-term follow-up studies.

Adult↗

Ultra short-acting intravenous beta-adrenergic blockade as add-on therapy in acute unstable angina.

To assess the efficacy and safety of the ultra short-acting beta-blocking agent, esmolol, in acute unstable angina, we administered esmolol to 21 patients who had persistent angina despite conventional medical therapy. Following a baseline Doppler echocardiographic examination, esmolol was titrated to reduce the rate-pressure product by at least 20%. Once the patients had been receiving a maintenance dosage for 30 minutes, Doppler echocardiographic studies were repeated. Mean esmolol dose at target response was 17 +/- 16 mg/min, with the dosage range of 8 to 24 mg/min. Esmolol was effective in alleviating anginal chest pain in 18 of the 21 patients. Seven patients eventually underwent percutaneous transluminal coronary angioplasty (PTCA) and eight had coronary bypass surgery. The remainder were discharged receiving medical therapy including oral beta-blockade. During esmolol therapy, heart rate and blood pressure decreased significantly (86 +/- 14 to 68 +/- 12 beats/min and 125 +/- 16 to 103 +/- 20 mm Hg, both p less than 0.001). Cardiac output decreased from 5.4 +/- 1.3 to 4.5 +/- 1.1 L/min (p less than 0.001) secondary to a decrease in heart rate as stroke volume remained unchanged. Left ventricular ejection fraction increased from 47 +/- 12 to 49 +/- 13 with esmolol therapy, although this change was not statistically significant. Both the one third filling fraction as well as E/A ratio (ratio of early-to-late diastolic filling velocities) increased with esmolol therapy (35 +/- 8% to 38 +/- 8% and 0.73 +/- 0.2 to 0.85 +/- 0.23, both p less than 0.005), indicating improvement in left ventricular diastolic function.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenergic beta-Antagonists↗

Effects of aging on left ventricular structure and function.

To better characterize the cardiac structural and functional changes that are associated with aging, Doppler-echocardiography was performed on 23 young (mean age, 25 years) and 30 old (mean age, 70 years) healthy normotensive subjects. Left ventricular cavity dimensions and wall thickness were determined and left ventricular mass index was calculated from M-mode echocardiograms. Stroke volume was calculated from Doppler-measured aortic flow. Diastolic filling was evaluated by pulsed Doppler echocardiography of mitral inflow. Posterior wall thickness (1.0 vs 0.8 cm, p less than 0.05) and relative wall thickness (0.42 vs 0.35, p less than .05) were significantly greater in the elderly subjects compared with the younger subjects. Left ventricular mass index increased on average 0.25 gm/m2/yr but was not significantly increased in the elderly compared with the younger subjects (89 vs 77 gm/m2). Shortening fraction and stroke volume did not differ between the two groups. Diastolic filling was dramatically altered with aging, and the elderly subjects demonstrated a doubling of percent atrial contribution (37% vs 19%, p less than 0.0001) and halving of peak early-to-peak atrial velocity ratio (0.85 vs 1.77, p less than .01).

Adult↗

Factors influencing transmitral flow velocity in normal and hypertensive subjects.

Transmitral flow velocity and its determinants were examined with Doppler echocardiography in 53 hypertensive and 32 age-matched healthy normotensive men. Early and late maximal transmitral velocity, and early and late flow velocity integral were evaluated. In comparison with normal subjects, hypertensive patients were characterized by decreased maximal early velocity (66.3 +/- 12.3 versus 72.3 +/- 11.5 cm/sec, p less than 0.05), normalized early flow integral (67 +/- 7% versus 73 +/- 5%, p less than 0.001), increased maximal late flow velocity (45 +/- 10 cm/sec, p less than 0.001), and normalized late flow integral (29 +/- 7% versus 21 +/- 5%, p less than 0.001). Abnormally high late transmitral flow was found in 47% of the hypertensive group. Multiple regression analysis revealed that in normal subjects transmitral flow indexes were determined by age, relative wall thickness, and systolic blood pressure, but not by heart rate. A strong relationship of Doppler transmitral flow indexes with age was confirmed in hypertensive patients; however, relative wall thickness influenced transmitral flow velocity only weakly and systolic blood pressure did not affect transmitral flow. Left ventricular mass and diastolic blood pressure did not influence mitral filling velocity in either group. The altered pattern of mitral inflow found in a large number of hypertensive subjects is not related to elevated arterial blood pressure or to altered left ventricular geometry.

Adult↗

Pathophysiology of isolated systolic hypertension in elderly patients: Doppler echocardiographic insights.

Systemic hemodynamics were evaluated with aortic pulsed wave Doppler echocardiography in 79 elderly subjects with isolated systolic hypertension participating in the Systolic Hypertension in the Elderly Program (SHEP) and were compared with the values in 39 normal age-matched subjects. Cardiac output was elevated (4.50 +/- 1.13 L/min versus 3.94 +/- 1.12 L/min, p less than 0.05) in patients with isolated systolic hypertension in comparison with values in normal elderly subjects. Systemic vascular resistance did not differ between both groups (2140 +/- 536 dyn.sec/cm-5 versus 2011 +/- 553 dyn.sec/cm-5, p = NS). The mean acceleration of blood during left ventricular ejection was similar in patients with isolated systolic hypertension in comparison with normals (12.6 +/- 5.6 m/sec2 versus 11.5 +/- 3.5 m/sec2, p = NS). Patients with isolated systolic hypertension had significantly decreased arterial compliance, as measured by the stroke volume-to-pulse pressure ratio (0.77 +/- 0.26 cm3/mm Hg versus 1.11 +/- 0.30 cm3/mm Hg, p less than 0.0001). The prevalence of aortic and mitral regurgitation as well as valvular and annular calcification did not differ between analyzed groups. Isolated systolic hypertension in elderly patients appears to be multifactorial, with reduced arterial compliance and increased cardiac output both playing a role.

Aged↗

Initial clinical experience with a 48 by 48 element biplane transesophageal probe.

Recent technologic advances in ultrasound have resulted in the capability of transesophageal echocardiographic imaging in both transverse and longitudinal planes. Previous biplane probes suffered from inferior images because of reduced scan elements. We evaluated the utility of a prototype 48 X 48 element biplane transesophageal probe in 23 consecutive patients. Examinations were well tolerated with no side effects. In comparison to the single transverse plane, imaging with the longitudinal plane gave superior information on prosthetic valve pathology, atrial septal abnormalities, and pathoanatomy of the ascending aorta and mitral valve. Complementary information was provided by the longitudinal plane in patients with endocarditis and vegetations and in mitral protheses. Images obtained with this 48 X 48 element biplane probe along with color and spectral Doppler information were not perceptibly inferior to those obtained by single-plane probes. In conclusion, biplane transesophageal echocardiography with a 48 X 48 element probe indicates a great potential for enhanced three-dimensional understanding of cardiac pathology and diagnostic yield in specific pathologies.

Echocardiography↗

Effect of mitral regurgitation on pulmonary venous velocities derived from transesophageal echocardiography color-guided pulsed Doppler imaging.

The effect of mitral regurgitation on pulmonary venous flow velocity was studied in 66 patients undergoing transesophageal echocardiography. Nine patients were studied intraoperatively before and after surgery, so that 75 pulmonary venous flow tracings were analyzed. Fifty-four patients had no significant (0 to 1+) mitral regurgitation and 21 had significant (2 to 3+) mitral regurgitation. Comparison of both groups revealed significant differences in the pulmonary venous flow pattern. In patients with no significant mitral regurgitation, the peak systolic velocity was higher (55 +/- 16 vs. -4 +/- 16 cm/s; p less than 0.0001) and the peak diastolic velocity was lower (43 +/- 13 vs. 59 +/- 17 cm/s; p less than 0.01) when compared with values in patients with significant mitral regurgitation. Consequently, the peak systolic/diastolic velocity ratio was significantly higher in the patients without significant mitral regurgitation (1.4 +/- 0.5 vs. 0.4 +/- 1.3; p less than 0.0001). The same trend was noted with respect to the systolic and diastolic velocity integrals. As the degree of mitral regurgitation increased, the peak diastolic velocity and diastolic velocity integral increased, whereas the peak systolic velocity and systolic velocity integral decreased. In patients with severe mitral regurgitation, the systolic flow became reversed (retrograde). The sensitivity of reversed systolic flow for severe mitral regurgitation was 90% (9 of 10), the specificity was 100% (65 of 65), the positive predictive value was 100% (9 of 9), the negative predictive value was 98% (65 of 66) and the predictive accuracy was 99% (74 of 75).(ABSTRACT TRUNCATED AT 250 WORDS)

Blood Flow Velocity↗