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Relation of segmental wall motion to global left ventricular function in acute myocardial infarction.

The relation of left ventricular regional wall motion to global ventricular function was evaluated by radionuclide ventriculography in 127 patients within 18 hours of acute myocardial infarction. No patient had evidence of previous myocardial infarction. The following parameters were measured: (1) wall motion index; (2) percent of abnormally contracting segment; (3) ejection fraction (EF); (4) end-diastolic volume (EDV) and end-systolic volume (ESV); and (5) peak systolic cuff pressure/end-systolic volume ratio (PSP/ESV). The measurements of global function correlated well with wall motion index (r = 0.83, p less than 0.001 for EF; r = -0.69, p less than 0.001 for ESV; and r = 0.061, p less than 0.001 for PSP/ESV), but EDV correlated less well (r = -0.35, p less than 0.001). Multiple linear regression analysis revealed that EF correlated best with wall motion index, and no other parameters of global left ventricular function added significantly to the regression. The correlation of motion in each segment with EF was determined by multiple linear regression analysis. Ejection fraction correlated best with motion in the anterobasal, then in order of correlation, in the apical-septal, inferoapical, anterolateral, and superlateral walls. The relation of EDV, ESV, and degree of percent abnormally contracting segments was as follows: EDV did not increase with a mild regional wall motion abnormality; however, ESV did increase and reduced stroke volume. As percent abnormally contracting segments worsened, enlargement of both EDV and ESV was seen and was associated with further reduction in systolic volume. These data suggest that EF is the best global left ventricular function correlate of the severity of the regional wall motion abnormality, and that abnormal motion in the territory of the left anterior descending coronary best predicts reduction in global left ventricular function. Radionuclide ventriculography is useful in characterizing global and regional left ventricular function in the early hours of acute myocardial infarction.

Aged

[Left ventricular function at the time of left x-ray contrast ventriculography].

To study left ventricular function during radiocontrast ventriculography, 23 patients with a rejected diagnosis of coronary disease were examined. All the patients underwent coronarography, direct ventriculography with the aid of a special catheter with a microtip pressure microtransducer and intravenous biventriculography with injection of a radiocontrast agent to the right atrium with simultaneous monitoring of the pressure in the left ventricle. All the ventriculograms were subjected to a multiframe analysis with the aid of computer. During ventriculography, direct injection of a radiocontrast agent significantly influenced left ventricular function in all the phases of a cardiac cycle. The pressure in the left ventricle and energy parameters of the cycle of heart contraction increased. In the diastole, the elasticity of chamber walls reduced. The end diastolic volume increased, which led to the overstatement of the design parameters of cardiac output (by about 10 to 15%). All that resulted in the distortion of the data and lowered the scientific value of the information derived. Therefore, the search for alternative angiographic methods of estimating left ventricular function is badly needed.

Adult

The angiotensin infusion test as a method of evaluating left ventricular function.

Fifteen patients had left ventricular function measured by the angiotensin infusion method. Seven patients had no evidence of heart disease, and eight patients had angina pectoris and coronary arteriographic evidence of coronary disease without congestive heart failure. During angiotensin infusion, those patients without heart disease had a decrease in cardiac index (average, 0.63 L. per minute per square meter) and a decrease in heart rate (average, 12 beats per minute.) The ventricular function curve had a poor SWI response in four of the seven subjects. The patients with coronary artery disease also had a reduction in cardiac index during angiotensin (average, 0.44 L. per minute per square meter) and the heart rate was unchanged in four subjects, increased in two subjects, and decreased in two subjects. Six of the subjects had flat or descending slopes on the function curve, and in one subject there was only a very gradual ascending slope. Many of the curves of both groups looked similar so that the function curves did not differentiate between those patients with or without heart disease. The mechanism for production of bradycardia, reduction of cardiac output, and depressed function curves with angiotensin is multifactorial, but is probably due to the baroreceptor reflex response, the increase in coronary artery resistance, and possible to the direct effect of increased left ventricular afterload itself. The ventricular response to angiotensin is so variable that the angiotensin infusion method of evaluating ventricular function is not reliable.

Adolescent

Two-dimensional echocardiography in predicting left ventricular wall motion abnormalities and left ventricular function.

In an attempt to formulate a reliable noninvasive method of detecting segmental wall motion disturbances, we examined 25 patients with coronary artery disease by two-dimensional echocardiography (2-DE), standard 12-lead electrocardiography (ECG), and biplane left ventriculography. The 2-DE technic predicted qualitative wall motion abnormalities as defined by ventriculography with a sensitivity of 88% and a specificity of 86%. The ECG (Q waves) predicted segmental wall motion disturbances with only 50% and 51% sensitivity and specificity, respectively. Extrapolating the advantages of 2-DE to the assessment of global myocardial function, left ventricular wall motion index (LVWMI) and E-point septal separation (EPSS) by 2-DE were correlated with left ventriculographic ejection fractions; r values were high (.73 and -.76, respectively) in both instances. Thus, 2-DE provides a reliable noninvasive technic by which both regional and global myocardial wall motion disturbances can be assessed. Unlike previous noninvasive methods, the 2-DE results compared very favorably with those of biplane left ventriculography.

Cineangiography

Stress-induced changes in blood pressure and left ventricular function in mild hypertension.

Left ventricular function was studied by M-mode echocardiography at rest and during a mental arithmetic stress test and a cold-pressor test in 14 patients with mild hypertension and in 14 matched normotensive subjects. The elevation of blood pressure at rest in the hypertensive group (154 +/- 4/87 +/- 3 vs. 120 +/- 3/66 +/- 3 mmHg in the control group) was due mainly to a higher cardiac output (6.0 +/- 0.3 vs. 5.0 +/- 0.3 L/min), which was related to elevations of stroke volume and heart rate (73 +/- 2 vs. 66 +/- 2 beats/min). Venous plasma catecholamines were similar in the two groups. Mental stress induced cardiac output-dependent increases in blood pressure in both groups; systemic vascular resistance tended to decrease. The relative increases in diastolic and mean arterial blood pressure were smaller in the hypertensive group (15 vs. 26% and 15 vs. 21%, respectively), which exhibited signs of a reduced cardiac compliance, possibly related to a left ventricular hypertrophy. Mental stress elevated venous plasma adrenaline similarly in the two groups; effects on noradrenaline were small. The cold-pressor test increased blood pressure similarly in the two groups, largely due to increased systemic vascular resistance; plasma noradrenaline responses were also similar. Mental stress appears to elicit a differentiated sympathetic nerve activation pattern resembling the hypothalamic defense reaction. Mild hypertension seems to be associated with increased arousal and cardiac activation at rest. However, an attenuated blood pressure reactivity to mental stress may reflect reduced stroke volume responsiveness, which is related to structural changes, as heart rate reactivity tended to be enhanced in mild hypertension.

Adult

Improvement of left ventricular function after percutaneous transluminal coronary angioplasty.

Cardiac function and left ventricular dynamics were measured in seven consecutive patients 1 day before and 6 months after percutaneous transluminal balloon angioplasty of subtotal proximal stenosis of the left anterior descending coronary artery. Before angioplasty all patients had obvious left ventricular dysfunction during exercise and to a smaller degree during isoproterenol infusion; the condition of all patients was greatly improved 6 months after angioplasty. After angioplasty, left ventricular end-diastolic pressure was normal at rest and decreased from a mean (+/- standard error of the mean) of 33.8 +/- 1.6 to 19.2 +/- 0.5 mm Hg on exercise. Left ventricular ejection fraction, measured by a gated blood pooling technique with technetium-99m, improved on exercise from 46 +/- 5.0 percent to 69 +/- 1.0 percent. Cardiac output and stroke volume index increased significantly with exercise after angioplasty. The peak negative rate of pressure reduction in the left ventricle (dP/dt/min), an index of left ventricular relaxation, was highly abnormal on exercise before (2,307 +/- 260 mm Hg/s) and increased to the normal range (3,154 +/- 200 mm Hg/s) after angioplasty. The improvement in left ventricular function after transluminal angioplasty in these cases of proximal left anterior descending coronary arterial stenosis is extremely encouraging.

Adult

Mitral valve replacement in patients with severe mitral regurgitation and impaired left ventricular function.

We have studied short- and mid-term effects of preservation and excision of the mitral subvalvar support during mitral valve replacement in 40 patients, who had developed moderate to severe degree of left ventricular function impairment, secondary to pure severe mitral regurgitation. These patients had valve replacement, because valve anatomy was unsuitable for reconstructive procedures. Mitral subvalvar support was excised and valve replaced with a Björk-Shiley prosthesis, in 10 patients with moderately impaired left ventricular ejection fraction (mean 32% +/- 1.2%) and in 18 patients with severely impaired left ventricular function (left ventricular ejection fraction: 22% +/- 0.8%). In 12 patients with severely impaired left ventricular function (left ventricular ejection fraction: 20% +/- 1%) posterior subvalvar apparatus was preserved and valve replaced with a bioprosthesis. Prognosis of patients with moderately impaired left ventricular function was not influenced by the loss of chordopapillary support. Actuarial survival at 8 and 10 years was 46% +/- 7.8% for patients with severely impaired left ventricular function with chordopapillary support excised and 70% +/- 10% for patients with severely impaired left ventricular function with chordopapillary support preserved (p less than 0.01). Preservation of mitral subvalvar support is important in patients with severely impaired left ventricular function (left ventricular ejection fraction less than 25%).

Aged

Newer Doppler measures of left ventricular diastolic function.

Left ventricular (LV) diastolic dysfunction is an important cause of heart failure, and recent advances in the application of Doppler techniques allow a semiquantitative assessment of LV diastolic performance. This review discusses the use of Doppler echocardiography in the comprehensive assessment of LV diastolic function and performance in terms of the normal mitral and pulmonary venous flow profiles, their physiologic basis, and alterations in diseased states. There is also a discussion on the newer aspects of mitral flows such as relative durations of mitral A and pulmonary vein AR waves, E- and A- wave propagation inside the LV with their hemodynamic correlates, and derivation of ventricular dP/dt and Tau from the mitral regurgitation velocity profile. Analysis of these flow profiles and the other Doppler measures alluded to above allow one to make a fairly precise hemodynamic assessment of a patient in terms of left atrial pressure, LV relaxation and stiffness and the profile of LV diastolic pressure in terms of pre- 'a' wave and 'a' wave pressures and ventricular end-diastolic pressure.

Echocardiography, Doppler

Myocardial ischemia and left-ventricular function after ligation of left coronary artery (Bland-White-Garland syndrome): a long-term follow-up.

Left-ventricular function and myocardial perfusion were studied in 8 patients for between 3 and 21 years (mean 16 years) after ligation of the anomalous left coronary artery from the pulmonary artery. While only one patient complained of exercise-dependent stenocardia, 4 patients had abnormal ST-segments in the exercise ECG and all patients showed myocardial ischemia at exercise scintigraphy. At rest, the ejection fraction of the left ventricle was within normal range in all patients. In 5 patients, it failed to increase adequately under exercise conditions, reflecting impaired ventricular function. These results confirm the advantages of surgical procedures establishing a 2-coronary system.

Adolescent

Relation of regional echo amplitude to left ventricular function and the electrocardiogram in left ventricular hypertrophy.

In order to determine the relation between three manifestations of left ventricular hypertrophy--ST-T wave changes on the electrocardiogram, diastolic disturbances, and increased myocardial echo intensity--M mode and cross sectional echocardiograms were recorded in 12 normal subjects, 15 athletes, 16 patients with hypertrophic cardiomyopathy, and 42 patients with secondary left ventricular hypertrophy due to aortic stenosis (20), severe essential hypertension (8), coarctation (7), or subaortic stenosis (7). M mode echocardiograms were digitised and cross sectional echocardiograms were analysed for regional echo intensity. In patients with hypertrophy regional echo amplitude was significantly increased in mid and basal septum and posterior left ventricular wall. Patients with increased echo amplitude in any region showed a higher incidence of ST-T wave abnormalities than those without and of diastolic abnormalities--including prolongation of isovolumic relaxation time, delay in mitral valve opening with respect to minimum cavity dimension, and a reduction in peak rate of posterior wall thinning and dimension increase. There was a significant rank order correlation between median pixel count and these diastolic abnormalities. No significant differences were demonstrable in these relations between the diagnostic groups. By contrast, electrocardiographic findings, diastolic function, and pixel count were uniformly normal in athletes, although the increase in left ventricular mass was similar to that in the patients. Thus an increase in left ventricular mass alone is not responsible for repolarisation or wall motion abnormalities occurring in pathological left ventricular hypertrophy. These latter changes are, however, strongly associated with the change in myocardial properties detected as an increase in echo intensity and may be due to increased interstitial fibrosis.

Adult

Implementation of the T4/5 left ventricular functional image on a VAX-based Lexidata image processing station.

A VAX-based Lexidata image processing station has been used for the development and application of image processing and data analysis techniques in nuclear medicine. Within the area of cardiac multigated equilibrium blood-pool scintigraphy, the computational implementation of the T4/5 functional image, a new left ventricular functional image, is presented. This image reflects myocardial compliance. The versatility of the implementation is demonstrated. Examples of the T4/5 functional image are presented. The VAX-based Lexidata image processing station is a useful tool for parameter, feature, and image extraction from nuclear medicine images.

Coronary Disease

Comparative effects of pacing-induced and flow-limited ischemia on left ventricular function.

We compared left ventricular (LV) myocardial blood flow and function accompanying severe demand ischemia (rapid atrial pacing in the presence of critical bilateral coronary stenoses) and supply ischemia (complete bilateral coronary occlusion) of the same ischemic regions in 14 pentobarbital-anesthetized dogs. Pacing-induced ischemia resulted in pronounced reductions in average regional epicardial blood flow (0.8 +/- 0.4 vs. control 1.2 +/- 0.4 [+/- SD] ml/g/min, p less than 0.05) and endocardial blood flow (0.4 +/- 0.1 vs. control 1.3 +/- 0.3 ml/g/min, p less than 0.05). More severe reductions in average regional epicardial and endocardial blood flow were seen after bilateral coronary occlusion (BCO) (0.3 +/- 0.3 and 0.1 +/- 0.1 vs. control 1.3 +/- 0.3 ml/g/min, p less than 0.05, respectively). Hemodynamics of postpacing ischemia (PPi) were consistently characterized by systolic impairment including depressed systolic contractile performance [(+)dP/dtmax 1,281 +/- 442 vs. control 2,173 +/- 775 mm Hg/sec, p less than 0.05], ventricular dilation (left ventricular [LV] end-diastolic dimension [EDD] 47.6 +/- 7.8 vs. control 44.7 +/- 8.6 mm, p less than 0.05), and an increase in LV end-diastolic pressure (EDP) (14.4 +/- 2.8 vs. control 4.2 +/- 2.8 mm Hg, p less than 0.05). Abnormalities in early and late diastolic function with PPi included increased time constant of isovolumic relaxation (78.0 +/- 40.4 vs. control 46.4 +/- 20.5 msec, p less than 0.05) and increased chamber stiffness (1.9 +/- 0.77 vs. control 0.81 +/- 0.55 mm Hg/mm, p less than 0.05), respectively. The LV diastolic pressure-dimension relation, however, shifted upward and to the right in eight of nine animals, whereas an upward shift was observed in only one animal. Thus, in this model of postpacing ischemia, we observed contractile failure and passive changes in diastolic function. Alterations in ventricular function occurred consistently earlier and to a greater extent during BCO than PPi, including higher LVEDP (25.3 +/- 8.1 vs. 14.9 +/- 6.6 mm Hg, p less than 0.05), greater ventricular dilation (delta LVEDD 4.9 +/- 2.5 vs. 3.5 +/- 2.8 mm, p less than 0.05), and reduced minor-axis dimension shortening (3.3 +/- 3.1% vs. 6.5 +/- 3.6%, p less than 0.05). To detect potential qualitative differences in ventricular function between the two types of ischemia, we evaluated hemodynamics at comparable loading conditions (30 seconds to 1 minute of BCO).(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

Impaired left ventricular functional reserve in hypertensive patients with left ventricular hypertrophy.

To determine whether patients with hypertension and especially those with left ventricular hypertrophy have subtle changes in cardiac function, we measured the increase in left ventricular ejection fraction and in systolic blood pressure to end-systolic volume index ratio with exercise in 40 hypertensive patients and 16 age-matched normotensive volunteers. Twenty-two hypertensive patients without hypertrophy had normal end-systolic wall stress at rest and exercise responses. In contrast, the 18 patients with echocardiographic criteria for left ventricular hypertrophy demonstrated a significant increase in end-systolic wall stress at rest compared with normal subjects (69 +/- 16 vs. 55 +/- 15 10(3) x dyne/cm2, p less than 0.05) despite having normal resting left ventricular size and ejection fraction. In patients with left ventricular hypertrophy, the increase in ejection fraction with exercise was less than in the normotensive control subjects (7 +/- 7 vs. 12 +/- 8 units, p less than 0.05), and delta systolic blood pressure to end-systolic volume with exercise was reduced (3.3 +/- 3.8 vs. 8.3 +/- 7.7 mm Hg/ml/m2, p less than 0.05). The hypertensive patients with hypertrophy displayed a shift downward and to the right in the relation between systolic blood pressure to end-systolic volume ratio and end-systolic wall stress compared with control subjects and hypertensive patients without left ventricular hypertrophy. Thus, hypertensive patients with left ventricular hypertrophy by echocardiography and normal resting ejection fraction exhibit abnormal ventricular functional responses to exercise. This finding may have implications in identifying patients at higher risk for developing heart failure.

Adult

Left ventricular aneurysmectomy in patients with poor left ventricular function.

Physical performance and left ventricular (LV) function in the resting state were assessed in 22 patients with postinfarction anterior-apical left ventricular aneurysm (LVA) and global ejection fraction less than or equal to 20% who subsequently underwent radical LVA resection. The basic findings in the 20 survivors of surgery were significant improvement of global systolic LV function and more or less complete recovery of regional ejection fraction in the predominantly viable low and high lateral LV wall. This improvement was evident in patients with concomitant bypass grafting as well as in those with isolated and ungraftable lesions of the left anterior descending (LAD) coronary artery. We conclude that postinfarction anterior-apical LVA in a poorly functioning LV is suitable for surgical treatment, which can be accomplished with acceptable risk. All graftable stenotic major coronary arteries should be bypassed, in addition to the LVA resection, but a minority of patients with isolated, ungraftable LAD disease are likely to benefit from aneurysmectomy alone.

Adult

Radionuclide and hemodynamic assessment of left ventricular functional reserve in patients with left ventricular aneurysm and congestive cardiac failure. Response to exercise stress and isosorbide dinitrate.

The hemodynamic response to exercise stress was assessed in 17 patients with left ventricular (LV) aneurysm, demonstrated by contrast left ventriculography, and congestive cardiac failure (CCF) before and after sublingual isosorbide dinitrate (ISDN). Radionuclide ventriculography was performed at rest and during exercise in 14 patients. ISDN increased mean exercise LV stroke work index (LVSWI) from 31 to 39 g-m/m2 (p less than 0.001) and reduced mean exercise LV filling pressure from 38 to 25 mm Hg (p less than 0.001). Using the combined criteria of LVSWI and ejection fraction of the contractile section of the left ventricle (EFCS), no patient with rest EFCS of less than 40% achieved a good absolute response to exercise in LV performance with or without ISDN. Of the six patients with rest EFCS greater than or equal to 40% only three achieved a good response. While rest EFCS less than 40% indicates poor LV functional reserve, good LV functional reserve is not always indicated by rest EFCS greater than or equal to 40%.

Adult

Right and left ventricular function in fetal sheep exposed to long-term high-altitude hypoxemia.

To test the hypothesis that long-term hypoxemia affects fetal cardiac function, we measured right (RVO) and left (LVO) ventricular output by electromagnetic flow probes. We also determined their responses to increased preload (ventricular function curve, VFC) and afterload (arterial sensitivity curve, ASC). We exposed seven pregnant ewes to high altitude (3,820 m) from 30 to 120 days gestation, at which time surgery was performed. Thereafter, maternal arterial PO2 was maintained at approximately 60 Torr by N2 administration. Fetal arterial PO2 was significantly reduced in the hypoxemic fetuses (Hyp, n = 7) compared with that of control (Con, n = 9) (19.3 +/- 0.8 vs. 23.3 +/- 0.5 Torr, P less than 0.01). Mean arterial pressures in the Hyp group were elevated (52.0 +/- 1.2 vs. 44.4 +/- 1.7 mmHg, P less than 0.01) and fetal heart rate showed minimal change. Catecholamine concentrations in the Hyp group tended to be higher than the Con group, but not significantly so. For Con and Hyp, RVO equaled 275.7 +/- 9.1 vs. 183.1 +/- 10.1 (P less than 0.01), LVO equaled 165.7 +/- 16.9 vs. 141.6 +/- 16.5 (NS), and combined ventricular output (CVO) equaled 441.1 +/- 22.9 vs. 334.9 +/- 28.3 ml.min-1.kg-1 (P less than 0.05). For the LV there were no significant differences of the VFC between the Con and Hyp groups. However, the right VFC in the Hyp was significantly shifted downward. Concerning afterload, in the RV the slope of the ASC of Con was steeper than that of Hyp (-3.00 +/- 0.05 vs. -0.84 +/- 0.11 ml.ml.min-1.g-1.mmHg-1, P less than 0.01).(ABSTRACT TRUNCATED AT 250 WORDS)

Altitude

Left ventricular function in experimental volume overload hypertrophy.

Left ventricular function in volume overload hypertrophy is controversial. In humans, chronic severe volume overload eventually results in left ventricular dysfunction; paradoxically, experimental volume overload hypertrophy has nearly always been associated with normal left ventricular function. However, in most cases, experimental volume overload hypertrophy has either been mild or only present for a short duration. To help resolve the issue of contractile function in volume overload hypertrophy, we examined ventricular function in a recently described model of severe chronic experimental mitral regurgitation. Left ventricular function was measured before and 3 mo after the creation of severe mitral regurgitation (averaged regurgitant fraction 0.64 +/- 0.04). At 3 mo end-diastolic volume had increased from 78 +/- 5 to 114 +/- 7 ml (P less than 0.01). Significant left ventricular hypertrophy had occurred with an increase in the left ventricular weight-to-body weight ratio from 3.84 +/- 0.2 to 5.22 +/- 0.2 (P less than 0.01). All indicators of left ventricular function (ejection fraction, the end ejection stress-volume relationship, this relationship corrected for eccentric hypertrophy, and mean velocity of circumferential fiber shortening at a common stress) were reduced at 3 mo. Our study produced 64% volume overload which was maintained for 3 mo at which time there was a 36% increase in left ventricular mass. This amount of volume overload of this duration produced significant left ventricular dysfunction.

Animals