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Abnormal filling pattern of the left ventricle and outcome in acute myocardial infarction.

BACKGROUND: The pattern of left ventricular filling by Doppler examination is frequently abnormal in myocardial infarction. PURPOSE: To relate the different patterns of left ventricular filling to the clinical course of acute myocardial infarction. PATIENTS AND METHODS: We have studied 133 patients with acute myocardial infarction. Three different patterns of mitral flow were defined by Doppler examination: Type I has an E/A ratio lesser than one, and a deceleration time of the E wave longer than 180 ms; Type II has either an E/A ratio greater than one or a deceleration time shorter than 180 ms; Type III has an E/A ratio greater than 1.6 and a deceleration time shorter than 180 ms. We also determined the pulmonary wedge pressure through a pulmonary artery catheter simultaneously with the Doppler examination on 22 occasions in 11 patients. RESULTS: Mortality rate was 13%, 9% and 35% respectively in Type I, II and III (P=0.007). After logistic regression analysis of determinants of death, including all eight variables related with mortality on an univariate analysis, only Killip class and the presence of a Type III pattern of the mitral flow remained significant (P=0.0004 and P=0.019 respectively). Pulmonary wedge pressure was 8.4+/-6.1 mmHg in Type I, 21.0+/-7.3 mmHg in Type II, and 22.4+/-7.1 mmHg in Type III (P=0.0017). CONCLUSION: Type III pattern of left ventricular filling is an independent predictor of death. Type I and II had no significant differences on prognosis. Type I is associated with a normal pulmonary wedge pressure.

Adult↗

Motor control and state regulation in children with ADHD: a cardiac response study.

The goal of the current study was to investigate whether poor motor control in children with Attention-Deficit Hyperactivity Disorder (ADHD) was associated with a state regulation deficit. For this purpose, 28 ADHD and 22 healthy children carried out two Go No-Go tests: one with a fast stimulus presentation rate, and the other with a slow stimulus presentation rate. Groups were compared on RT performance and on specific cardiac measures, reflecting arousal, motor activation/inhibition, and effort allocation. No group difference in the arousal measure (mean heart rate) was found. Further, groups did not differ with respect to response inhibition: in both the fast and slow condition, ADHD children made comparable numbers of errors of commission to the control group, and the groups did not differ with respect to the heart rate deceleration after the onset of the No-Go signal, reflecting motor inhibition. Group differences were found with respect to motor activation and effort allocation in the condition with a slow presentation rate. In this condition: (1) ADHD children reacted more slowly to Go signals than control children, suggesting poor motor activation; (2) the heart rate deceleration before the onset of Go signals, which is believed to reflect motor preparation, was less pronounced in the ADHD children; (3) after Go signals, where a response was given, the cardiac shift from deceleration to acceleration, indicating response initiation, was delayed in ADHD children; and (4) ADHD children had greater heart rate variability (0.10 Hz component) than the control group, indicating that less effort was allocated. No group differences in motor activation and effort allocation were found in the condition with a fast presentation rate of stimuli. We conclude, therefore, that a slow presentation rate of stimuli brings the ADHD child in a non-optimal activation state.

Arousal↗

Assessment of zebrafish cardiac performance using Doppler echocardiography and power angiography.

The zebrafish (Danio rerio) has become a new animal model for cardiac researches. Although it is equipped with a prototypical vertebrate heart, the zebrafish studies for cardiac mutations and genetic control of development can reveal some hints for solving human problems. Despite the simplicity of the zebrafish heart, the objective parameters of cardiac performance are not easily available, except for the morphological description, due to its small size. Because the four components (sinus venosus, atrium, ventricle and bulbus arteriosus) of the zebrafish heart are connected in series, we studied it by applying ultrasonic imaging methods for the vascular system. A total of 20 fishes that were ages of 3 to 4 months were studied. Their mean body weight and height were 562 +/- 173 mg and 4.6 +/- 0.7 cm, respectively. Power angiography and routine Doppler echocardiography were used to evaluate the cardiac performance of zebrafish at 25 degrees C and 15 degrees C. The zebrafish hearts could be easily identified with color Doppler (8.5 MHz) or power angiography (7 MHz). The ventricular filling flow contained two components (E and A-flow). The E-flow velocities were lower than the A-flow velocities at both 25 and 15 degrees C. The cycle length was prolonged (p < 0.05) and the velocities of ventricular filling and bulbus arteriosus decreased significantly at 15 degrees C (p < 0.05). A significant decrease in early diastolic deceleration slope and significant prolongation in early diastolic and late-diastolic deceleration times were found at a lower temperature (15 degrees C). The acceleration:deceleration ratio for early and late diastole also showed a significant difference at 15 degrees C. In conclusion, the cardiac performance of the zebrafish could be approached using commercially available clinical instruments equipped with Doppler echocardiography and power angiography.

Anesthetics↗

Altered sensitivity to alcohol in the late luteal phase among patients with premenstrual dysphoric disorder.

BACKGROUND: Affective disorders, and possibly also premenstrual dysphoric disorder (PMDD) are risk factors for alcohol abuse in women. Although the majority of prior studies have indicated that alcohol sensitivity does not differ between menstrual cycle phases, patients with PMDD have thus far not been studied. METHODS: We have evaluated the functional sensitivity to a low dose of alcohol in 12 women with and 12 women without PMDD in the mid-follicular and late luteal phases of the menstrual cycle, by comparing the effects of an intravenous alcohol infusion on a number of saccadic eye movement measures, including saccadic eye velocity (SEV), saccade deceleration, and self-rated levels of intoxication. RESULTS: PMDD patients displayed blunted SEV (p<0.01) and saccade deceleration responses (p<0.01) to alcohol infusion in the late luteal phase compared to the mid-follicular phase. Control subjects, on the other hand, did not change their SEV or saccade deceleration responses to alcohol between cycle phases. CONCLUSION: These findings are compatible with altered saccadic eye movement sensitivity in response to alcohol among PMDD patients, particularly in the late luteal phase of the menstrual cycle.

Adult↗

Quantitative evaluation of aortic insufficiency by continuous wave Doppler echocardiography.

To assess the usefulness of continuous wave Doppler echocardiography in the evaluation of aortic insufficiency, the aortic regurgitant flow velocity pattern obtained with continuous wave Doppler examination was compared with the results of aortography and conventional pulsed Doppler techniques in 25 individuals with aortic insufficiency. The diastolic deceleration slope as measured from the continuous wave tracing was significantly different among subgroups of patients with mild (1.6 +/- 0.5 m/s2), moderate (2.7 +/- 0.5 m/s2) and severe (4.7 +/- 1.5 m/s2) aortic insufficiency as determined from aortography. Deceleration slopes greater than 2 m/s2 separated individuals with moderate and severe insufficiency from those with mild insufficiency. Similar findings were seen when comparing the pressure half-time method of diastolic velocity decay with the more severe grades of aortic insufficiency exhibiting the shortest pressure half-times. There was also a high correlation (r = 0.85) between the deceleration slope measured by continuous wave Doppler recordings and the grade of insufficiency as assessed by pulsed Doppler echocardiography. End-diastolic velocities correlated poorly (r = 0.28) with catheter-measured end-diastolic pressure difference between the aorta and the left ventricle. These findings demonstrate that the aortic regurgitant flow pattern by continuous wave Doppler echocardiography may be useful in quantitating the degree of aortic insufficiency by assessing the rate with which aortic and left ventricular pressures equilibrate during diastole.

Adult↗

Noninvasive doppler echocardiographic evaluation of left ventricular filling pressures in patients with cardiomyopathies: a simultaneous Doppler echocardiographic and cardiac catheterization study.

OBJECTIVES: The purpose of this study was to examine the relation of the mitral flow velocity curves to left ventricular filling pressures in patients with two different types of myocardial problems: hypertrophic cardiomyopathy and severe left ventricular systolic dysfunction. BACKGROUND: Previous studies have suggested that assessment of Doppler-derived mitral flow velocity curves can be used to predict left ventricular filling pressures in specific disease entities. However, it is unclear whether information derived from specific mitral flow velocity curves obtained from one disease entity can be valid in other disease states. METHODS: The study group consisted of 42 patients with left ventricular systolic dysfunction (group A) and 55 patients with hypertrophic cardiomyopathy (group B); both groups underwent simultaneous cardiac catheterization and were studied by Doppler echocardiography. High fidelity measures of left atrial and left ventricular pressures were obtained simultaneously with mitral flow velocity curves. RESULTS: There was a significant relation between the Doppler echocardiographic variables and mean left atrial pressure in group A patients. The left atrial pressure was directly related to the E/A ratio (r = 0.49, p = 0.004) and inversely related to the deceleration time (r = 0.73, p < 0.001). The sensitivity and specificity of the deceleration time, < 180 m/s, which indicated a mean left atrial pressure > or = 20 mm Hg, were both 100%. In group B patients, there was no significant relation between mean left atrial pressure and deceleration time. CONCLUSIONS: Doppler echocardiographic mitral flow velocity curves are useful in predicting and estimating left ventricular filling pressures in patients with left ventricular dysfunction. However, because of the complexity of the multiple interrelated factors that determine diastolic filling of the left ventricle, these flow velocity curves cannot be used in patients with other disease entities, such as hypertrophic cardiomyopathy. Future studies of different disease states are necessary to fully understand the role of Doppler echocardiography in the assessment of diastolic filling.

Adult↗

Left ventricular diastolic filling with an implantable ventricular assist device: beat to beat variability with overall improvement.

OBJECTIVES: We studied the effects of left ventricular (LV) unloading by an implantable ventricular assist device on LV diastolic filling. BACKGROUND: Although many investigators have reported reliable systemic and peripheral circulatory support with implantable LV assist devices, little is known about their effect on cardiac performance. METHODS: Peak velocities of early diastolic filling, late diastolic filling, late to early filling ratio, deceleration time of early filling, diastolic filling period and atrial filling fraction were measured by intraoperative transesophageal Doppler echocardiography before and after insertion of an LV assist device in eight patients. A numerical model was developed to simulate this situation. RESULTS: Before device insertion, all patients showed either a restrictive or a monophasic transmitral flow pattern. After device insertion, transmitral flow showed rapid beat to beat variation in each patient, from abnormal relaxation to restrictive patterns. However, when the average values obtained from 10 consecutive beats were considered, overall filling was significantly normalized from baseline, with early filling velocity falling from 87 +/- 31 to 64 +/- 26 cm/s (p < 0.01) and late filling velocity rising from 8 +/- 11 to 32 +/- 23 cm/s (p < 0.05), resulting in an increase in the late to early filling ratio from 0.13 +/- 0.18 to 0.59 +/- 0.38 (p < 0.01) and a rise in the atrial filling fraction from 8 +/- 10% to 26 +/- 17% (p < 0.01). The deceleration time (from 112 +/- 40 to 160 +/- 44 ms, p < 0.05) and the filling period corrected by the RR interval (from 39 +/- 8% to 54 +/- 10%, p < 0.005) were also significantly prolonged. In the computer model, asynchronous LV assistance produced significant beat to beat variation in filling indexes, but overall a normalization of deceleration time as well as other variables. CONCLUSIONS: With LV assistance, transmitral flow showed rapidly varying patterns beat by beat in each patient, but overall diastolic filling tended to normalize with an increase of atrial contribution to the filling. Because of the variable nature of the transmitral flow pattern with the assist device, the timing of the device cycle must be considered when inferring diastolic function from transmitral flow pattern.

Adult↗

Angiotensin-converting enzyme (ACE) inhibitors revert abnormal right ventricular filling in patients with restrictive left ventricular disease.

OBJECTIVES: Our aim was to determine mechanisms underlying abnormalities of right ventricular (RV) diastolic function seen in heart failure. BACKGROUND: It is not clear whether these right-sided abnormalities are due to primary RV disease or are secondary to restrictive physiology on the left side of the heart. The latter regresses with angiotensin-converting enzyme inhibition (ACE-I). METHODS: Transthoracic echo-Doppler measurements of left- and right-ventricular function in 17 patients with systolic left ventricular (LV) disease and restrictive filling before and 3 weeks after the institution of ACE-I were compared with those in 21 controls. RESULTS: Before ACE-I, LV filling was restrictive, with isovolumic relaxation time short and transmitral E wave acceleration and deceleration rates increased (p < 0.001). Right ventricular long axis amplitude and rates of change were all reduced (p < 0.001), the onset of transtricuspid Doppler was delayed by 160 ms after the pulmonary second sound versus 40 ms in normals (p < 0.001) and overall RV filling time reduced to 59% of total diastole. Right ventricular relaxation was very incoordinate and peak E wave velocity was reduced. Peak RV to right atrial (RA) pressure drop, estimated from tricuspid regurgitation, was 45+/-6 mm Hg, and peak pulmonary stroke distance was 40% lower than normal (p < 0.001). With ACE-I, LV isovolumic relaxation time lengthened, E wave acceleration and deceleration rates decreased and RV to RA pressure drop fell to 30+/-5 mm Hg (p < 0.001) versus pre-ACE-I. Right ventricular long axis dynamics did not change, but tricuspid flow started 85 ms earlier to occupy 85% of total diastole; E wave amplitude increased but acceleration and deceleration rates were unaltered. Values of long axis systolic and diastolic measurements did not change. Peak pulmonary artery velocity increased (p < 0.01). CONCLUSIONS: Abnormalities of RV filling in patients with heart failure normalize with ACE-I as restrictive filling regresses on the left. This was not due to altered right ventricular relaxation or to a fall in pulmonary artery pressure or tricuspid pressure gradient, but appears to reflect direct ventricular interaction during early diastole.

Angiotensin-Converting Enzyme Inhibitors↗

Organ growth in Rett syndrome: a postmortem examination analysis.

Rett syndrome is a disorder of unknown etiology in females that manifests as severe mental and motor retardation during the first years of life. A postnatal pattern of altered growth is its earliest clinical expression. Head growth decelerates during the first year of age and is followed by a decline in somatic (height/weight) growth. The decreased occipitofrontal circumference (OFC) is reflected in decreased brain size, and measurements of the dendrites of cortical neurons suggest that a developmental and growth arrest have occurred. To further document growth in Rett syndrome, measurements of organ weights, as recorded in 39 postmortem examination studies were compared with normal organ weights for females of comparable age and height. These organ weights suggest that the pattern of growth failure in Rett syndrome, as compared with other forms of mental handicap, such as Down syndrome and Turner's syndrome, may be unique. In Rett syndrome the rate of brain growth, as derived from OFC, decelerates after birth. The increment in normal brain weight after 4 years of age, the age of the first postmortem examinations, is not observed in the Rett brain. The heart, kidneys, liver, and spleen grow at the normally defined rate until 8-12 years of age, when their growth rate decelerates, but their growth continues achieving organ weights that are appropriate for the height of the female. Adrenal weights are normal. These observations suggest that despite a generalized decreased growth in Rett syndrome the brain may be preferentially affected in this syndrome.

Adolescent↗

Echocardiography in serial evaluation of left ventricular systolic and diastolic function: importance of image acquisition, quantitation, and physiologic variability in clinical and investigational applications.

Quantitative echocardiography is frequently used for serial evaluation of left ventricular performance. This prospective study was designed to determine the extent to which the acts of image acquisition and quantitation, and the subjects themselves, affect total variability in two-dimensional and Doppler echocardiographic indexes of left ventricular morphology and performance. Therefore, two technicians and two readers acquired and analyzed 60 echocardiograms from 15 normal subjects, each of whom was studied four times (twice on each of two visits). Analysis of variance based on generalizability theory was used to estimate the magnitude of these variability sources by calculating standard deviations (SD) and used to estimate their contribution to total variability. Of the two-dimensional echocardiographic indexes tested, ejection fraction varied least (SD, 6.6%) and left ventricular mass varied most (SD, 35.3 gm). Of the Doppler indexes, normalized early diastolic filling velocity integral varied least (SD, 8.4%) and deceleration time varied most (SD, 48.6 msec). Technical (image acquisition and quantitation) variability contributed most (and subject variability least) to total variability of stroke volume (68%) and deceleration time (67%). Technical variability contributed least (and subject variability most) to variability of ejection fraction (43%) and diastolic filling time (25%). The acts of image acquisition and quantitation varied more between than within technicians and readers. Peak atrial filling velocity and the ratio of peak early to atrial filling velocity significantly differed between technicians. Left ventricular ejection fraction, left ventricular mass, peak atrial filling velocity, early filling integral, and deceleration of early filling differed significantly between readers. Therefore the acts of image acquisition and quantitation, and subject variability itself, all contribute to total variability in echocardiographic indexes. Changes seen on clinical studies should be interpreted as abnormal only when exceeding the total variability originating from these sources. Generalizability theory allows one to tailor strategies to reduce variability. These strategies include increasing the number of observations, readers, and technicians for any given "baseline" study and using the same readers and technicians for sequential follow-up studies.

Adult↗

Two-dimensional transesophageal echocardiographic characterization of ventricular filling in real time by acoustic quantification: comparison with pulsed Doppler echocardiography.

Little is known about the accuracy of acoustic quantification (AQ) in the assessment of left ventricular diastolic filling. Therefore the objective of this study was to determine the ability of AQ applied to two-dimensional echocardiography to characterize left ventricular diastolic filling compared with Doppler echocardiography. In 80 unselected patients, AQ of left ventricular diastolic filling was performed during two-dimensional transesophageal echocardiography. Pulsed Doppler transthoracic echocardiography was performed at the tips of the mitral valve leaflet and the mitral annulus level. In 53 patients with synchronous systolic wall motion, significant correlations were found between AQ-derived versus Doppler-derived indexes obtained from the level of the mitral annulus of peak rate of increase in left ventricular diastolic area versus peak early filling velocity (r = 0.78; p < 0.0001), peak early/peak atrial rate of change in left ventricular area ratio versus peak early/peak atrial filling velocity ratio (r = 0.80; p < 0.0001), and percent atrial contributions to filling (r = 0.80; p < 0.0001). Correlations between acceleration time and deceleration time derived by AQ versus Doppler echocardiography were poor. Acoustic quantification-derived acceleration and deceleration times significantly underestimated analogous times derived by Doppler echocardiography at the mitral annulus level. Correlations obtained between AQ-derived indexes and Doppler echocardiography were better with pulsed Doppler performed at the mitral annulus level compared with the leaflet tips. In 27 patients with asynchronous systolic wall motion, the correlations between AQ-derived indexes and Doppler-derived indexes of the relative distribution of filling were similar to those of the group of subjects with synchronous wall motion. However, in patients with asynchronous wall motion the correlations between indexes of peak early filling velocity and rate worsened. In addition, no correlations were found between acceleration and deceleration times derived by the two techniques in subjects with asynchronous systolic wall motion. Acoustic quantification assessment of left ventricular diastolic filling accurately characterizes the distribution of diastolic filling compared with Doppler echocardiography. The presence of asynchronous systolic wall motion decreases the accuracy of the AQ method in assessing peak filling rate. The ultimate clinical application of AQ in the assessment of left ventricular diastolic filling is yet to be determined but appears promising.

Echocardiography↗

Left ventricular diastolic dysfunction in end-stage dilated cardiomyopathy: simultaneous Doppler echocardiography and hemodynamic evaluation.

Left ventricular diastolic dysfunction is an integral component of end-stage dilated cardiomyopathy. To better characterize this disorder we studied 15 patients undergoing catheterization during cardiac transplant screening evaluation. Pulsed-wave Doppler echocardiographic recordings of mitral inflow were obtained with simultaneous high-fidelity left ventricular and phase-corrected pulmonary capillary wedge pressures. Doppler-derived isovolumic relaxation times were within normal limits, despite a prolonged coefficient of relaxation (tau), and correlated with pulmonary capillary wedge--left ventricular crossover pressure. Peak velocity of early diastolic filling was similar to that reported in normal subjects and did not correlate with crossover pressure or tau. Early diastolic acceleration and deceleration times were shortened compared with reported normal values. Acceleration time correlated with mean negative dP/dt from mitral valve opening to left ventricular minimum pressure and with crossover pressure, and deceleration time correlated with mean dP/dt from left ventricular minimum pressure to the peak of the rapid filling wave. Late diastolic filling at atrial contraction was absent in 12 patients, all of whom had a significant early diastolic rapid filling wave and an elevated end-diastolic pressure. Despite an increase in pulmonary capillary wedge pressure during atrial contraction, the failing ventricles were unable to generate detectable forward transmitral flow. Poor cardiac pump function was shown by low left ventricular stroke volume, which correlated with the diastolic flow velocity integral. Thus, in end-stage cardiomyopathy, the transmitral flow velocity pattern is characterized by normal peak early filling velocity, low normal isovolumic relaxation time, shortened acceleration and deceleration times of early diastolic flow, decreased early flow velocity integral, and absent or decreased filling during atrial contraction. This pattern reflects interaction between elevated transmitral driving pressure and the compromised relaxation and compliance of a left ventricle functioning on an elevated pressure-volume curve.

Adult↗

Mitral flow velocity curves as a function of different loading conditions: evaluation by intraoperative transesophageal Doppler echocardiography.

Transesophageal pulsed wave Doppler echocardiography was performed intraoperatively on 10 patients undergoing coronary artery bypass operation. Mitral flow velocity curves and hemodynamic values were recorded during control conditions and intravenous infusion of (1) nitroglycerin, (2) phenylephrine, and (3) fluids. During nitroglycerin infusion blood pressure and wedge pressure decreased, peak filling velocity decreased, and deceleration time increased compared with control values. During infusion of phenylephrine blood pressure increased, there was a trend toward a decrease in peak filling velocity, and deceleration time increased. During infusion of fluids wedge pressure increased, deceleration time decreased, and peak filling velocity increased. Mitral flow velocity curves are therefore altered by changes in hemodynamic loading conditions.

Adult↗

Effect of left and right lateral decubitus positions on Doppler mitral flow patterns in patients with severe congestive heart failure.

Patients with severe congestive heart failure (SCHF) complain of increasing dyspnea when adopting left lateral decubitus (LLD) position that improves when turning over to the right lateral decubitus (RLD) position (trepopnea). We hypothesize that this clinical sign is due to changes in left ventricular (LV) preload and such changes would modify mitral flow. This study analyzes the effect of RLD and LLD positions on LV filling pattern assessed by Doppler echocardiography in patients with SCHF. Seventeen men and seven women (aged 56.22 +/- 18.52 years) with SCHF in New York Heart Association functional class III-IV and nine normal control subjects (eight men and one woman aged 56.96 +/- 18.14 years) were studied. We analyzed early (E) and late (A) LV filling velocities, E/A ratios, deceleration time, mitral time-velocity integral in each decubitus position, and the differences between them. Patients with SCHF have smaller mitral time-velocity integral, shorter deceleration time, greater E velocity and E/A ratio, and lower A velocity in LLD position than do normal control subjects. On assuming RLD position, patients with SCHF show decreases in E velocity and E/A ratio and lengthening of the deceleration time, suggesting a decrease in LV preload on changing position. This pathophysiologic mechanism may explain why patients with SCHF willingly adopt RLD position.

Adult↗

Doppler echocardiographic evaluation of left ventricular end-diastolic pressure in patients with coronary artery disease.

Pulmonary venous flow velocity recordings have been found to be useful in complementing the information obtained from the mitral flow velocity and improving the assessment of left ventricular diastolic pressures. This study was undertaken to evaluate the accuracy of mitral flow and pulmonary venous flow variables, recorded by transthoracic Doppler echocardiography, in estimating left ventricular end-diastolic pressure (LVEDP) in 101 consecutive patients with coronary artery disease undergoing diagnostic left-sided heart catheterization. Patients were assigned to three groups according to the values of LVEDP (group 1, < or = 12 mm Hg; group 2, between 13 and 19 mm Hg; and group 3, > or = 20 mm Hg). LVEDP correlated most strongly with systolic fraction of pulmonary venous flow (r = -0.76), isovolumic relaxation time (r = -0.76), E/A ratio (r = 0.74), deceleration time of early mitral flow (r = -0.74), and mitral A wave duration/pulmonary venous A wave duration (AD/PVAD) ratio (r = -0.70) (p < 0.01 for each correlation). Discriminant analysis demonstrated that deceleration time, AD/PVAD ratio, and isovolumic relaxation time were major determinants of LVEDP, with 87.1% of patients correctly assigned to study groups; 97% of patients of group 1 and 95% of patients of group 3 were identified, whereas the accuracy in identifying the patients of group 2 was lower (41%). Deceleration times of 140 msec or less and AD/PVAD ratios of 0.9 or less were the best cutoff points in predicting an LVEDP of 20 mm Hg or greater. Multiple linear regression analysis demonstrated that the combination of mitral flow and pulmonary venous flow velocity variables provided a better estimation of LVEDP compared with that obtained from mitral flow velocity recordings alone (r = 0.88 versus 0.79; F test, 20.6). We conclude that combined analysis of mitral flow and pulmonary venous flow velocity provides, in patients with coronary artery disease, a noninvasive estimation of LVEDP with an accurate prediction of pressures of 12 mm Hg or less and 20 mm Hg or greater and less accurate prediction of intermediate values.

Adult↗

Diastolic function and tachycardia in hypertensive children.

We investigated the prevalence and potential predictors of Doppler echocardiographic evidence of diastolic function in untreated hypertensive children. Doppler and M-mode echocardiographic values from 42 children (mean age 13, range 5-17 years) from a pediatric hypertension clinic were retrospectively reviewed and compared to data from 39 age and gender matched normotensive children in a control group. Compared to the participants in the control group, hypertensive patients had increased mean body mass index (29 v 19 kg/M2, P < .0001), peak mitral A velocity (57 v 42 cm/sec, P < .0001), isovolumic relaxation time (65 v 42 msec, P < .0001, resting heart rate (90 v 74 bpm, P < .0001), mitral E deceleration time (150 v 137 msec, P = .006), indexed left ventricular mass index (32 v 26 g/M2.7, P < .0001), relative left ventricular wall thickness (0.32 v 0.29, P = .02), and decreased ratio of peak mitral E velocity/peak mitral A velocity (1.7 v 2.1, P = .0001). Mean age, height, mitral E velocity, mitral A deceleration time, fractional shortening, and indexed left ventricular diastolic dimension were similar in patients and control group children. In the hypertensive patients, multivariate analysis demonstrated that heart rate (P = .0008) and systolic blood pressure (P = .03) were significant predictors of peak A velocity. In addition, heart rate (P = .0003), body mass index (P = .04), and indexed left ventricular diastolic dimension (P = .04) predicted the ratio of peak E/peak A velocity. None of the measures of diastolic function correlated with left ventricular mass index or relative wall thickness. Furthermore, none of the analyzed variables predicted isovolumic relaxation time or mitral E deceleration time. We conclude that untreated hypertensive children have Doppler indices suggestive of impaired left ventricular relaxation. Resting heart rate was the strongest predictor of abnormal diastolic indices.

Adolescent↗

Transforming growth factor beta and myocardial dysfunction following heart transplantation.

OBJECTIVE: We analyzed the role of transforming growth factor-beta (TGF-beta), a fibrogenic cytokine, in the development of left ventricular diastolic dysfunction following heart transplantation. METHODS: We studied 152 heart transplant recipients who had survived for at least 24 months. We compared histopathological findings (staining of endomyocardial biopsy specimens using Hematoxylin Eosin and polyclonal antibodies), left ventricular function (Doppler echocardiography) and clinical course (NYHA status). Patients are classified into group A (n=56 recipients) with immunohistochemical TGF-beta staining score >7 and group B (n=96 recipients) with a staining score <7. RESULTS: Doppler echocardiographic evaluation demonstrated greater impairment of left ventricular diastolic function in recipients with higher TGF-beta staining score. The average mitral deceleration time was 129+/-6 ms for recipients group A compared to 167+/-15 ms in group B. While the mean isovolumic relaxation time was 65+/-8 ms for patients in group A compared with 82+/-6 ms for recipients in group B (P=0.0004 and 0.005, respectively). Immunohistochemical scoring correlated inversely with both mitral deceleration and isovolumic relaxation times (r=-0.74, P=0.0004 and r=-0.66, P=0.004, respectively). Mean NYHA status was 2.7+/-1.3 for group A compared to 1.17+/-0.4 in group B was (P=0.002). Five years follow-up revealed persistent left ventricular diastolic impairment for recipients with higher immunohistochemical staining score. Mitral deceleration time and isovolumic relaxation time were 118+/-11 and 62+/-7 ms for group A compared to 156+/-12 and 80+/-5 ms for group B, P=0.006 and P=0.01, respectively. The actuarial development of subsequent coronary artery disease (> 50% stenosis) was 17 and 29% for recipients in group A compared to 4 and 6% for recipients in group B at 3 and 5 years follow-up, respectively (P=0.01 and P=0.005, respectively). CONCLUSIONS: TGF-beta expression in cardiac allografts is associated with impaired graft function and limited survival. The pathogenesis of diastolic dysfunction may be an aberrant repair process following rejection due to increased TGF-beta expression in transplant recipients.

Biopsy↗

Abnormalities of the fetal heart rate in preterm deliveries are associated with acute intra-amniotic infection.

OBJECTIVE: To evaluate whether fetal heart rate (FHR) patterns obtained in nonstress testing within 24 hours of delivery in patients with preterm delivery were associated with histologic acute infection, and if so, whether the associations are with maternal as opposed to fetal acute inflammation (acute amnionitis versus acute umbilical vasculitis). METHODS: The data set included 351 consecutive patients delivering from 22 to 32 weeks' gestation (excluding cases of preeclampsia; nonhypertensive abruption; stillbirth; fetal structural and karyotypic anomalies; Rh isoimmunization and hydrops fetalis; and maternal diabetes and hypertension). Severe variable decelerations were defined as FHR < 70 beats per minute lasting > 60 seconds, and decreased fetal heart variability included both reduced beat-to-beat variability and long-term heart rate cyclicity. Amniotic fluid volume was graded sonographically as part of a fetal biophysical profile. Acute inflammation of amnion (indicative of maternal inflammation) and umbilical cord (fetal inflammation) were scored by a single pathologist blinded to clinical data. RESULTS: Severe FHR variable decelerations were directly related to acute amnionitis (P = .012) and acute umbilical vasculitis (P = .0013). In preterm labor, decreased FHR variability was related to acute amnionitis (P = .005). All observations were independent of amniotic fluid volume or use of tocolytic agents. CONCLUSIONS: Severe variable decelerations and decreased FHR variability at < 32 weeks' gestation are related to histologic evidence of acute inflammation.

Adult↗