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B D Hoit

Publications and source records attributed to B D Hoit.

88 records · Page 5Linked to original sources

Hemodynamic efficacy of rapid saline infusion and dobutamine versus saline infusion alone in a model of cardiac rupture.

Despite recent reports describing survival after cardiac rupture, the effectiveness of circulatory support while awaiting definitive surgical treatment is controversial. To assess the efficacy of volume expansion and pharmacologic support in cardiac tamponade due to cardiac rupture, a model of hemorrhagic cardiac tamponade was developed and treatment with rapid saline infusion and dobutamine was compared with rapid saline infusion alone in 15 closed chest dogs. A right ventricular wound of reproducible size was produced by deflating an aortic valvuloplasty balloon that had previously been passed by way of the internal jugular vein into the pericardial space and through a stab wound in the right ventricular free wall. Hemodynamic values were compared at baseline, during tamponade and after a rapid infusion (1 liter at 100 ml/min) of either saline solution alone or saline solution plus dobutamine (20 micrograms/kg per min). Atrial and pericardial pressures increased significantly in both groups. Mean arterial pressure, cardiac output and stroke volume increased with combined saline and dobutamine infusion to values similar to those at baseline (91 +/- 19%, 114 +/- 43% and 94 +/- 37% of baseline, respectively). In contrast, saline infusion alone caused a small increase in cardiac output but failed to significantly increase mean arterial pressure or stroke volume (76.8 +/- 14.2%, 55 +/- 18% and 51 +/- 17% of baseline, respectively). Combined rapid infusion of saline solution and dobutamine infusion has a more beneficial hemodynamic effect and may be more effective than rapid saline infusion alone in resuscitating patients with hemorrhagic cardiac tamponade due to cardiac rupture.

Animals↗

Independent influence of left atrial pressure on regional peak lengthening rates.

We examined the influence of left atrial pressure on regional peak lengthening rates in six open-chest dogs. Sonomicrometers were implanted in the midwall of the anterior apex, the midanterior wall, and the posterior wall of the left ventricle. A bolus of blood was injected into the left atrium during ventricular systole by a computer-driven power injector to produce an isolated increase in left atrial pressure without altering the peak rate of left ventricular pressure fall, regional systolic shortening, or end-systolic length. Several left atrial injections of different volumes were performed over a wide range of left ventricular end-diastolic pressure (LVEDP) (from 7 to 22 mmHg). The peak lengthening rate increased in direct proportion to the increase of left atrial pressure. This effect was significantly greater in the apical than midanterior or posterior sites and decreased at all sites at higher LVEDP. Similar size left atrial injections produced greater increases in atrioventricular pressure gradient but smaller increases in left atrial pressure at low compared with high LVEDP. We conclude that left atrial pressure is an independent determinant of regional peak lengthening rates in the intact left ventricle. The influence of left atrial pressure is attenuated at higher LVEDP because of a smaller change in the diastolic pressure gradient, although viscoelastic effects may play a role.

Animals↗

Cardiac tamponade in left ventricular dysfunction.

Echocardiographic and hemodynamic data were measured in closed-chest dogs during graded cardiac tamponade (pericardial pressure 5, 10, and 15 mm Hg) before and after production of diffuse ischemic left ventricular dysfunction. Left ventricular dysfunction was produced by intracoronary injection of nonradioactive microspheres (54 +/- 3.9 mm diameter). Changes in left atrial pressure with cardiac tamponade were influenced by coexisting left ventricular dysfunction. Left atrial pressure increased with tamponade and was equal to pericardial pressure before left ventricular dysfunction was produced. However, after left ventricular dysfunction was produced, left atrial pressure was significantly higher than pericardial pressure before tamponade, but it fell toward pericardial pressure when tamponade was produced. Pulsus paradoxus (greater than 10 mm Hg) was present in all animals with cardiac tamponade before left ventricular dysfunction but in only one animal afterward. During each level of tamponade, the inspiratory fall of aortic systolic pressure was greater before than with left ventricular dysfunction. The slope of the linear regression between pericardial pressure and millimeters of mercury of inspiratory fall in aortic systolic pressure was significantly greater before than with left ventricular dysfunction (0.74 +/- 0.12 versus 0.32 +/- 0.12, p less than 0.05). Left ventricular dysfunction caused a leftward and upward shift of the pericardial pressure-volume relation. As a result, right atrial and ventricular collapse occurred with significantly smaller volumes of pericardial fluid after than before left ventricular dysfunction. We conclude that pulsus paradoxus may be absent in cardiac tamponade with coexisting left ventricular dysfunction and unequal filling pressures. Echocardiographic signs of cardiac tamponade may occur with small effusions in the presence of left ventricular dysfunction.

Animals↗

Imaging the pericardium.

Noninvasive imaging has profoundly altered our ability to diagnose and manage patients with suspected pericardial disease. Although pericardial involvement may first become apparent on a chest radiography, echocardiography (M-mode, 2-D, and Doppler) is the procedure of choice for identifying and characterizing pericardial disease. CT and MRI frequently provide complementary information and in certain instances are necessary for diagnosis. Studies that compare diagnostic accuracy in subsets of patients with pericardial disease are clearly needed, but availability, safety, and cost considerations will influence the choice of procedure. Regardless of the imaging study selected, it is imperative that the results be interpreted in the context of the clinical examination.

Cardiac Tamponade↗

Instantaneous transmitral flow using Doppler and M-mode echocardiography: comparison with radionuclide ventriculography.

To improve the accuracy of Doppler echocardiographic indices of left ventricular filling, we derived two indices of instantaneous transmitral flow with the use of Doppler velocities and M-mode echocardiography. These indices were calculated from the product of pulsed Doppler mitral velocities and either the excursion of the anterior mitral leaflet or the separation of both mitral leaflets as measures of the changing mitral orifice area. The derived flow indices and the mitral velocities alone were compared to left ventricular filling as determined by radionuclide ventriculography in 24 patients. When compared as areas under the matched decile divisions of the derived filling sequences by linear regression analysis, the relationship for combined Doppler and M-mode versus radionuclide left ventricular filling was closer to the line of identity (slope = 0.98 and 0.94 using the anterior mitral leaflet and both mitral leaflets, respectively, both p = NS versus the line of identity) than was the relationship for mitral velocities alone versus radionuclide left ventricular filling (slope = 0.74, p less than 0.05 versus the line of identity). The instantaneous mitral volume flow indices more closely resemble the time course and shape of radionuclide left ventricular filling curves than do mitral velocities alone, and the application of these indices should assist the quantitative description by Doppler echocardiography of left ventricular filling.

Aged↗

Doppler color flow mapping studies of jet formation and spatial orientation in obstructive hypertrophic cardiomyopathy.

To help clarify the mechanism of outflow tract obstruction and systolic anterior motion of the anterior leaflet of the mitral valve and their relation to the geometry of the left ventricle, we studied left ventricular outflow tract flow in 20 patients with hypertrophic cardiomyopathy (HCM) using two-dimensional Doppler flow mapping. We compared our results with outflow tract flow in 10 patients with isolated valvular aortic stenosis, (AS) and with those in 10 healthy volunteers. In HCM, a 94- to 145-degree angle (mean 111.4 +/- 11.9 degrees) developed between the direction of left ventricular outflow tract flow acceleration and aortic valve outflow, resulting in posterolaterally directed left ventricular outflow jets. The angle of the outflow jet and the peak velocity of the jet measured with continuous wave Doppler (as an indicator of the severity of obstruction) correlated well (r = -0.81, SEE = 7.8 degrees). Jet narrowing during ejection measured just proximal to the point of systolic anterior motion was 42 +/- 11% in HCM and was weakly correlated with peak jet velocity (r = 0.61, SEE = 8.9 degrees). Aliasing of left ventricular outflow occurred proximal to systolic anterior motion of the mitral valve, and color M-mode demonstrated temporal and spatial flow acceleration proximal to systolic anterior motion, providing evidence for obstruction at that site. In AS, left ventricular outflow tract jets were more parallel to the axis of aortic outflow (129 to 153 degree, 138.4 +/- 8.1 degrees). Jet narrowing was only 8 +/- 5% compared to HCM (both p less than 0.05), and flow acceleration occurred proximal to the stenotic valve.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Sources of variability for Doppler color flow mapping of regurgitant jets in an animal model of mitral regurgitation.

To determine whether Doppler color flow mapping could be used to quantify changing levels of regurgitant flow and define the technical variables that influence the size of color flow images of regurgitant jets, nine stable hemodynamic states of mitral insufficiency were studied in four open chest sheep with regurgitant orifices of known size. The magnitude of mitral regurgitation was altered by phenylephrine infusion. Several technical variables, including the type of color flow instrument (Irex Aloka 880 versus Toshiba SSH65A), transducer frequency, pulse repetition frequency and gain level, were studied. Significant increases in the color flow area, but not in color jet width measurements, were seen after phenylephrine infusion for each regurgitant orifice. For matched levels of mitral regurgitation, an increase in gain resulted in a 125% increase in color flow area. An increase in the pulse repetition and transducer frequencies resulted in a 36% reduction and a 28% increase in color flow area, respectively. Jet area for matched regurgitant volumes was larger on the Toshiba compared with the Aloka instrument (5.2 +/- 3.1 versus 3.2 +/- 1.2 cm2, p less than 0.05). Color flow imaging of mitral regurgitant jets is dependent on various technical factors and the magnitude of regurgitation. Once these are standardized for a given patient, the measurement of color flow jet area may provide a means of making serial estimates of the severity of mitral insufficiency.

Animals↗

Calculating cardiac output from transmitral volume flow using Doppler and M-mode echocardiography.

To simplify transmitral volume flow determination by Doppler echocardiography, a formula for calculating mean mitral valve orifice area using M-mode echocardiography without any 2-dimensional measurements was developed and evaluated in this study. The maximal mitral orifice area was assumed to be circular and its diameter was calculated from the maximal M-mode mitral leaflet separation. The maximal area was multiplied by the mean to maximal anterior mitral leaflet excursion ratio to correct for phasic changes in flow orifice area during ventricular filling. This measurement had a high correlation (r = 0.97, standard error of the estimate + 0.26 cm2) with mean mitral valve orifice area calculated from frame-by-frame analysis of short-axis 2-dimensional echoes in a select group of 10 normal volunteers and 10 patients with cardiomyopathy who had very high quality images of the mitral valve leaflet tips. Cardiac output calculated using the new method for orifice area estimation combined with apex view mitral valve Doppler velocities was then validated in 48 consecutive patients undergoing thermodilution cardiac output determinations with a close correlation between Doppler and thermodilution cardiac output (2.3 to 6.1 liter/min, r = 0.93, standard error of the estimate = 362 ml). The correlation improved when 12 patients with mild mitral insufficiency were excluded (r = 0.95). The M-mode echocardiogram-derived mitral valve orifice method combined with Doppler mitral valve velocities is accurate, easy to perform, has a high success rate and should increase the applicability of Doppler echocardiography for estimation of cardiac output.

Adult↗

Doppler assessment of changes in right-sided cardiac hemodynamics after pulmonary thromboendarterectomy.

It is not known whether Doppler echocardiography can accurately follow changes in right-sided cardiac hemodynamics after a therapeutic intervention in patients with pulmonary artery (PA) hypertension. Therefore, Doppler measurements of the maximal velocity of the tricuspid regurgitant jet and the acceleration time of the PA velocity profile were obtained in 28 patients before and after pulmonary thromboendarterectomy for chronic thromboembolic PA hypertension. Doppler values were compared with hemodynamic variables obtained at cardiac catheterization. Postoperatively, decreases in mean PA pressure (50 +/- 14 to 28 +/- 8 mm Hg), transtricuspid systolic pressure difference (69 +/- 21 to 36 +/- 14 mm Hg) and Doppler measurement of the maximal velocity of the tricuspid regurgitant jet (4.1 +/- 0.7 to 2.7 +/- 0.5 m/s) were noted, while acceleration time increased (57 +/- 16 to 94 +/- 18 ms, all p less than 0.001) compared with preoperative values. For the population as a whole, the calculated systolic transtricuspid pressure difference determined from the maximal velocity of tricuspid regurgitation correlated well with the catheterization systolic transtricuspid pressure difference (r = 0.93, p less than 0.001) and the acceleration time correlated with mean PA pressure (r = -0.81, p less than 0.001). More importantly, the change in the maximal velocity of tricuspid regurgitation for postoperative patients was found to correlate with the change in catheterization systolic transtricuspid pressure difference (r = 0.82, p less than 0.001), while the change in acceleration time correlated weakly with the change in mean PA pressure (r = -0.41, p = 0.053).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Functional consequences of acute anterior vs. posterior wall ischemia in canine left ventricles.

We compared the consequences of acute anterior and posterior wall ischemia on regional left ventricular function in seven open-chest dogs. Circumferentially oriented sonomicrometers were implanted in the midwall of the anterior and posterior left ventricle. The left anterior descending (LAD) and left circumflex (LCX) coronary arteries were each occluded for 3 min, with 45 min of reperfusion between the two occlusions. The ischemic areas at risk, as assessed by postmortem perfusion techniques, were similar for anterior (34.5 +/- 12.5 g) and posterior (32.3 +/- 9.4 g) wall ischemia. Both occlusions produced a similar increase in end-diastolic pressure. After LAD occlusion, total segment shortening (end diastole to aortic valve closure) in the nonischemic posterior wall increased from 8.0 +/- 3.9 to 10.8 +/- 4.4%, solely caused by increased isovolumic shortening. In contrast, with LCX occlusion, total segment shortening in the nonischemic anterior wall increased significantly more, from 10.5 +/- 3.8 to 14.6 +/- 4.2% caused by nearly equal increases in isovolumic and ejection phase shortening. Thus, with both LAD and LCX occlusions, there was increased shortening in nonischemic areas during isovolumic systole, which was "wasted" in paradoxically stretching the ischemic zone. However, a compensatory increase in nonischemic area ejection phase shortening occurred only with LCX occlusions. These findings may explain the greater functional impairment that occurs with LAD than LCX occlusions.

Acute Disease↗

Regional variation in pericardial contact pressure in the canine ventricle.

We studied eight open-chest dogs to determine whether there is regional variation in pericardial contact pressure (PCP). Flat, air-filled balloons were used to measure PCP simultaneously over the lateral walls of the right and left ventricles while cardiac volume was varied by dextran infusion. End-diastolic and mean PCP were significantly higher over the left than right ventricle at high (20.3 +/- 1.0 mmHg) and middle levels (13.7 +/- 0.9 mmHg) of left atrial pressure. At high left atrial pressures, the end-diastolic PCP over the lateral left ventricle was 9.1 +/- 2.4 mmHg compared with 4.3 +/- 2.3 mmHg over the lateral right ventricle (P less than 0.05). At middle levels of left atrial pressures, end-diastolic PCP was 6.2 +/- 3.5 mmHg over the left ventricle and 1.5 +/- 2.4 mmHg over the right ventricle (P less than 0.05). These variations in PCP persisted after severing the pericardial diaphragmatic attachments and after turning the dogs such that one or the other balloon was dependent. Regional distribution of PCP was studied by positioning a single balloon sequentially at multiple ventricular sites. PCP was consistently higher over the lateral wall of the left ventricle than either the anterior or posterior walls of the right or left ventricle. After aortic occlusion, end-diastolic PCP increased more over the left than right ventricle. In contrast, with pulmonary artery occlusion, end-diastolic PCP increased more over the right than left ventricle. Pericardial pressure varies regionally, and a single pericardial pressure may be an oversimplification when used to describe pericardial restraint on the cardiac volume.

Animals↗

Influence of obesity on morbidity and mortality after acute myocardial infarction.

The influence of being overweight or obese on hospital and late (1 year) mortality and reinfarction was studied in 1760 patients with acute myocardial infarction. Body mass index (BMI) was used to categorize patients as normal weight (BMI less than 25), overweight (BMI 25 to 30), and obese (BMI greater than 30). Clinical features and prognosis were compared in 658 normal weight patients, 884 overweight patients, and 218 obese patients. Complications during hospitalization and 1-year reinfarction rates following discharge were similar among the weight subsets. Hospital mortality was 13% in obese patients, similar to the 14% hospital mortality in normal weight patients, but significantly more than that in overweight patients (9%, p less than 0.05). When stratified according to age, 30% of obese patients greater than or equal to 65 years died in the hospital, compared to 13% of overweight patients (p less than 0.001), and 17% of normal weight patients (p less than 0.01). In patients less than 65 years, the obese group had a 6% mortality compared to a hospital mortality of 5% in overweight and 8% in normal weight groups (NS). In a multivariate analysis, obesity was an independent predictor of hospital death in the older, but not in the younger patient subset. One-year mortality for patients discharged from the hospital was significantly less in obese than in normal weight patients (7% vs 13%, p less than 0.05), but not different from the 11% mortality rate in overweight patients. Differences in mortality disappeared when patients were age stratified.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Myocardial infarction in young patients: an analysis by age subsets.

We examined, in age subsets, 2643 patients with acute myocardial infarction. Clinical features and 1 year morbidity and mortality were compared in 203 young patients (less than 45 years), 1671 patients 46 to 70 years old, and 769 elderly patients (greater than 70 years). Ninety-two percent of young patients were men, and a family history of premature coronary artery disease was more common in young patients (41% compared with 28% of middle-aged and 12% of elderly patients). More young patients were currently smoking cigarettes (82% compared with 56% of middle-aged and 24% of elderly patients), and only 8% of young patients had never smoked. Previous myocardial infarction and history of angina pectoris or congestive heart failure were less common (p less than .001) in the young patients than in middle-aged and elderly patients. In-hospital mortality was only 2.5% for young patients, compared with 9.0% in middle-aged and 21.4% in elderly patients (both p less than .001). Postdischarge 1 year mortality was also strikingly low in young patients, at 2.6% compared with 10.3% in middle-aged and 24.4% in elderly patients. The incidence of reinfarction during the 1 year of follow-up was similar in all subsets. The statistical significance of 65 variables as predictors of 1 year mortality and reinfarction was tested and the following found to be significant (p less than .05): hospital discharge on antiarrhythmic drugs, digoxin, or diuretics; history of previous myocardial infarction or congestive heart failure; chest x-ray findings of heart failure; low ejection fraction; and atrial fibrillation. Thus, young patients entering the hospital have an excellent 1 year prognosis, but those with prior infarction in whom there are selected abnormal findings at hospital discharge comprise a subgroup that may benefit from early aggressive management.

Adult↗

Pulmonary venous flow in cardiac tamponade: influence of left ventricular dysfunction and the relation to pulsus paradoxus.

The pattern of left atrial filling was studied in nine closed-chest dogs during cardiac tamponade before and after production of microembolic left ventricular dysfunction produced by intracoronary injection of 54 +/- 4 microns (SD) microspheres. With cardiac tamponade, a significant increase in the ratio of systolic/diastolic pulmonary venous flow velocity integral both before (1.65 +/- 0.24 versus 2.77 +/- 0.43 [SE], p less than 0.05) and after production of left ventricular dysfunction (0.57 +/- 0.12 versus 1.77 +/- 0.44, p less than 0.05) was seen. Compared with baseline, cardiac tamponade caused a significant inspiratory decrease in systolic pulmonary venous velocity both before (7.3 +/- 2.0 versus 1.2 +/- 1.4 cm/sec) and after left ventricular dysfunction (3.4 +/- 0.4 versus 1.0 +/- 0.9 cm/sec, both p less than 0.05). The magnitude of respiratory variation (expiration-inspiration) of the pulmonary venous flow velocity integral with tamponade was significantly greater before than after left ventricular dysfunction (1.6 +/- 0.2 cm versus 0.8 +/- 0.2 cm, p less than 0.05). A significant correlation was found between the inspiratory fall in aortic systolic pressure and the flow velocity integral of pulmonary venous flow before left ventricular dysfunction (r = 0.58, p less than 0.05). After coronary embolization, neither pulsus paradoxus nor significant respiratory variation (expiration-inspiration) of the pulmonary venous flow integral was observed with cardiac tamponade. In this model of cardiac tamponade and left ventricular dysfunction, left atrial filling occurs predominantly during ventricular systole. These changes may be helpful in recognizing hemodynamically significant pericardial effusion and have implications for the pathophysiology of cardiac tamponade.

Animals↗

Load independence of radionuclide diastolic filling measurements in acute coronary occlusion.

BACKGROUND: An accurate noninvasive method for measuring the effects of pharmacologic agents on active relaxation of the left ventricle would provide a valuable tool for monitoring the treatment of diastolic heart failure related to coronary artery disease. METHODS AND RESULTS: The time constant of isovolumic relaxation (T) and the left atrioventricular gradient were measured with micromanometer catheters and diastolic left ventricular filling variables were measured with radionuclide ventriculography in nine anesthetized, open-chest dogs with an acute coronary artery occlusion. Infusion of the positive inotropic drug dobutamine hydrochloride (5 to 10 micrograms/kg/min) resulted in a 35% shortening of T and a 37% increase in the radionuclide first-half filling fraction (both p < 0.05), but no change in the left atrioventricular gradient. Conversely, infusion of the alpha-adrenergic vasoconstrictor phenylephrine hydrochloride (20 to 40 micrograms/min) augmented left ventricular load, increasing the atrioventricular gradient by 45%, but had no significant effect on T or the first-half filling fraction. Infusion of the direct-acting vasodilator, sodium nitroprusside (80 to 120 micrograms/min), was accompanied by a 14% lengthening of T with a corresponding 28% decrease in the first-half filling fraction (both p < 0.05). CONCLUSION: In an anesthetized, open-chest canine model of acute myocardial ischemia, the radionuclide first-half filling fraction reflects pharmacologically induced changes in the lusitropic state of the left ventricle with relative independence of loading conditions.

Acute Disease↗