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A comparison of ventricular function during high right ventricular septal and apical pacing after his-bundle ablation for refractory atrial fibrillation.

This study compares LV performance during high right ventricular septal (RVS) and apical (RVA) pacing in patients with LV dysfunction who underwent His-bundle ablation for chronic AF. We inserted a passive fixation pacing electrode into the RVA and an active fixation electrode in the RVS. A dual chamber, rate responsive pulse generator stimulated the RVA through the ventricular port and the RVS via the atrial port. Patients were randomized to initial RVA (VVIR) or RVS (AAIR) pacing for 2 months. The pacing site was reversed during the next 2 months. At the 2 and 4 month follow-up visit, each patient underwent a transthoracic echocardiographical study and a rest/exercise first pass radionuclide ventriculogram. We studied nine men and three women (mean age of 68 +/- 7 years) with congestive heart failure functional Class (NYHA Classification): I (3 patients), II (7 patients), and III (2 patients). The QRS duration was shorter during RVS stimulation (158 +/- 10 vs 170 +/- 11 ms, P < 0.001). Chronic capture threshold and lead impedance did not significantly differ. LV fractional shortening improved during RVS pacing (0.31 +/- 0.05 vs 0.26 +/- 0.07, P < 0.01). RVS activation increased the resting first pass LV ejection fraction (0.51 +/- 0.14 vs 0.43 +/- 0.10, P < 0.01). No significant difference was observed during RVS and RVA pacing in the exercise time (5.6 +/- 3.2 vs 5.4 +/- 3.1, P = 0.6) or the exercise first pass LV ejection fraction (0.58 +/- 0.15 vs 0.55 +/- 0.16, P = 0.2). The relative changes in QRS duration and LV ejection fraction at both pacing sites showed a significant correlation (P < 0.01). We conclude that RVS pacing produces shorter QRS duration and better chronic LV function than RVA pacing in patients with mild to moderate LV dysfunction and chronic AF after His-bundle ablation.

Aged↗

Tissue Doppler imaging assessment of long axis left ventricular function in hypertensive patients with concentric left ventricular hypertrophy: differential diagnosis with hypertrophic cardiomyopathy.

BACKGROUND: The differential diagnosis between hypertrophic cardiomyopathy and hypertensive heart disease has clinical, therapeutic and prognostic implications, but is not always easy with conventional echocardiography. Tissue Doppler imaging of the mitral annulus allows the detailed study of long axis left ventricular function in hypertrophic cardiomyopathy and may be useful in the differential diagnosis. METHODS: 23 patients with non-obstructive hypertrophic cardiomyopathy and 25 hypertensive patients with concentric left ventricular hypertrophy with similar age, body surface and heart rate were studied with pulsed tissue Doppler imaging of the 4 sides of the mitral annulus (septal, lateral, inferior, anterior) in 4 and 2 chamber views. In each wave (systolic-s, rapid filling-e, atrial contraction-a) we analyzed velocities, time intervals and velocity-time integrals, as well as heterogeneity and asynchrony. Data were compared among the different sides in each group, between groups and with conventional Doppler data. RESULTS: In contrast to hypertensive patients, hypertrophic cardiomyopathy patients showed: 1--Systolic function: lower "s" wave velocities and integrals, higher systolic heterogeneity, longer isovolumic relaxation time and higher PEP/LVET (pre ejection period/left ventricular ejection time). 2--Diastolic function: lower "e" and "a" wave, higher "a" and "e/a" heterogeneity index, higher percentage of annular sides with e/a > or = l, longer isovolumic relaxation time and time to peak e, and higher diastolic asynchrony. Some of these abnormalities occurred in annular sides adjacent to non-hypertrophied walls. CONCLUSIONS: This study shows that: 1--Long axis systolic and diastolic left ventricular function are significantly different between hypertrophic cardiomyopathy patients and hypertensive patients with concentric left ventricular hypertrophy. 2--These functional differences occur in the velocity domain (with heterogeneity), in the time domain (with asynchrony) and also in velocity time integrals. 3--Long axis systolic and diastolic dysfunction occur in annular sides contiguous to hypertrophied and non-hypertrophied walls, enhancing the role of tissue Doppler imaging in the differential diagnosis between these diseases.

Aged↗

Assessment of viable myocardium and prediction of postoperative improvement in left ventricular function in patients with severe left ventricular dysfunction by quantitative planar stress-redistribution-reinjection 201-T1 imaging.

A noninvasive approach to determine viable but asynergic myocardium will be clinically significant in identifying patients with coronary artery disease and severe left ventricular dysfunction who will benefit most from coronary bypass surgery. Accordingly, 12 patients (mean ejection fraction 0.32 +/- 0.03) underwent quantitative planar stress-redistribution-reinjection thallium scintigraphy and radionuclide ventriculography before and 8 weeks after revascularization for viability and segmental and global left ventricular function assessment, respectively. Reinjection scan showed new fill-in in 63% of segments without redistribution. Postoperative improvement in perfusion and function of asynergic segments were significantly better in viable compared to nonviable segments (P < 0.001, P < 0.01, respectively) with a strong correlation between improvement in 201-T1 uptake and function (P < 0.001). When adequacy of revascularization was considered, the predictive value of a positive preoperative viability test for functional improvement was 83%. Finally, mean ejection fraction and global wall motion score increased significantly after revascularization for the group as a whole (0.32 +/- 0.03 to 0.44 +/- 0.04, P < 0.001 and 24.08 +/- 2.90 to 33.16 +/- 3.32, P < 0.001, respectively). Thus, preoperative quantitative planar stress-redistribution-reinjection thallium imaging detects viable but asynergic segments which improve function postoperatively and may be valuable in selection of patients with severe left ventricular dysfunction for revascularization.

Chi-Square Distribution↗

Colour tissue Doppler echocardiographic evaluation of right ventricular function in patients with right ventricular infarction.

OBJECTIVE: This study was undertaken to determine right ventricular (RV) function as assessed by colour Doppler tissue imaging (DTI) in patients with RV infarction. METHODS: During the study period, 35 patients were evaluated: 14 patients had an inferior myocardial infarction (MI) with RV infarction and 21 patients had an inferior MI without RV involvement. Twenty age-matched healthy subjects served as controls. The diagnosis of RV infarction was defined by ST segment elevation >0.1 mV in lead V4R. Systolic and early and late diastolic velocities were acquired from the apical four-chamber view at the lateral tricuspid annulus, the septal side of the tricuspid annulus and the RV free mid-wall using colour DTI. RESULTS: Systolic and early diastolic velocities at the lateral tricuspid annulus were significantly reduced in patients with inferior MI with RV infarction compared with those in healthy individuals (7.8 +/- 1 vs. 11 +/- 2 cm/s, p < 0.002) and patients with inferior MI without RV infarction (7.8 +/- 1 vs. 10 +/- 1 cm/s, p < 0.002). The late diastolic lateral annular velocity did not differ between the groups. Systolic and early diastolic RV free wall velocities were also significantly decreased in patients with RV infarction compared with those in healthy individuals (7 +/- 1 vs. 8.7 +/- 1 cm/s, p < 0.01; 6.3 +/- 2 vs. 8.7 +/- 2 cm/s, p < 0.05, respectively) and patients with inferior MI without RV infarction (7 +/- 1 vs. 9 +/- 2 cm/s, p < 0.01; 6.3 +/- 2 vs. 8.3 +/- 2 cm/s, p < 0.05, respectively). CONCLUSION: The evaluation of tricuspid annular and RV free wall velocities using colour DTI provides a rapid and noninvasive tool for assessing RV function in patients with RV infarction.

Aged↗

The basics of ventricular function.

There has been increasing interest in the study of ventricular function in the patient with congenital heart disease. Numerous indexes have been derived for the assessment of ventricular function, suggesting that none is ideal. While the derivation of some measures of ventricular function have relied on advanced mathematical principles, it is still possible for the non-mathematician to obtain important insights into ventricular function from an assessment of the events which underpin the cardiac cycle. In this review, I use the mechanics of the cardiac cycle to introduce basic concepts of ventricular function for the non-expert. In this way, I analyse ventricular systolic and diastolic performance and describe the contribution of regional variability of function to overall performance. This approach also highlights the role of the ventricle in overall cardiovascular and metabolic homeostasis.

Diastole↗

Daily serial evaluation of left ventricular function with equilibrium radionuclide ventriculography following thrombolysis during acute myocardial infarction.

The changes in ventricular function after reperfusion by coronary thrombolysis are important when deciding about further definitive treatment necessary to ensure long-term vessel patency. The purpose of this study was to evaluate the early changes in left ventricular function after reperfusion. Left ventricular function was serially evaluated for 10 days in a group of 18 patients receiving intracoronary thrombolytic therapy for an acute myocardial infarction. Comparison of the global ventricular function in the successfully and unsuccessfully reperfused groups of patients showed significantly better function in the successful group than the unsuccessful group after the first day, which was maintained for the entire study period. Global and regional ventricular function in the successfully reperfused patients showed significant early improvement during the initial 72 h with maintenance of this improvement for the study period of 10 days. In the patients in whom reperfusion was unsuccessful, regional ventricular function showed no change, while the global function declined from day 5 to day 8 of the study period. This study then confirms the significant improvement in ventricular function after successful reperfusion. The time course pattern of the change in ventricular function indicates that the most significant improvement occurs within the first 72 h after reperfusion. These changes are similar to those previously reported in experimental animals.

Angioplasty, Balloon↗

Timing of operation for chronic aortic regurgitation: influence of left ventricular function on clinical management.

Since symptomatic patients with aortic regurgitation and normal ventricular function (ejection fraction greater than or equal to 50%, fractional shortening greater than or equal to 29%, end-systolic diameter less than or equal to 55 mm) have a significantly higher three year survival postoperatively than patients with impaired left ventricular function (ejection fraction less than 50%, fractional shortening less than 29%, end-systolic diameter greater than 55 mm), the indication for surgery should be established prior to the onset of left ventricular functional impairment. In two-thirds or more of asymptomatic patients with left ventricular dysfunction, symptoms are incurred within two to three years. Additionally, in patients with impaired left ventricular function but with only slight or no symptoms or a normal exercise capacity, respectively, postoperatively there is a higher three year survival rate than in patients with marked symptoms or compromised exercise capacity. In patients in whom preoperative left ventricular dysfunction is present for only a relatively short duration (less than 14 months), the probability of postoperative regression of ventricular dilation and dysfunction is higher than in those whose left ventricular functional impairment is of longer duration (greater than 18 months). Thus, in asymptomatic patients with left ventricular dysfunction, the indication for surgery should be established before the onset of symptoms or compromise of exercise capacity. In asymptomatic patients with normal left ventricular function, symptoms or left ventricular dysfunction develop at a low incidence of 4% per year. Accordingly, with conservative, nonsurgical management, these patients have an excellent prognosis. Patients in whom the onset of symptoms or left ventricular dysfunction can be anticipated to develop, may be identified on the basis of an end-systolic diameter greater than 50 mm, a decrease in left ventricular ejection fraction during exercise, a progressive increase in the end-systolic as well as end-diastolic diameter or a rapid decrease in fractional shortening or ejection fraction seen during follow-up observation. The indication for surgery, however, should be established only at the onset of symptoms or left ventricular dysfunction since in all of these patients, regression of ventricular dilatation and normalization of left ventricular function can be expected postoperatively. The preoperative left ventricular function is a primary determinant of postoperative results even on employment of myocardial protection and a hemodynamically-favorable prosthesis.(ABSTRACT TRUNCATED AT 400 WORDS)

Aortic Valve↗

[Invasive treatment of recent myocardial infarction. Evaluation of left ventricular function].

Hemodynamic parameters of left ventricular function were assessed in 179 patients with acute myocardial infarction, who were treated with intracoronary thrombolysis during first six hours after the onset of chest pain. Some of them were subjected to coronary angioplasty. Patency of the infarct related artery was controlled between the 2nd and 3rd week after acute myocardial infarction concomitant with evaluation of EF and LVEDP. Reperfusion of the infarct related artery was obtained in 121 patients (67.6%) and also significant increase of EF was observed in those patients. EF rose in patients with a patent coronary artery after 2-3 weeks (not significant) in contrast to patients with obstructed coronary artery in whom there was a fall in EF. The rise of EF was more pronounced in patients with reperfusion reached in 3 hours after the onset of infarct pain and without coronary angioplasty. It was shown that LVEDP is not usefull in estimation of left ventricular function.

Adult↗

Relation between myocardial beta-adrenergic receptor and left ventricular function in patients with left ventricular volume overload due to chronic mitral regurgitation with or without aortic regurgitation.

The relation between myocardial beta-adrenergic receptor and left ventricular (LV) function was studied in 10 patients, aged 41 to 61 years (average 51), with LV volume overload mainly due to chronic mitral regurgitation. Beta-adrenergic receptors were examined using crude membrane in LV papillary muscle obtained at mitral valve replacement. Cardiac function was evaluated at preoperative cardiac catheterization with the interval to surgery of 1 to 33 months (average 7). Beta-adrenergic receptor density in 7 patients with New York Heart Association class II or III congestive heart failure was higher than that in 3 patients with class IV heart failure (59 +/- 19 vs 37 +/- 3 fmol/mg protein, p less than 0.05). Beta-adrenergic receptor density showed a positive correlation with end-systolic stress/end-systolic volume index ratio, the index for contractile function (p less than 0.005). Other parameters such as cardiac index, pulmonary artery wedge pressure and LV ejection fraction had no significant correlation to beta-adrenergic receptor. The results demonstrated that increases in symptom and LV dysfunction, particularly of the contractile state, was associated with decreased myocardial beta-adrenergic receptor density from possible down-regulation in patients with chronic mitral regurgitation with or without aortic regurgitation.

Adult↗

Comparison of tomographic and planar radionuclide ventriculography in the assessment of regional left ventricular function in patients with left ventricular aneurysm before and after surgery.

METHODS AND RESULTS: To compare tomographic and planar radionuclide ventriculography (RNVG) in assessing regional left ventricular (LV) function and predicting improvement in LV ejection fraction (LVEF) after operation in patients with LV aneurysm, 18 patients with aneurysm underwent both tomography and planar RNVG 1 month before and 3 weeks to 6 months after aneurysmectomy and coronary artery bypass grafting. All patients also underwent preoperative contrast angiography at catheterization. The percent shortening of the apical, anterior, lateral, inferior, and basal segments was calculated from tomographic long-axis and short-axis slices and corresponding planar images (anterior and 30- and 70-degree left anterior oblique views). No significant differences in anterior, apical, and lateral percent shortening were apparent before aneurysmectomy between tomographic and planar studies. However, preoperative basal percent shortening was 47% +/- 13% from tomographic and 28% +/- 14% from planar images (p < 0.001). Preoperative tomography generally agreed better with contrast angiographic results than did planar imaging. After aneurysmectomy, basal function improved to 57% +/- 12% (p < 0.01) by tomography. For all patients, LVEF increased from 29% +/- 8% before to 38% +/- 9% (p < 0.01) after aneurysmectomy. However, the greatest improvement (31% +/- 11% to 41% +/- 9%; p < 0.01) was in the 15 patients with greater than 30% basal shortening by tomography before aneurysmectomy; in contrast, no change of LVEF occurred in the three patients with lesser preoperative basal percent shortening. Moreover, greater than 30% basal percent shortening by tomography before aneurysmectomy identified the group most likely to have an increase in LVEF of 5% or more from before to after aneurysmectomy. Prediction of postoperative results was not possible from preoperative planar data. Thus in patients with LV aneurysm, tomographic RNVG appears to provide information that is different and more accurately predictive of results after aneurysmectomy than that available from planar imaging.

Adult↗

Left ventricular function: MRI assessment.

Biplane left ventricular (LV) angiography has always been considered the standard of reference to measure LV volumes and ejection fraction (EF): however, angiographic measurements depend on the assumption of geometric models derived from two-dimensional information. MRI is the best technique to evaluate cardiac volumes and mass providing direct non geometric analysis of the ventricles with a high contrast resolution. Standard cine MRI is considered a time-consuming technique for acquisition and measurements; breath hold cine MRI and echoplanar imaging (EPI) non gated sequences are useful to reduce the acquisition time from a few minutes to a few seconds. The evaluation of the heart linear parameters (diameters, thickness), areas, volumes and mass is essential in the diagnosis of many heart diseases and in the assessment of the ventricular function. The modalities to evaluate LV measurements and to obtain functional parameters, the acquisition technique and flow analysis were analyzed in this study.

Angiography↗

Influence of diabetes mellitus on left ventricular function in patients undergoing coronary artery bypass grafting.

OBJECTIVES: Left ventricular function was assessed by two-dimensional echocardiography before and one year after coronary artery bypass grafting(CABG) in a series of patients with severe coronary artery disease with diabetes mellitus(DM) and without DM(non-DM). METHODS: Twenty-three patients with DM and 50 patients without DM, all with no previous myocardial infarction, underwent two-dimensional echocardiography before CABG and one year after CABG, in a non-matched study. For a matched study, 31 patients without DM who had almost the same left ventricular function as DM patients at the baseline were selected to and compare the rate of improvement in left ventricular function between the DM group and the "matched" non-DM group. RESULTS: In the non-matched study, patient characteristics were not significantly different between the 2 groups except for the incidence of congestive heart failure within one year before CABG, which was significantly higher in the DM group. Fractional shortening was significantly lower in the DM group at the baseline(p < 0.05) and also one year after CABG(p < 0.0001). Significant improvement in fractional shortening was seen in the non-DM group(p < 0.001), but not in the DM group. The left ventricular end-diastolic diameter(LVDd) was significantly larger in the DM group at the baseline(p < 0.01), and was still significantly larger in the DM group at one year after CABG(p < 0.01). No improvement in LVDd was seen in the DM group. In the matched study, fractional shortening of the non-DM group also showed significant improvement after CABG(p < 0.001). Moreover, the rate of improvement in fractional shortening was higher in the non-DM group than in the DM group(p < 0.05). LVDd tended to be larger in the DM group(p = NS). CONCLUSIONS: Left ventricular dysfunction and left ventricular impaired improvement were seen in the patients with DM, and CABG improved left ventricular function in the patients without DM with poor left ventricular function. These findings indicate that CABG therapy may be inadequate for improving left ventricular function in patients with DM and severe left ventricular dysfunction at the baseline.

Adult↗

Ventricular function and the native coronary circulation five years after myocardial revascularization.

Of 531 patients who underwent coronary artery bypass grafting during 1970 to 1973, 181 were restudied by ventriculography and by graft and coronary angiography at least 5 years following operation. Five patterns of postoperative ventricular function were identified: improved ventricular function resulting in normal left ventricular (LV) function; normal ventricular function that was unchanged; abnormal ventricular function that improved but did not reach normal; abnormal ventricular function that remained unchanged; and deterioration of LV function. Patients who regained (40) and those who retained normal ventricular function (49) comprise 49% of the series and patients with deterioration of ventricular function, only 20%. Graft patency and angina relief were significantly better in those with normal LV function than in those with LV deterioration. Progression of disease in grafted coronary arteries was similar in all groups, but was significantly higher in ungrafted coronary arteries (61.3%) in the patients showing deterioration than in either the improved patients or those with an unchanged normal LV (33.3% each) (p less than 0.05). The high incidence of progression of disease in ungrafted coronary arteries in the group with deterioration suggests that low graft patency and deterioration of ventricular function in this group might both be related to intrinsic acceleration of coronary atherosclerosis unrelated to operative intervention.

Angina Pectoris↗

Temporal dissociation of left ventricular function and remodeling following experimental myocardial infarction in rats.

BACKGROUND: Left ventricular function early after myocardial infarction (MI) predicts subsequent clinical outcome. Nevertheless, the relationship between early changes in left ventricular function and subsequent left ventricular remodeling has not been well defined. METHODS AND RESULTS: To explore the temporal relationship between left ventricular function and remodeling after MI, rats (n = 63) underwent coronary artery ligation with and without reperfusion at 45 or 180 minutes or a sham operation. All animals were followed up by serial echocardiography preligation; 4, 24, and 48 hours; and 1, 2, 3, 4, 6, and 9 weeks after MI. Measures of global left ventricular size and function and regional wall motion were obtained at physiological heart rates. Histological infarct sizes (range, 0% to 52%) were determined in all animals. Within 4 hours of MI, fractional area change (FAC) decreased dramatically in association with an increase in left ventricular systolic cavity area, whereas diastolic area increased more gradually. Early FAC was related to infarct size (r = -0.82; P < .000), predicted the extent of left ventricular enlargement (P = .0001), and remained depressed throughout the duration of follow-up. Regional wall motion excursion and systolic wall thickness decreased in the infarcted and noninfarcted regions in animals with large infarctions. CONCLUSIONS: The rate of left ventricular dilatation after MI in rats is proportional to initial left ventricular function, although left ventricular function remains relatively constant as the ventricle progressively enlarges. Regional myocardial function after a large MI is abnormal in noninfarcted as well as infarcted regions.

Animals↗

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↗

Long-term recovery of left ventricular function after primary angioplasty for acute myocardial infarction.

AIMS: To investigate changes in left ventricular function in the first 6 months after acute myocardial infarction treated with primary angioplasty. To assess clinical variables, associated with recovery of left ventricular function after acute myocardial infarction. METHODS: Changes in left ventricular function were studied in 600 consecutive patients with acute myocardial infarction, all treated with primary angioplasty. Left ventricular ejection fraction was measured by radionuclide ventriculography in survivors at day 4 and after 6 months. Patients with a recurrent myocardial infarction within the 6 months were excluded. RESULTS: Successful reperfusion (TIMI 3 flow) by primary angioplasty was achieved in 89% of patients. The mean ejection fraction at discharge was 43.7%+/-11.4, whereas the mean ejection fraction after 6 months was 46.3%+/-11.5 (P<0.01). During the 6 months, the mean relative improvement in left ventricular ejection fraction was 6%. An improvement in left ventricular function was observed in 48% of the patients; 25% of the patients had a decrease, whereas in the remaining patients there was no change. After univariate and multivariate analysis, an anterior infarction location, an ejection fraction at discharge < or =40% and single-vessel disease were significant predictors of left ventricular improvement during the 6 months. CONCLUSIONS: After acute myocardial infarction treated with primary angioplasty there was a significant recovery of left ventricular function during the first 6 months after the infarction. An anterior myocardial infarction, single-vessel coronary artery disease, and an initially depressed left ventricular function were independently associated with recovery of left ventricular function. Multivessel disease was associated with absence of functional recovery. Additional studies, investigating complete revascularization are needed, as this approach may potentially improve long-term left ventricular function.

Angioplasty↗

[The internal thoracic artery in myocardial revascularization in patients with severely depressed left ventricular function].

INTRODUCTION: In most prospective, randomized studies, severely depressed left ventricular function is found to be the independent predictor of increased morbidity and mortality after myocardial revascularization [3]. Surgical treatment in this particular group of patients results in superior long-term results [1, 2]. Internal thoracic artery (ITA) is considered to be superior compared to venous grafts in myocardial revascularization for the majority of patients with ischaemic heart disease. However, its value in patients with already severely depressed left ventricular function (EF < or = 30%) is still a matter of debate. There are no prospective, randomized studies, so far. In some studies it was shown that revascularization with ITA graft resulted in superior long-term results (10- and 15-year follow-up) in all subgroups of patients, including those with severely depressed left ventricular function [4, 5]. Some authors find it still unacceptable, if this result would be possible at the expense of higher early mortality (due to use of ITA). The purpose of this study is to analyze the early and long-term results of myocardial revascularization using ITA graft in patients with severely depressed left ventricular function (EF < 30%). MATERIAL AND METHODS: Over the period from November 1986 through March 1999, 2860 pts have received ITA (alone or with additional vein grafts) for myocardial revascularization. In 431 pts EF was < or = 30% (15.1%), average EF being 25.7% (by echocardiography); 33 were women, 29 were diabetics, while average age was 56.7 +/- 8.4 years. The control group consisted of 430 pts, with similar preoperative characteristics, who received vein grafts alone. RESULTS: Operative mortality in the ITA group was 2.55% (11/431), and postoperative morbidity was 7.4% (32/431). In the group with vein grafts only the mortality was 3.25% (14/430) and morbidity 6.7% (29/430)--Table 2. The average postoperative hospital stay was 9.1 days (range 7-32). There was no difference in operative and postoperative parameters (extracorporeal time, ischaemic time, duration of mechanical ventilation, need for inotropic support, mortality, morbidity and hospital stay) compared to the group with vein grafts alone, except for the blood drainage--significantly higher in the ITA group--p < 0.00001)--Table 3. Multivariate analysis showed that independent predictors of unfavorable outcome were the presence of peripheral vascular disease (beta--0.9; p = 0.02) and aortic cross-clamp time (beta--0.02; p = 0.01). Long-term results in 14 pts with ITA graft operated on from 1986 to 1992 (6-12 years of follow-up) showed the survival of 92.7%. DISCUSSION: Superior long-term patency of ITA graft resulted in its practically routine use in myocardial revascularization. However, in some studies it was shown that ITA flow might be insufficient during the maximal effort [6]. This may result in hypoperfusion, low cardiac output syndrome and cardiac arrest. This frequently happens at the end of the operation, and may be accentuated with the use of vasopressors that can further decrease the ITA flow [9]. In patients with already severely depressed left ventricular function preoperatively, the use of vasopressors at the end of procedure when the myocardium may be quite vulnerable, is to be expected. Friesewinkel et al., [18] showed that there was an impairment of the regional contractility of the left ventricle early (up to 4 hours) after myocardial revascularization, when one or both ITA grafts were used. Since this was not the case if vein grafts were used, they advised to be careful in patients with "depressed left ventricular function". However, Elefteriades et al., [1] found no higher mortality in patients with "bad left ventricle" in whom ITA was used, but point out that patients with elective operation and without need for intensive care treatment preoperatively had much better outcome. Jagaden et al., [19] found very good results in these patients, after the routine use of ITA, during a 20-year follow-up. In our study EF < or = 30% was present in 861 patients, 431 with ITA graft and 430 with vein grafts only. There was no difference between groups considering all possible preoperative and operative factors of importance for the outcome. We found no increased early morbidity and mortality in patients in whom ITA was used compared to patients with vein grafts only. In patients operated on from 1986-1992 (follow-up of 6-12 years), we noted the survival of 92.7%. This was not statistically different compared to patients with vein grafts (survival of 88.9%). Despite the small number of patients, we found these long-term results very encouraging. CONCLUSION: ITA graft is a very good and absolutely acceptable choice in patients with severely damaged left ventricular function, particularly if we consider its long-term superiority. These pts should not be deprived of the long-term benefit of ITA graft, since early results are very good.

Coronary Disease↗