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Biomedical subjects

L C Becker

Publications and source records attributed to L C Becker.

At least 127 records · Page 7Linked to original sources

Prolonged decrease in cardiac volumes after maximal upright bicycle exercise.

Sequential exercise-gated cardiac blood pool scintigrams provide a noninvasive technique for evaluating the effect of therapeutic interventions on cardiac volumes and function only if both exercise periods are equivalent in the absence of an intervention. To assess whether they are indeed equivalent, 14 healthy subjects underwent gated blood pool scintigraphy during two maximal upright exercise periods separated by 60 min without changing position. Although resting cardiac output and blood pressure returned to base-line values 60 min after the first exercise period, mean resting heart rate was markedly higher (89.4 +/- 2.7 vs. 66.5 +/- 2.5 beats/min, P less than 0.001) and upright cardiac volumes lower [39.1 +/- 4.9 vs. 56.3 +/- 6.0 ml, P less than 0.001, for end-systolic volume (ESV) and 112.6 +/- 8.0 vs. 144.9 +/- 9.0 ml, P less than 0.001, for end-diastolic volume (EDV)] than before the first exercise period. These differences persisted during low levels of the subsequent exercise but not at high and maximum work loads. Cardiac volumes and heart rate 60 min after an identical exercise protocol in a second group of 22 subjects who received propranolol, 0.15 mg/kg iv, after their initial exercise, however, were the same as those preexercise. Thus higher sympathetic tone may be responsible for the persistently higher heart rate and decreased cardiac volumes after exercise, and the assumption that cardiac volumes and function are similar during two closely spaced sequential exercise studies is not always valid.

Adult↗

Depression of action potential characteristics and a decreased space constant are present in postischemic, reperfused myocardium.

Brief periods of ischemia and reperfusion may lead to arrhythmias and delayed epicardial activation. To determine the nature of the electrophysiologic substrate and to gain insight into potential mechanisms underlying the electrophysiologic and hemodynamic abnormalities that develop in this setting, standard microelectrode techniques were used to measure action potential characteristics, conduction velocity, and space constants in canine isolated epicardial preparations removed after a 15-min anterior descending artery occlusion and 20-min reflow period in vivo. Our results demonstrate a significant reduction in conduction velocity (0.78 +/- 0.38 vs. 0.31 +/- 0.12 m/s, P less than 0.001), space constant (1.05 +/- 0.42 vs. 0.45 +/- 0.12 mm, P = 0.004), resting membrane potential (81.3 +/- 2.5 vs. 61.7 +/- 7.8 mV, P less than 0.001), action potential amplitude (94.1 +/- 4.2 vs. 64.1 +/- 1.5 mV, P less than 0.001), and dV/dT (164.7 +/- 37.3 vs. 52.6 +/- 19.7 V/s, P less than 0.001) in postischemic reperfused myocardium. The space constant and dV/dT each correlated with conduction velocity; in addition, the space constant was an independent predictor of conduction velocity in these tissues. These electrophysiologic abnormalities may play a role in the arrhythmias and abnormalities of contraction present in postischemic, reperfused myocardium.

Action Potentials↗

Changes in left ventricular function during recovery from upright bicycle exercise in normal persons and patients with coronary artery disease.

To characterize the hemodynamic changes during recovery after upright bicycle exercise, 56 normal subjects (group I) and 30 patients with documented myocardial ischemia (group II) were studied. Heart rate, blood pressure and radionuclide angiographically determined absolute left ventricular (LV) volumes were measured at baseline, peak exercise and 2 to 4.5 minutes and 4.5 to 7 minutes after upright bicycle exercise. Whereas ejection fraction and end-systolic volume responses at peak exercise differed between groups I and II, these parameters showed similar trends in both groups during recovery. Mean ejection fraction increased during 2 to 4.5 minutes in both groups, but remained elevated during 4.5 to 7 minutes only in normal subjects (group I). Elevation of cardiac output after exercise was accounted for predominantly by increased heart rate rather than increased stroke volume. Despite significantly decreased end-diastolic volume during recovery, stroke volume was maintained in both groups by a substantial decrease in end-systolic volume, suggesting the impact of decreased afterload or increased sympathetic tone during recovery. Thus, the Frank-Starling mechanism does not appear to be playing a major role during recovery after upright bicycle exercise, whereas enhanced contractility is evident in both normal subjects and patients with documented myocardial ischemia.

Adult↗

Increased myocardial infarct size by thiopental after coronary occlusion in the dog.

The effect of a single dose (10 mg/kg) of intravenous thiopental (TP), during acute myocardial infarction, on infarct size was studied in conscious dogs randomized 10 minutes after left circumflex coronary artery occlusion to either the TP group (n = 10) or a control group given 0.9% saline solution (n = 10). During the first hour following therapy, myocardial blood flow (microspheres), arterial pressure, left atrial pressure, and arterial blood gases were similar in the two groups, but the heart rate (140 +/- 3 vs 110 +/- 3 bpm; p less than 0.001) and rate-pressure product (15,090 vs 12,210 bpm X mm Hg; p less than 0.025) were greater in the TP group. Infarct size (planimetry) and occluded bed size (postmortem coronary arteriography) measured 2 days later revealed that: the slope of the relation between infarct and occluded bed mass, as a percentage of the left ventricle (% LV) was greater with TP than with saline solution (1.10 vs 0.61; p less than 0.001); excluding hearts (four TP and three saline solution) with small occluded beds (less than 22% LV), infarcts were also larger with TP (n = 6) than with saline solution (n = 7), both as a percentage of the left ventricle (26.4 vs 12.2%; p less than 0.02) or occluded bed (61.5 vs 28.9%; p less than 0.005); and transmural and endocardial extents of the infarcts on topographic maps were greater with TP than with saline solution. In 12 other conscious dogs, increasing the heart rate between 10 and 70 minutes after left circumflex coronary artery occlusion to the average rate of the TP group (140 bpm) by atrial pacing resulted in infarcts larger than those in control dogs but similar to those in the TP group. Thus, TP therapy after left circumflex occlusion increased infarct size in dogs. This effect appeared to be due mainly to the increased heart rate, probably via increased myocardial oxygen demands.

Animals↗

Postural changes in cardiac volumes in men in relation to adult age.

Cardiac volumes by equilibrium gated cardiac blood pool scans and heart rate were measured in the supine and sitting positions in 64 male volunteer subjects (age 25-80 yrs) who had been rigorously screened to exclude cardiovascular disease. After the upright position was assumed, the average cardiac output of all subjects was unchanged but heart rate increased and stroke volume decreased due to a decrease in end diastolic volume. Neither the supine or sitting cardiac output nor the average postural change in cardiac output, cardiac volumes or heart rate was age-related. While the average cardiac output among the subjects was unaltered with a change in posture, in some individuals it increased slightly while in others it decreased. The postural change in cardiac output among the individuals correlated by linear regression analysis with a change in heart rate only in younger subjects and with a change in stroke volume in all age groups, but the slope of this relationship was greater in older than in younger subjects. The postural change in stroke volume was strongly correlated with a change in end diastolic volume and this relationship did not vary with age. Thus, although the average postural change in cardiac output among healthy subjects is not age-related, a given change in cardiac output with posture in an older individual depends more on a change in stroke volume and less on a heart rate change than in a younger one. This result, like the response to vigorous upright exercise previously demonstrated to occur with aging, indicates a greater reliance in the elderly on the Frank-Starling mechanism than on heart rate for a given change in cardiac output in response to perturbations from the basal supine state.

Adult↗

Reversal of dysfunction in postischemic stunned myocardium by epinephrine and postextrasystolic potentiation.

After brief coronary occlusions, myocardium may become "stunned," exhibiting prolonged depression of function despite the absence of necrosis. Because of the accompanying decline in adenosine triphosphate and adenine nucleotide precursors, a deficiency of energy supply has been proposed as the basis for postischemic dysfunction. This study examined whether sufficient functional and metabolic reserve exists in stunned myocardium to sustain a prolonged, maximal inotropic response to epinephrine and postextrasystolic potentiation. In 11 open chest dogs, the left anterior descending coronary artery was occluded for 5 minutes, followed by 10 minutes of reflow, repeated 12 times, with a final 1 hour recovery period. Regional myocardial function was measured using pairs of ultrasonic dimension crystals implanted in ischemic and nonischemic zones. During repetitive reflows a progressive decrease in mean systolic segment shortening occurred: baseline 21.8%, 1st reflow 15.2%, 12th reflow 4.3%, 1 hour recovery 7.9%. Intravenous epinephrine, titrated to produce a maximal inotropic response, caused segment shortening to increase to 21.6% after 10 minutes and to 24.8% after 1 hour of infusion, despite a 20 mm Hg increase in systolic pressure. The same dose of epinephrine given before ischemia increased segment shortening to 30.5%. In six of the dogs, postextrasystolic potentiation before ischemia increased segment shortening from 21.8 to 31.1%, and after 1 hour of recovery from ischemia, from 7.9 to 24.8%. Lesser increases in segment shortening were also seen in nonischemic segments. The results indicate that stunned myocardium possesses considerable functional reserve. Deficient energy stores are therefore not likely to be the basis for depressed function seen at rest in stunned myocardium.

Animals↗

Use of the Frank-Starling mechanism during submaximal versus maximal upright exercise.

To evaluate the extent to which the Frank-Starling mechanism is utilized during successive stages of vigorous upright exercise, absolute left ventricular end-diastolic volume and ejection fraction were determined by gated blood pool scintigraphy at rest and during multilevel maximal upright bicycle exercise in 30 normal males aged 26-50 yr, who were able to exercise to 125 W or greater. Left ventricular end-systolic volume, stroke volume, and cardiac output were calculated at rest and during each successive 3-min stage of exercise [25, 50, 75, 100, and 125-225 W (peak)]. During early exercise (25 W), end-diastolic and stroke volumes increased (+17 +/- 1 and +31 +/- 4%, respectively), with no change in end-systolic volume. With further exercise (50-75 W) end-diastolic volume remained unchanged as end-systolic volume decreased (-12 +/- 4 and -24 + 5%, respectively). At peak exercise end-diastolic volume decreased to resting level, stroke volume remained at a plateau, and end-systolic volume further decreased (-48 +/- 7%). Thus the Frank-Starling mechanism is used early in exercise, perhaps because of a delay in sympathetic mobilization, and does not appear to play a role in the later stages of vigorous exercise.

Adult↗

End-systolic measures of regional ventricular performance.

Dimension change measures of regional ventricular function, such as absolute or percent wall thickening (delta T or % delta T) or segmental shortening (delta L or % delta L), are highly load dependent. In 16 anesthetized mongrel dogs we assessed use of the end-systolic pressure-thickness and end-systolic pressure-length relationships (ESPTR, ESPLR) as more load-independent measures of regional function. We found that the ESPTR and ESPLR could be measured without detectable baroreceptor-mediated reflex changes in cardiac contractile state. Systemic administration of dobutamine shifted the ESPTR to the right and the ESPLR to the left of control, mainly due to a change in the slope (Ees) of the relationships. Both delta T, % delta T and delta L, % delta L failed to detect the positive inotropic effect of dobutamine because of an associated reduction in preload. With systemic administration of propranolol, ESPTR, ESPLR, delta T, % delta T, and delta L, % delta L detected the negative inotropic effect. Thus systemic propranolol shifted the ESPTR to the left and the ESPLR to the right of control, mainly due to a change in Ees. Regional administration of dobutamine shifted the ESPTR and the ESPLR in the direction of positive contractility in the region receiving the drug, whereas simple dimension change measures of regional function failed to detect the inotropic effect because preload fell and the timing of regional end-systole was altered. With regional propranolol both the ESPTR, ESPLR and simple dimension change measures detected the negative inotropic effect. Thus the ESPTR, ESPLR is a reliable measure of regional ventricular function and may be better than simple dimension change measures of regional function, particularly when loading conditions or the timing of regional systole is altered by an intervention.

Animals↗

Selective enhancement of function of stunned myocardium by increased flow.

Although augmentation of flow does not improve the performance of normal myocardium, the hyperemic response after brief coronary occlusion is associated with transient hyperfunction in the previously ischemic region. In this study we assessed the effect of vasodilator-enhanced coronary blood flow on the systolic function of postischemic stunned myocardium. In 18 open-chest, anesthetized dogs the anterior descending artery was occluded for 5 min, followed by a 10 min period of reflow, repeated 12 times with a final 90 min recovery period. After the recovery period, either 0.06 mg/min dipyridamole (n = 6), 1 mg/min papaverine (n = 6), or 1.5 micrograms/kg/min nitroglycerin (n = 6) was infused intravenously for 15 min. Regional myocardial blood flow, which had returned to normal before administration of vasodilator, was increased 150% above baseline by dipyridamole and 80% by papaverine, but was unchanged by nitroglycerin. Segmental shortening decreased after repeated occlusions: from 17.5% to 0.9% in the group later treated with dipyridamole, from 18.6% to 6.7% in the papaverine group, and from 19.2% to-1.9% in the nitroglycerin group (p less than .005 for all groups). Segmental shortening increased to 8.8% after dipyridamole, 13.6% after papaverine, and 5.1% after nitroglycerin (p less than .05 for all groups), although the load-independent end-systolic pressure-length relationship (ESPLR) showed a significant shift to the left, reflecting enhanced performance, only after dipyridamole and papaverine. For all dogs combined, the percent improvement in ESPLR was correlated with the percent increase in flow (R = -.73, p less than .001). Performance was unchanged in the control region despite similar augmentation of flow.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Reduction in experimental infarct size by recombinant human superoxide dismutase: insights into the pathophysiology of reperfusion injury.

To determine the importance of reperfusion injury and the ability of the free-radical scavenger recombinant human superoxide dismutase (h-SOD) to prevent it, open-chest dogs underwent 90 min of proximal circumflex coronary artery occlusion, and only at the moment of reperfusion received either h-SOD (400,000 IU bolus into the left atrium followed by a 300,000 IU iv infusion over 1 hr) or saline. After 48 hr the surviving animals were killed and measurements were made of the risk region (by postmortem angiography) and infarct size (by gross pathology). All measurements were made by investigators blinded to treatment given, and the code was broken only at the end of the study. Hemodynamic variables and collateral flow during ischemia were similar in the two groups. Infarct size in control animals (n = 8) averaged 22.4 +/- 3.1% of the left ventricle and 52.2 +/- 7.1% of the risk region, compared with 13.3 +/- 0.8% of the left ventricle and 33.6 +/- 2.1% of the risk region in h-SOD-treated dogs (n = 8) (p less than .05). Infarcts in treated animals were not only smaller, but also exhibited a distinctive "patchiness," suggesting protection along vascular distributions. Furthermore, analysis of the relationship between infarct size and collateral flow measured during ischemia in the two groups indicated that protection by h-SOD was greatest in animals with the lowest collateral flows. This study supports the concept that reperfusion of ischemic myocardium results in a separate component of cell damage, presumably linked to the generation of oxygen free radicals on reflow. Since the h-SOD preventable reperfusion component of injury was most pronounced in hearts with the most severe ischemia, scavenging of oxygen radicals at the time of reflow may offer a novel and particularly promising therapeutic approach for the protection of ischemic myocardium.

Animals↗

Reversible cold-induced abnormalities in myocardial perfusion and function in systemic sclerosis.

The effects of peripheral cold exposure on myocardial perfusion and function were studied in 13 patients with scleroderma without clinically evident myocardial disease. Ten patients had at least one transient, cold-induced, myocardial perfusion defect visualized by thallium-201 scintigraphy, and 12 had reversible, cold-induced, segmental left ventricular hypokinesis by two-dimensional echocardiography. The 10 patients with transient perfusion defects all had anatomically corresponding ventricular wall motion abnormalities. No one in either of two control groups (9 normal volunteers and 7 patients with chest pain and normal coronary arteriograms) had cold-induced abnormalities. This study is the first to show the simultaneous occurrence of cold-induced abnormalities in myocardial perfusion and function in patients with scleroderma. The results suggest that cold exposure in such patients may elicit transient reflex coronary vasoconstriction resulting in reversible myocardial ischemia and dysfunction. Chronic recurrent episodes of coronary spasm may lead to focal myocardial fibrosis.

Adult↗

Quantitative relationship between global left ventricular thallium uptake and blood flow: effects of propranolol, ouabain, dipyridamole, and coronary artery occlusion.

The quantitative relationship between fractional myocardial thallium uptake and radioactive microsphere-determined flow was studied in 33 open chest dogs under baseline conditions during increased coronary flow (dipyridamole), decreased coronary flow (propranolol and coronary artery stenosis), inhibition of Na-K ATPase (ouabain), and regional infarction. Myocardial contents of thallium and microspheres were compared in left ventricular (LV) biopsies taken 5, 10, 15, 30, and 60 min after thallium injection, expressed as fractions of injected dose. Maximal LV thallium uptake occurred 10 min after injection and the 10-min values were therefore used for subsequent comparisons. Combining all dogs, fractional LV thallium content (% injected dose) correlated well with fractional LV blood flow (% cardiac output) (r = 0.95). However, for fractional LV flows in the low, normal, or moderately elevated range (LV flow/cardiac output less than 9%), thallium content consistently exceeded flow by about 15%. This relationship was not altered by ouabain or regional ischemia or infarction. For greatly elevated fractional LV flows (greater than 9%), thallium content was not significantly different from flow. To explain these differences, myocardial and systemic extraction fractions for thallium were determined in eight dogs with a dual tracer method. At baseline, myocardial extraction fraction was significantly greater than systemic (88 +/- 0.4% compared with 75 +/- 1%, p less than 0.001). During dipyridamole, myocardial extraction fraction decreased and myocardial and systemic values were no longer significantly different (82 +/- 1% compared with 79 +/- 1%). These results show that the fraction of injected thallium dose taken up by the LV myocardium exceeds the delivered fraction of cardiac output over a wide range of LV flows, and is not altered by ouabain-induced inhibition of sodium-potassium ATPase or regional myocardial infarction. This difference is explained by a greater myocardial than systemic extraction fraction for thallium. During high LV flows produced by dipyridamole, fractional LV thallium uptake and flow become similar as myocardial and systemic extraction fractions equalize.

Animals↗

Effects of repeated brief coronary occlusion on regional left ventricular function and dimension in dogs.

The cumulative effects of repeated, brief episodes of regional ischemia on myocardial function and dimension were examined in 14 open-chest dogs. The left anterior descending coronary artery was occluded for 5 minutes, followed by 10 minutes of reflow, repeated 16 times, and then 1 hour recovery. Systolic function decreased progressively in segments made repetitively ischemic and remained depressed even after 1 hour of recovery. Average systolic shortening decreased 20% from baseline after recovery from the first occlusion, 82% after the 8th, 91% after the 16th, and 104% after the 1 hour recovery (p less than 0.015, analysis of variance). End-diastolic segment length progressively increased in regions made repetitively ischemic, lengthening 4% after the first occlusion, 10% after the third occlusion, 19% after the sixteenth occlusion, and 16% after 1 hour of recovery (p less than 0.02). Nonischemic end-diastolic segment length also showed a smaller but parallel increase, while non-ischemic systolic function showed compensatory improvement. After the dogs were killed, myocardial staining with triphenyl tetrazolium chloride revealed no necrosis. Electron microscopy, performed in 5 dogs, showed scattered mitochondrial swelling in both postischemic and nonischemic regions, but no evidence of irreversible injury. The ratio of myocardial blood flow in the region made repetitively ischemic to nonischemic flow, as measured with microspheres, was 1.00 +/- 0.02 before the occlusions and 0.90 +/- 0.03 just before death (difference not significant). Thus, in the dog progressively abnormal regional systolic function and regional and global diastolic dilatation can be produced by repetitive, brief, coronary occlusions, which are not associated with histochemical or ultrastructural evidence of myocardial necrosis.

Animals↗

Value and limitations of exercise radionuclide angiography for detecting myocardial ischemia in healed myocardial infarction.

Exercise radionuclide angiography was performed in 65 normal subjects (group I), in 31 patients with exercise-induced transient thallium defects after acute myocardial infarction (AMI) (group II), and in 16 patients without exercise-induced transient thallium defects, angina or electrocardiographic changes after AMI (group III). Absolute left ventricular (LV) volumes were measured using a correction for attenuation in each patient. Similar peak heart rate-blood pressure products were achieved in groups II and III. Although the mean LV ejection fraction (EF) response to exercise in group III (increase of 0.11 +/- 0.10 units) closely resembled that of normal persons (increase of 0.14 +/- 0.09 units) and was significantly different from that of group II (decrease of 0.04 +/- 0.12), there was considerable individual variation. An abnormal EF response to exercise, defined as failure of EF to increase by at least 0.05 units, was found in 6 subjects (9%) in group I, 26 patients (84%) in group II, and 2 patients (13%) in group III. End-systolic volume failed to decrease in 10 subjects (15%) in group I, 25 patients (81%) in group II and 7 patients (44%) in group III. New regional wall motion abnormalities were found in no subject in group I, in 16 patients (52%) in group II and in only 1 patient (6%) in group III. Thus, although group responses of EF or end-systolic volume appeared to correlate with the presence or absence of ischemia, some patients with exercise-induced transient thallium defects after AMI responded normally to exercise radionuclide angiography stress testing and some patients without other evidence of exercise-induced ischemia after AMI responded to exercise radionuclide angiography testing abnormally.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Regional wall motion improvement after coronary thrombolysis with recombinant tissue plasminogen activator: importance of coronary angioplasty.

To evaluate functional recovery in 20 consecutive patients with acute myocardial infarction who received recombinant tissue-type plasminogen activator, serial two-dimensional echocardiograms were performed before and immediately after tissue plasminogen activator administration and at 1 and 10 days postinfarction. Tissue plasminogen activator was administered intravenously (17 patients) or by intracoronary infusion (3 patients) after angiographic confirmation of total occlusion. Reperfusion, documented by angiography, occurred in 13 of the 20 patients. The mean time from onset of chest pain to thrombolysis was 5.1 +/- 1.1 hours. Echocardiograms were evaluated for regional function with a visual semiquantitative scoring system by two independent observers who had no knowledge of patient identity, temporal sequence, therapy or effect of therapy. There was no immediate or 24 hour improvement in wall motion. At day 10 compared with pretreatment, 28 of 33 reperfused infarct zone segments versus 6 of 20 nonreperfused infarct segments demonstrated improved wall motion (p = 0.01). This improvement did not relate to time from onset of chest pain to successful thrombolysis. Of reperfused infarct zone segments in the distribution of coronary artery balloon dilation, 19 of 23 segments exhibited improvement versus 7 of 17 (reperfused, no angioplasty) and 6 of 20 (nonreperfused, no angioplasty) segments (p = 0.001). Infarct zone segments reperfused at the time of ongoing chest pain demonstrated functional recovery compared with segments reperfused in the absence of chest pain (18 of 23 versus 10 of 20, respectively; p = 0.05). Thus, in this uncontrolled series, there was echocardiographically detectable improvement in function of reperfused infarct segments 10 days after coronary thrombolysis with recombinant tissue plasminogen activator.

Adult↗

Results of a randomized prospective trial of intraaortic balloon counterpulsation and intravenous nitroglycerin in patients with acute myocardial infarction.

A randomized prospective clinical trial compared combined treatment with intraaortic balloon pumping and intravenous nitroglycerin for 4 to 5 days with routine clinical management in 20 patients with extensive myocardium at risk for infarction as evidenced by a thallium defect score of 7.0 units or greater. No significant differences in mortality or clinical outcome were observed between the 10 patients receiving the combined treatment and the 10 receiving routine management. In 14 patients two-dimensional echocardiograms obtained 6 to 24 hours after the onset of symptoms and at follow-up 6 to 16 days later (after completion of combined intraaortic balloon pumping plus nitroglycerin therapy) were analyzed to determine whether infarct segment or noninfarct segment lengths were affected by therapy. Among these 14 patients, 5 (3 receiving the combined therapy and 2 receiving routine management) demonstrated an increase in infarct segment length of greater than 1.0 cm. Mean infarct segment length increased 0.30 +/- 0.44 cm in patients receiving the combined therapy and 0.29 +/- 0.36 cm in patients on routine management (p = NS). In contrast, noninfarct segment length increased greater than 1.0 cm (mean increase 1.20 +/- 0.39) in five of seven patients on routine management but in none of 7 patients receiving intraaortic balloon pumping plus nitroglycerin therapy (mean decrease 0.22 +/- 0.20 cm) (p less than 0.05). No significant differences were noted in left ventricular ejection fraction, as measured by gated blood pool scintigraphy, or thallium perfusion defect score in a comparison of day 1 (pretreatment) with day 4 thallium or day 7 to 14 gated blood pool scintigrams. Thus, in patients with extensive myocardium at risk, it is unlikely that a reduction in mortality or a significant improvement in myocardial perfusion or ventricular function can be obtained by early intervention with intraaortic balloon pumping in combination with nitroglycerin. Although this combined therapy failed to prevent infarct segment lengthening (infarct expansion), the combined afterload-lowering effects of intraaortic balloon pumping and nitroglycerin did appear to prevent dilation or remodeling of noninfarcted segments during the first 2 weeks after acute myocardial infarction.

Adult↗

Persistence of coronary vasodilator reserve despite functionally significant flow reduction.

This study was done to determine whether coronary vasodilator reserve is exhausted when coronary flow falls and regional function becomes abnormal during low-pressure perfusion. In 10 open-chest, anesthetized dogs the left circumflex coronary artery (LC) was cannulated and perfused via a blood-filled reservoir. At LC pressures of 35 and 50 mmHg, regional segment lengths were measured with sonomicrometer crystals and regional flow with radiolabeled microspheres before and after adenosine vasodilation. Control measurements were made at 80 mmHg perfusion pressure. Prior to adenosine, flow fell transmurally when LC pressure was reduced to 50 and 35 mmHg and rose significantly following adenosine. No change in function occurred at an LC pressure of 50 mmHg, but at 35 mmHg LC segmental shortening fell to 30 +/- 14% of control, and LC flow fell to 42 +/- 5% of control, with endocardial and epicardial flows of 0.40 +/- 0.04 and 0.70 +/- 0.09 ml . min-1 . g-1, respectively. After adenosine, endocardial and epicardial LC flow rose to 0.69 +/- 0.08 and 1.81 +/- 0.47 ml . min-1 . g-1, respectively (P less than 0.05). LC segment shortening improved modestly to 50 +/- 15% of control (P less than 0.02). We conclude that transmural vasodilator reserve is maintained in the face of functionally significant reductions of coronary flow at low perfusion pressure. Adenosine-induced flow increases are associated with a modest improvement in segmental function.

Adenosine↗