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Biomedical subjects

R Rokey

Publications and source records attributed to R Rokey.

At least 19 recordsLinked to original sources

Does cocaine cause coronary vasospasm in chronic cocaine abusers? A study of coronary and systemic hemodynamics.

The pathogenesis of acute myocardial ischemia or infarction following cocaine abuse is not known. Cocaine causes an increase in circulating catecholamines. Therefore alpha-adrenergic mediated focal or generalized coronary artery spasm has been presumed to be the likely mechanism to induce ischemia. However, coronary vasospasm in chronic cocaine abusers has not been demonstrated angiographically. Moreover, it has been observed that patients commonly manifest ischemic changes hours up to a week after abusing cocaine. In order to evaluate direct effects of cocaine on coronary vasculature, 6 chronic cocaine abusers admitted with prolonged chest pain and electrocardiographic ST- and T-wave changes were studied. Cocaine administered intravenously (maximum 32 mg) produced subjective sensation of central nervous stimulation (the "high") in all patients. However there was no significant change in coronary artery diameter (assessed by computer-assisted quantitative technique), myocardial perfusion (assessed by contrast echocardiography) or left ventricular wall motion (assessed by two-dimensional echocardiography) as compared with the baseline values. Coronary sinus flow (thermodilution) showed an upward trend, a probable reflection of a significant increase in cardiac output (average 62%, p less than 0.007). Despite a significant elevation in heart rate (average 56%, p less than 0.007), mean systemic arterial pressure (average 12%, p less than 0.05) and rate-pressure product (average 69%, p less than 0.005), no symptomatic or acute electrocardiographic changes were observed. It is concluded that recreational doses of cocaine do not cause focal or generalized coronary vasospasm or reduced myocardial perfusion in patients who present with chest pain temporally related to cocaine.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Magnetic resonance velocity measurements in small arteries. Comparison with Doppler ultrasonic measurements in the aortas of normal rabbits.

RATIONALE AND OBJECTIVES: Magnetic resonance imaging (MRI) can be used to measure motion. This study compares MRI blood flow velocity measurements to Doppler ultrasound velocity measurements in an animal model. MATERIALS AND METHODS: Blood flow in the abdominal aortas of nine normal rabbits was measured using 16-frame, velocity-resolved MRI and Doppler ultrasound. The MRI data were processed into velocity spectra to aid in their interpretation. RESULTS: Maximum velocity measurements made by range-gated Doppler ultrasound were predicted by the maximum velocity values derived from MR velocity spectra with a slope of 0.861, an intercept of -2.78 cm/second, and an R-value of 0.935 in 70 measurements. CONCLUSIONS: Despite the longer time required for the MR measurement, the MR velocity measurement may be useful in the assessment of deep vessels or those obscured by other structures, which are difficult to measure with ultrasound.

Animals

Termination of supraventricular tachycardia with intravenous adenosine in a pregnant woman with Wolff-Parkinson-White syndrome.

BACKGROUND: Pregnancy is associated with an increased frequency of arrhythmias in women with Wolff-Parkinson-White syndrome. We describe the use of intravenous (IV) adenosine for the acute termination of a narrow complex tachycardia in a pregnant patient with this syndrome. CASE: A 26-year-old woman with known Wolff-Parkinson-White syndrome presented with dizziness, palpitations, and a narrow complex supraventricular tachycardia. We used IV adenosine to convert the arrhythmia to a normal sinus rhythm. During labor, the patient again developed a narrow complex supraventricular tachycardia, and fetal monitoring revealed recurrent deep variable decelerations. Intravenous adenosine resulted in conversion to sinus rhythm and restoration of the fetal heart rate to normal. Cesarean delivery produced a healthy male infant. CONCLUSIONS: Adenosine is effective in rapidly terminating maternal narrow complex tachyarrhythmias before and during delivery in women with Wolff-Parkinson-White syndrome. It can also treat fetal bradycardia resulting from the maternal arrhythmia.

Adenosine

Assessment of experimental pericardial effusion using nuclear magnetic resonance imaging techniques.

An experimental canine model of pericardial effusion was designed to validate previous clinical nuclear magnetic resonance imaging (NMR) studies. Saline (n = 7), serum (n = 4), blood (10% hematocrit [n = 5]; 20% hematocrit [n = 5]), and lipid (n = 4) effusions were chosen to resemble: (1) transudative/exudative, (2) nonhemorrhagic/hemorrhagic, and (3) chylous effusions, respectively. There was a linear correlation between the infused volume and the pericardial/epicardial distance measurements on the nuclear magnetic resonance images. Hemorrhagic and nonhemorrhagic exudative effusions were distinguished from transudative effusions by the low signal intensity of transudative effusions images obtained at a TR (repetition time) of 400 and 800 msec. Nonhemorrhagic effusions had significantly lower effusion-to-myocardial signal intensity ratio at TR of 400 msec than did hemorrhagic effusions. Differences in hematocrit were not appreciated qualitatively or quantitatively. Compared with other effusion types, only chylous effusions were hyperintense to myocardium at a TR of 400 msec. Chylous effusions were further uniquely characterized by a decreasing effusion-to-myocardial signal intensity ratio with increasing TR. These experimental findings corroborate the findings of earlier clinical reports and suggest that NMR can provide important assistance in the evaluation of pericardial effusions.

Animals

Physiologic observations of pregnant women undergoing prophylactic erythrocytapheresis for sickle cell disease.

Five women in the second or early third trimester of pregnancy underwent prophylactic partial red cell exchange by automated erythrocytapheresis for sickle cell disease. The purpose of this pilot study was to characterize the hematologic, hemodynamic, and metabolic changes associated with this procedure. Pretransfusion hematocrit increased 49 percent by 3 to 5 days after the transfusion. Paired observations indicate a 14-percent drop in maternal oxygen consumption. There was a slight tendency for reduced posttransfusion cardiac output that resulted primarily from changes in maternal heart rate and not from changes in stroke volume. Left ventricular contractility also tended to decrease after transfusion. Neither fetal bradycardia nor alteration in the umbilical circulation by Doppler ultrasound was observed during the transfusion procedures. Despite substantial hematologic alterations, this procedure is associated with small or negligible changes in maternal hemodynamic and metabolic function for minimally symptomatic pregnant patients with sickle cell disease.

Anemia, Sickle Cell

Resolution of ventricular tachycardia and endocardial tuberculoma following antituberculosis therapy.

A 23-year-old woman presented with sustained ventricular tachycardia and was found to have an endocardial mass by echocardiography and by magnetic resonance imaging. The diagnosis of cardiac endocardial tuberculoma was made, and she was treated with antituberculous therapy and an antiarrhythmic drug for one year. After a year, the mass was no longer present, and with all antiarrhythmic medications stopped, ventricular tachycardia could no longer be induced by electrophysiologic study. There has been no clinical recurrence.

Adult

Return of atrial mechanical function following electrical conversion of atrial dysrhythmias.

The return of atrial mechanical function and its relationship to embolic events following cardioversion of atrial arrhythmias is controversial. Fourteen patients with atrial arrhythmias were evaluated with pulsed Doppler echocardiography before and after direct current (DC) cardioversion. The atrial filling fraction increased significantly: 1.14 +/- 4.3% at baseline versus 14.9 +/- 13.3%, 13.4 +/- 11.4%, and 21.9 +/- 13.5% at 5 minutes, 30 minutes, and 24 hours, respectively, following cardioversion. Absent atrial mechanical activity was noted in four patients immediately after cardioversion. Mechanical activity resumed by 30 minutes in one patient and at 24 hours in two others. Those with delayed atrial function had lower stroke volumes and atrial filling fractions following cardioversion. An embolic event occurred in one patient who had immediate return of atrial mechanical activity. This patient also had the largest atrial filling fraction of any patient at 24 hours (41%). These data suggest that the degree of atrial mechanical activity following cardioversion is variable and that embolic episodes are not necessarily related to delayed return of atrial mechanical activity following cardioversion.

Adult

Nuclear magnetic resonance imaging of the pulmonary arteries, subpulmonary region, and aorticopulmonary shunts: a comparative study with two-dimensional echocardiography and angiography.

Twelve patients more than 8 years of age with complex congenital heart disease were evaluated prospectively with nuclear magnetic resonance (NMR) imaging and with echocardiographic and angiographic imaging techniques. The subpulmonary region, main pulmonary artery, right and left pulmonary arteries, and aorticopulmonary shunts were clearly visualized by means of NMR imaging in all patients. Angiography defined the subpulmonary region and main pulmonary artery in all patients, the right and left pulmonary arteries along their length in 11 of 12 patients, and aorticopulmonary shunts in seven of eight patients. Except for the right pulmonary artery, echocardiography defined the remaining structures in less than or equal to 50% of patients. Measurement of the pulmonary artery diameters on NMR images correlated well with the angiographic measurements of both the left (r = 0.96) and right (r = 0.94) pulmonary arteries. These results suggest that NMR imaging may be the preferable noninvasive imaging technique for defining the anatomy of the subpulmonary region, main and left pulmonary arteries, and aorticopulmonary shunts in older patients with congenital cardiovascular disease and that it compares well with the angiographic standard.

Adolescent

Cor triatriatum dexter: antemortem diagnosis in an adult by cross sectional echocardiography.

Cor triatriatum dexter is a rare cardiac abnormality in which the right atrium is subdivided into two distinct chambers. This anomaly is generally attributed to the persistence of the right sinus venosus valve and it is frequently associated with severe malformations of other right heart structures. The antemortem diagnosis of the membrane may be difficult and its presence is often only established at necropsy. In a woman of 56 with Ebstein's anomaly the echocardiographic features of cor triatriatum dexter were examined before and during cardiac catheterisation. These investigations showed the position of the membrane, that there was no gradient between the two atrial chambers, and that there were perforations in the centre of the membrane.

Cor Triatriatum

Usefulness of nuclear magnetic resonance imaging for evaluation of pericardial effusions, and comparison with two-dimensional echocardiography.

Nuclear magnetic resonance (NMR) imaging clearly delineates cardiovascular structures without interference from overlying bone and lung tissue. The techniques of NMR imaging and echocardiography were compared in 26 patients with pericardial effusions, 10 of whom had associated pleural effusions. In those patients with fluid detected by both techniques, estimated size of the effusion tended to be somewhat larger by NMR. NMR imaging detected several small pericardial effusions that were not visualized by echocardiography. Both techniques demonstrated loculation well, although NMR imaging was better for detecting fluid located superiorly at the aortic pericardial reflection site, medially at the border of the right atrium and posteriorly at the left ventricular apex. In the 14 patients with documented exudative effusions (10 pericardial, 4 pleural) NMR signals of varying intensity were present in the effusion. One patient had a documented transudative effusion and no NMR signal was observed in the fluid. NMR imaging clearly distinguished pericardial from pleural effusions. NMR imaging is indicated when a suspected pericardial effusions is not detected by echocardiography or when specific localization or fluid characterization is desired.

Adolescent

Nuclear magnetic resonance imaging of acute myocardial infarction within 24 hours of chest pain onset.

The present study was intended to establish the feasibility, safety and usefulness of conventional spin-echo nuclear magnetic resonance (NMR) imaging for the detection of acute myocardial infarction within 24 hours of the onset of chest pain. Monitoring facilities were established in the NMR imaging suite that provided the same level of reliability and safety found in a standard coronary care unit. An imaging protocol was developed that allowed the acquisition of a complete study in 30 minutes while providing useful information about mechanical function and myocardial tissue contrast. Eighteen postthrombolysis patients were imaged within 21 +/- 2 hours of chest pain onset. No patient developed recurrent chest pain or arrhythmias in the NMR imaging suite. Relatively T2-weighted spin-echo images (echo time = 60 ms; repetition time = heart rate) provided interpretable images in 16 patients. Fourteen normal subjects were imaged for comparison. Thirteen of 16 patients had an increase in signal intensity in the region of the infarction. Regional wall thickening was assessed using a floating endocardial centroid technique. Wall motion abnormalities detected by NMR corresponded to those noted by 2-dimensional echocardiography and contrast angiography. Sensitivity, specificity and accuracy for the detection of infarction were 93, 80 and 87%, respectively, when signal intensity and wall thickening abnormalities were combined. In summary, NMR imaging is feasible in patients with acute myocardial infarction within 24 hours of chest pain onset. The study can be conducted safely and it provides useful information about acute myocardial infarction.

Adult

Maternal hemodynamic effects of uterine contractions by M-mode and pulsed-Doppler echocardiography.

Nineteen normotensive term gravid women were studied by M-mode and pulsed-Doppler echocardiography to noninvasively evaluate the hemodynamic consequences of uterine contractions on maternal left ventricular function. These laboring subjects were placed in the left lateral decubitus position with epidural labor anesthesia. Ejection fraction was not affected by firm contractions, although a small increase in left ventricular end-diastolic measurements was noted. There was a tendency for maternal heart rate to decrease (-5%); however, this trend was not statistically significant. A 16% increase in left ventricular stroke volume (75 +/- 15 to 89 +/- 17 ml) (p less than 0.001) was associated with an overall 11% augmentation of maternal cardiac output (6.31 +/- 1.79 to 7.12 +/- 1.93 L/min) (p less than 0.001). These findings support the hypothesis that uterine contractions increase maternal stroke volume through autotransfusion of uteroplacental blood and cardiac preload augmentation during normal labor.

Cardiac Output

Assessment of myocardial systolic wall thickening using nuclear magnetic resonance imaging.

A quantitative nuclear magnetic resonance (NMR) imaging method of evaluating regional left ventricular function was compared with histochemical evidence of infarction in dogs and functional measurements in patients. Short-axis images of the heart were obtained at end-diastole and at 100 ms intervals thereafter. Regional diastolic left ventricular wall thickness and maximal percent systolic wall thickening were measured at the level of the papillary muscles in each of six segments. In six normal dogs, the mean end-diastolic wall thickness was 9 +/- 1.6 mm, and the mean maximal percent thickening was 61 +/- 11%. In eight dogs with a 4 day old infarct, maximal percent thickening was 5 +/- 8% (p less than 0.001) in the infarcted segments. In 10 normal human volunteers, the mean end-diastolic wall thickness was 10.1 +/- 1 mm, and the mean maximal percent systolic wall thickening was 60 +/- 18%. Reduced maximal percent systolic wall thickening was defined as a value greater than or equal to 2 SD below the mean value obtained in normal volunteers. Seven patients with regional wall motion abnormalities were independently assessed by NMR imaging and biplane ventriculography. With a sensitivity of 94% and a specificity of 80%, NMR imaging demonstrated reduced maximal percent systolic wall thickening in the same segments identified as akinetic or dyskinetic by biplane ventriculography. Thus, abnormalities of regional systolic wall thickening are accurately identified with this quantitative imaging technique.

Adult

Assessment of tissue iron overload by nuclear magnetic resonance imaging.

PURPOSE: The ability of stored intracellular iron to enhance magnetic susceptibility forms the basis by which tissue iron can be detected by nuclear magnetic resonance (NMR) imaging. We used this technique to assess myocardial, spleen, and liver iron content in patients with known or suspected iron overload disorders. PATIENTS AND METHODS: Spin echo NMR images were obtained in 30 patients; 20 had chronic anemias treated by multiple blood transfusions, five had idiopathic hemochromatosis, and five had non-hemochromatotic liver disease with elevated serum ferritin levels and no stainable iron on liver biopsy. The acquisition of oblique images through the short axis of the left ventricle permitted assessment of left ventricular function, while demonstrating the liver and spleen on the same image. Iron content was assessed using a signal intensity ratio of organ (spleen, liver, or myocardium) to skeletal muscle. RESULTS: In patients with multiple blood transfusions, iron content was highest in liver, followed by the spleen. Significant iron overload was detected in the myocardium of only one patient. Left ventricular systolic wall thickening was normal in patients receiving multiple blood transfusions. Two patients with treated idiopathic hemochromatosis had normal signal intensity ratios, and three untreated patients had evidence of significant deposits of iron in the liver and spleen as indicated by a reduction in signal intensity ratios (0.2 +/- 0.01 and 0.9 +/- 0.01, respectively). Five patients with non-hemochromatotic liver disease and high serum ferritin levels had normal signal intensity ratios by NMR imaging. CONCLUSION: NMR imaging is a useful method of detecting tissue iron and distinguishing disease due to iron overload. Myocardial iron deposition is a late event, occurring after accumulation of iron in the spleen and liver.

Adult