Safety of dipyridamole testing in patients with cerebrovascular disease.
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Biomedical subjects
Publications and source records attributed to J L Tatum.
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Dobutamine infusion was performed in 16 patients following cardiac catheterization, and non-invasive assessment was performed with thallium SPECT and echocardiography. Dobutamine thallium scintigraphy was abnormal in 93% of patients with significant coronary artery disease. In addition, individual epicardial vessel involvement was identified by a corresponding perfusion defect with 88% sensitivity and 93% specificity. Dobutamine echocardiography revealed segmental wall motion abnormalities in 62% of patients with significant coronary disease. However, in six patients baseline segmental wall motion abnormalities on echocardiography improved during dobutamine infusion. Dobutamine thallium SPECT is a safe and useful test for the detection and localization of coronary artery disease. Dobutamine echocardiography is less useful in screening for coronary disease, but may detect areas of abnormally functioning myocardium having retained viability.
OBJECTIVE: To determine the feasibility of utilizing a scintigraphic technique to differentiate patients with adult respiratory distress syndrome due to sepsis syndrome from control volunteers and patients with congestive heart failure. Gamma scintigraphy was compared with chest roentgenograms to predict mortality rate and morbidity in adult respiratory distress syndrome (ARDS) patients. DESIGN: Prospective study. SETTING: University hospital ICUs. PATIENTS: Thirty-five control volunteers, 19 patients with congestive heart failure, 30 patients with a diagnosis of sepsis. MEASUREMENTS AND MAIN RESULTS: All patients were infused iv with technetium 99m-labeled albumin and underwent computerized gamma-scintigraphic analysis with a portable gamma camera. Lung-to-heart ratio of tracer was calculated and expressed as the slope index. Increase in slope index indicated increased pulmonary albumin flux. Slope index was no different in controls compared with congestive heart failure patients, unless the pulmonary artery occlusion pressure (PAOP) was greater than 30 mm Hg. Patients with a diagnosis of sepsis had an overall increased slope index compared with the other groups. A subgroup of patients in the septic group had a normal slope index. Septic patients with an increased slope index had a significantly (p less than .01) longer duration of mechanical ventilation (36 +/- 5 vs. 7 +/- 1 days), spent longer in the ICU (67 +/- 9 vs. 11 +/- 1 days), and had a longer hospital stay (113 +/- 20 vs. 35 +/- 5 days) than septic patients with a normal slope index. CONCLUSIONS: Gamma scintigraphy successfully differentiated between control volunteers and patients with congestive heart failure with PAOP less than 30 mm Hg from patients with sepsis-induced ARDS. Although all of the patients with a clinical diagnosis of septic ARDS had similar impairments in oxygenation and chest roentgenograms, those patients with a significantly increased pulmonary albumin flux (greater than 2 SD above control mean) had a markedly increased morbidity.
First-pass radionuclide angiography, for the evaluation of ventricular function during peak physiological stress, requires the use of a low-energy point source for correction of motion artifacts. A design for the construction of a refillable 125I point source is presented.
This report illustrates the use of cardiac magnetic resonance imaging (MRI) to quantify the initial extent of a cardiac rhabdomyosarcoma and, more importantly, its response to chemotherapy. Image slices spanning the heart and adjacent structures were analyzed using Simpson's rule applied to the image slices to estimate the tumor volume initially, then after 5 weeks, and again after 4 months of chemotherapy. A substantial, progressive reduction in tumor volume during chemotherapy was shown. After chemotherapy was discontinued, an increase in tumor volume was shown. It is suggested that, in addition to being useful in patient care, the technique may be useful in clinical investigations by providing an objective, quantitative measure of tumor response to therapy.
Thrombolytic therapy has increased the need for a technique to assess the viability of recently reperfused myocardium. This study examined the ability of in vivo phosphorus-31 (P-31) nuclear magnetic resonance (NMR) spectroscopy to distinguish reperfused-viable (stunned) from reperfused-infarcted myocardium at 6, 30, and 54 hours following coronary artery occlusion in a canine model. A 15-minute occlusion produced reperfused-viable myocardium in five animals and a 360-minute occlusion produced reperfused-infarcted myocardium in six animals. Postreperfusion risk zone myocardial phosphocreatine (PCr) concentration measured by P-31 NMR spectroscopy was significantly depressed throughout the 3-day study period in infarcted but not in viable myocardium (p less than 0.01 between groups, all time points). The postreperfusion ratio of inorganic phosphate (Pi) to PCr concentration, as determined by NMR spectroscopy, was elevated throughout the study period in infarcted but not in viable reperfused myocardium (p less than 0.01 between groups, all time points). Postreperfusion Pi concentration was elevated at 6 hours but not subsequently in reperfused-infarcted myocardium, and was not elevated in reperfused-viable myocardium. Logistic regression models selected PCr concentration and the Pi/PCr ratio as providing the best discrimination between reperfused-viable and reperfused-infarcted myocardium. The accuracy of P-31 NMR variables selected by logistic regression analysis for determining myocardial viability ranged from 97% to 100%.
We investigated the role of platelet-activating factor (PAF) in acute septic lung injury by examining the effects of the selective PAF antagonist SRI 63-675 and by measuring PAF in lung tissue in the porcine model. Four groups of pigs (15-25 kg) were studied: saline control (C, n = 5); Pseudomonas (Ps, n = 9), given 5 x 10(8) CFU/ml at 0.3 ml/20 kg/min intravenously over 1 hr; SRI (n = 3), given SRI 63-675 in a 40 mg/kg bolus; and SRI + Ps (n = 5). Ps infusion produced a fulminant lung injury characterized by a threefold increase in pulmonary arterial pressure at 30 min and persistent pulmonary hypertension (P less than 0.05 vs C), a significant (P less than 0.05 vs C) decrease in arterial oxygen tension (PaO2) from 60 min, a significant (P less than 0.05 vs C) increase in extravascular lung water (EVLW) from 120 min, and a significant (P less than 0.05 vs C) increase in albumin flux determined scintigraphically as slope index at 150-180 min. Systemic arterial pressure and cardiac index (CI) decreased significantly (P less than 0.05) in the Ps group vs C at 60 and 180 min, respectively. Bolus injection of SRI 63-675 at the time of Ps infusion blocked the early pulmonary hypertension, attenuated the early and late fall in PaO2, ameliorated the increase in EVLW, and prevented the late (150-180 min) increase in albumin flux. SRI 63-675 had minimal effects on Ps-induced hypotension or alterations in CI.(ABSTRACT TRUNCATED AT 250 WORDS)
Quantitative single-photon emission tomographic (SPECT) thallium 201 (201Tl) cardiac studies are frequently used to improve test accuracy. One common technique uses polar mapping of relative tracer distribution to compare patient data to emplates from "normal" patient data. Commercial software does not correct for cardiac size variations. This study's purpose was to determine the effect of uncorrected variations in heart size on the variance of the normal population, which is the basis of template significance levels. Twenty-one male volunteers with low probability (less than 5%) for coronary disease underwent SPECT-Tl stress test. Data analysis with and without size correction was performed. Data were corrected for size by use of a three-dimensional compression/expansion algorithm. Quantitative data were generated by radial search to maximum activity in short-axis reconstructions. The mean activity and its variance was calculated from 288 points encompassing the myocardium. Mean and variance differences were analyzed by paired t test. There was no difference in activity means (pT greater than .9), indicating that size correction does not distort the data. The corrected data had, however, significantly lower variance (pT less than .0001). This shows that ventricular size variation contributes significantly to "normal" template variance and may adversely affect diagnostic accuracy in the absence of volume correction.
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Radionuclide bone imaging using Tc-99m phosphates may show accumulation of activity in amyloid deposits. While many sites of amyloidosis have been detected with bone imaging, many reports center on cardiac amyloidosis. The case reported here demonstrates accumulation of Tc-99m MDP in amyloidosis involving the skin and muscle, including the tongue.
We compared the sensitivity of dynamic (Cdyn) and static lung compliance (CL) with indicators of permeability injury in a model of septic porcine adult respiratory distress syndrome. Two groups of anesthetized ventilated swine (15-25 kg) were studied. Septic animals (Ps, n = 13) received Pseudomonas aeruginosa intravenously for 1 h, which resulted in severe adult respiratory distress syndrome. Controls (C, n = 13) received 0.9% NaCl. Cdyn, CL, bronchoalveolar lavage for protein estimation, and thermal cardiogreen extravascular lung water (EVLW) measurements were performed in seven C and eight Ps animals. Six C and five Ps animals underwent gamma camera measurement of lung-to-heart ratio (slope index) of 99Tc-labeled human serum albumin. Both Cdyn and CL decreased significantly (P less than 0.01) at 30 min and thereafter in Ps vs. C. EVLW, slope index, and bronchoalveolar protein content increased significantly (P less than 0.05) in Ps vs. C at 120, 150, and 300 min, respectively. Cdyn and CL decreased well before onset of permeability injury. These early changes may be due to release of vasoactive mediators and sequestration of neutrophils in the pulmonary capillaries and later to increases in EVLW. Measurement of Cdyn and CL represents an early means of assessing evolving lung injury in this acute septic porcine model.
The feasibility of utilizing technetium 99m (Tc-99m) lymphocytes labeled by a modified stannous chloride technique for the assessment of cardiac allograft rejection was examined. Syngeneic lymphocytes were labeled with Tc-99m at 125 microCi per 10(7) cells. Mean labeling efficiency was 67 +/- 17%, n = 44. Two groups of rats allogeneic (ALLO) (ACI/Lewis) and syngeneic (SYN) (Lewis/Lewis) were injected with labeled cells at two, four, five, and seven days post cardiac graft. At 20 hr post-injection, transplant and native hearts were harvested for radioanalysis and histology. Ratio of percent dose per gram transplant heart to native heart (T/N) revealed a significant difference between ALLO (T/N = 2.7 +/- 0.23, n = 5) and SYN (T/N = 1.73 +/- 0.12, n = 5) at two days P[F] = 0.0045. Maximum difference occurred at five days with ALLO mean T/N of 6.40 +/- 0.54, n = 5 (P[F] = 0.0001). There was no significant difference at seven days post graft with ALLO 2.85 +/- 0.30, n = 5 and SYN 2.02 +/- 0.05, n = 5 (P[F] = 0.0166). SYN rat T/Ns did not change significantly (mean 1.83 +/- 0.10, n = 18) at the various time periods.
Hepatic infarctions are rarely encountered, and scintigraphic findings are reported even less frequently in this entity. A patient who developed a left hepatic lobe infarct after surgical resection of a celiac axis aneurysm is described and a brief review of hepatic infarction is presented.
The effects of two pharmacologically distinct histamine H2 receptor antagonists were studied in combination with ibuprofen (I) and diphenhydramine (D) in a porcine model of septic ARDS. Cimetidine (C) is reported as having direct oxygen radical scavenging abilities and is an inhibitor of cytochrome P-450, whereas ranitidine (R) acts solely by H2 receptor blockade. Four groups were studied: Group Ps (n = 8) received a continuous infusion of live Pseudomonas aeruginosa 5 x 10(8) CFU/ml at 0.3 ml/20kg/min, Group C (n = 6) received a control saline infusion, and the treatment groups received I (12.5 mg/kg) and D (10 mg/kg) in combination with either C (150 mg, CID, n = 6) or R (25 mg, RID, n = 5) given at 20 and 120 minutes after the onset of Ps. Pulmonary (PAP) and systemic (SAP) arterial pressures, cardiac index (CI), PaO2, thermal cardiogreen extravascular lung water (EVLW) and scintigraphically determined pulmonary albumin flux (slope index, SI) were measured. Ps infusion produced significant (p less than 0.05) cardiovascular collapse, hypoxemia and increased EVLW and SI. Both CID and RID temporarily reversed pulmonary arterial hypertension and maintained PaO2, EVLW, SAP and CI at control levels throughout the study, and significantly improved SI at 180 min. These results suggest that cimetidine and ranitidine act in this combination therapy primarily as H2 receptor antagonists.
The biodistribution patterns of 99mTc (99mTc-lymph) and 111In-lymphocytes with [111In-(Sn)-lymph] or without (111In-lymph) stannous ion treatment was compared in Lewis rats. Syngeneic lymphocytes were labeled with either 125 microCi (4.63 MBq) 99mTc or 5 microCi (185 kBq) 111In per 2 x 10(7) cells. Mean labeling efficiency for 99mTc and 111In was 68.61% +/- 3.90% (SEM) and 87.22% +/- 2.01% (SEM) respectively. 99mTc-lymph (n = 4), 111In-lymph (n = 6) and 111In-(Sn)-lymph (n = 6) rats received 2 x 10(7) cells and were killed 18 h later. While 99mTc-lymph demonstrated significantly less localization in spleen, lymph nodes, and blood (P(F) less than 0.01) as compared with 111In-lymph, 111In-(Sn)lymph also demonstrated a significant difference (P[F]= 0.0001) in lymph node accumulation when compared to 111In-lymph. As the activity levels utilized are not associated with cell radiation damage, these alterations in biodistribution do not reflect viability or chromosomal damage, but appear related to stannous ion exposure.
Parameters of systolic and diastolic function obtained from radionuclide ventriculography (RNV) were evaluated in nine cardiac allograft recipients. In 25 examinations, left end-diastolic volume (LEDV), cardiac output (CO), left ejection fraction (LEF), right ejection fraction (REF), heart rate (HR), peak filling rate (PFR), time to peak filling rate (TPFR), peak ejection rate (PER), and average filling rate for the first half of diastole (DFRH) were determined. Endomyocardial biopsy was obtained within 48 hours. Biopsies were divided into three treatment classes (0 = normal; 1 = rejection but not requiring supplemental therapy; and 2 = rejection requiring supplemental immunotherapy). Two independent variables of diastolic function proved to be significant (DFRH P less than 0.00001, and PFR P less than 0.002) predictors of the dependent variable class when regression analysis was applied to the data. Alterations in diastolic function associated with acute rejection are detectable on RNV and simulate changes anticipated in a primary restrictive cardiomyopathy.
The ability of in vivo phosphorus-31 magnetic resonance (MR) spectroscopy to permit accurate distinction between reperfused-viable and reperfused-infarcted myocardium was examined in a canine model of acute coronary occlusion. In vivo myocardial pH and phosphocreatine, adenosine triphosphate, and inorganic phosphate levels were measured at baseline and for the first 90 minutes after reperfusion of a total coronary artery occlusion producing either predominantly viable (nine animals) or infarcted (nine animals) myocardium in the region of metabolic study. Myocardial viability was assessed in each animal by means of postmortem triphenyltetrazolium chloride staining. Tissue was characterized from the in vivo P-31 MR data by means of logistic regression analysis. The accuracy of using the P-31 MR data for distinguishing reperfused-viable from reperfused-infarcted myocardium was 100% (69 of 69 data points, 18 of 18 animals). Results of the logistic regression procedure indicated that phosphocreatine was the metabolic variable enabling most effective separation of reperfused-viable and reperfused-infarcted myocardium. Thus, metabolic data obtained with P-31 MR spectroscopy permit effective separation of reperfused-viable from reperfused-infarcted myocardium.
We report a patient in whom cardiac magnetic resonance imaging detected a clinically unsuspected pulmonary artery thromboembolus. Follow-up MRI after surgical removal of the thromboembolus showed normal pulmonary arteries. This case illustrates the potential utility of MRI in the detection and follow-up of central pulmonary artery thromboembolism.