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A Buck

Publications and source records attributed to A Buck.

At least 73 records · Page 4Linked to original sources

Effect of intravascular ligand binding on parameter estimates derived from tracer kinetic modelling.

The purpose of this study was to assess the effect of intravascular ligand binding on parameter estimates derived from tracer kinetic modelling. To this end intravascular ligand kinetics between the free and a bound compartment in plasma and the exchange of tracer between the capillary space and tissue were analysed using a simple compartment model. The effect of non-equilibrated intravascular compartments on parameter estimates was evaluated in a computer simulation. It was found that three kinetic situations must be distinguished. If the intravascular compartments are fully equilibrated when the ligand reaches the target organ, intravascular binding simply acts as a scale factor for the transport-related parameter K1. If the intravascular kinetics is very slow, only minimal binding will occur. In between there is a range where ongoing equilibration leads to time variability of K1. Since tracer kinetic modelling usually does not account for such time variability, the parameter estimates become biased, the degree of the bias depending on the intravascular binding kinetics. Furthermore the bias may be dependent on receptor density, meaning that model-derived receptor estimates are not linearly related to the true receptor density. It is concluded that intravascular ligand binding can severely affect parameter estimates derived from tracer kinetic modelling. Especially disturbing are effects due to ongoing intravascular equilibration following the arrival of the ligand in the target organ. These can be avoided by letting the ligand equilibrate with blood in a syringe prior to injection.

Blood Vessels↗

Quantitative evaluation of manganese-52m as a myocardial perfusion tracer in pigs using positron emission tomography.

There is a need for a quantitative myocardial perfusion agent that does not require an on-site cyclotron. Early studies with manganese demonstrated that this trace metal is of potential use for myocardial imaging. 52mMn can be produced in a 52Fe-52mMn generator and is suitable for positron emission tomographic (PET) imaging. The purpose of this study was to evaluate 52mMn with regard to its potential to quantitatively assess myocardial perfusion. Dynamic PET imaging was performed in six pigs with various doses of dipyridamole to increase blood flow. Retention (R) and model-based K1 values were correlated with microsphere blood flow. The models consisted of one (K1, k2) and two (K1, k2, k3) tissue compartments. Anterior, lateral and septal regions showed a good myocardium-to-background ratio; the evaluation of the inferior wall was impaired by high liver uptake. Linear regression yielded the following equations: K1=1.152 flow+0.059 (r=0.92), R=0.069 flow+0.034 (r=0.84). Based on these regressions, K1 increased 2.7-fold and R 2.6-fold in the examined flow range of 0.5-2 ml/min/g (fourfold increase), demonstrating an underestimation of higher flow rates by both measures. It is concluded that 52mMn allows the qualitative assessment of myocardial perfusion but does not meet the requirements of a quantitative myocardial perfusion agent.

Animals↗

Carbon-11 and iodine-123 labelled iomazenil: a direct PET-SPET compari son.

The benzodiazepine receptor ligand iomazenil was labelled with carbon-11 to allow a direct positron emission tomography/single-photon emission tomography (PET/SPET) comparison with the well-known iodine-123 labelled compound. Imaging showed the same regional distribution for both modalities. Blood sample activity was corrected for metabolites by extraction with chloroform and high-performance liquid chromatographic analysis. Metabolism is very fast: 5min after application more than 85% of the plasma activity is present as hydrophilic metabolites. Kinetic methods were used to obtain regional estimates of transport rate constants and receptor concentrations. A three-compartment model was employed which gave transport rate constants for brain uptake (K1) and the distribution volume for the specifically receptor bound compartment (DVS). K1 varied from 0.32 to 0.50ml/min per gram for the cortical regions, cerebellum, thalamus and striatum for PET and SPET. Mean DVS-PET and DVS-SPET values were, respectively, 23+/-5 and 31+/-5ml/g for the occipital cortex, 11+/-3 and 15+/-2ml/g for the cerebellum, 7+/-2 and 11+/-3ml/g for the thalamus, 5+/-3 and 10+/-3ml/g for the striatum, and 3+/-2 and 3+/-1ml/g for the pons. These values correlated very well individually. The coefficient of variation of the SPET parameters was quite comparable to that of the PET parameters, especially after 180min (PET 90min) study duration. Thus quantitative benzodiazepine receptor information can be obtained from dynamic SPET imaging in the same way as with PET.

Adult↗

In vivo quantification of cerebral muscarinic receptors in normal human aging using positron emission tomography and [11C]tropanyl benzilate.

Regional cerebral muscarinic cholinergic receptor binding was quantified in normal young and elderly subjects employing the muscarinic antagonist radioligand [11C]tropanyl benzilate (TRB). Binding was determined by kinetic analyses of positron emission tomographic (PET) determinations of cerebral activity in conjunction with radial arterial blood sampling following intravenous radiotracer injection. A significant, but minor (8%), loss of frontal cortical receptors relative to whole brain average receptor density was found with advancing age. Parametric estimates of binding suggest small reductions in cerebral cortex binding as well as increases in brain stem and cerebellar binding underlying the observed pattern difference. However, these latter changes did not achieve statistical significance. We conclude that cerebral muscarinic receptor availability, as depicted by antagonist binding, does not undergo a major decline during normal aging of the adult human brain. The cerebral cortical cholinergic dysfunction in elderly subjects, suggested by prior clinical evidence, is not attributable to major loss of total muscarinic cholinoceptive capacity.

Adult↗

Kinetic evaluation of positron-emitting muscarinic receptor ligands employing direct intracarotid injection.

The development and characterization of new receptor ligands for in vivo binding assays are often both lengthy and expensive. It is therefore desirable to predict the suitability of a ligand early in the process of its evaluation. In the present study, compartmental analysis following intracarotid ligand injection in the monkey is used to evaluate the in vivo kinetics of the muscarinic cholinergic receptor antagonists [11C]tropanyl benzilate ([11C]TRB) and [11C]N-methylpiperidyl benzilate ([11C]NMPB). Animals were implanted with chronic subcutaneous access ports and indwelling catheters with tips located in the common carotid artery, just proximal to its bifurcation. The external carotid artery was ligated to ensure selective tracer delivery through the internal carotid artery to the brain. Positron emission tomography was used to measure brain tissue time-activity curves following tracer injections. CBF was estimated from the clearance of [15O]H2O, and receptor ligand distributions were analyzed according to a physiologic model consisting of an intravascular compartment and nonspecific plus free and receptor-bound tissue ligand compartments. In [11C]TRB studies, marked reductions in the forward ligand-receptor binding rate and in both the total and the specific binding tissue-to-plasma volumes of ligand distribution were observed after scopolamine receptor blockade or with low administered specific activity. Conversely, neither the distribution volume of the nonspecific plus free ligand compartment nor the rate of ligand dissociation from receptor sites was affected. In [11C]NMPB studies, tissue compartments describing specific binding and nonsaturable components could not be reliably separated. The receptor-related term in this case, the total tissue-to-plasma distribution volume, demonstrated reduction after low specific activity ligand injection. Comparison of the two ligands suggests that NMPB interacts more rapidly with the receptors and has a lower apparent volume of distribution than does TRB. Thus, NMPB may be the more suitable ligand if accurate estimates of binding dissociation rate are limited by temporal constraints or if simplified, one-tissue-compartment analyses are used. The carotid injection method appears promising for the initial evaluation of ligand kinetics, permitting physiologic compartmental analyses without measurement of input functions or chromatography of blood samples.

Animals↗

Modeling alternatives for cerebral carbon-11-iomazenil kinetics.

UNLABELLED: The in vivo binding kinetics of [11C]iomazenil, a central benzodiazepine antagonist, were analyzed using PET and compartmental modeling. This method is of interest because it allows validation of the SPECT tracer [123I]iomazenil. METHODS: The experimental protocol consisted of serial PET imaging following a single bolus injection of the serial PET imaging following a single bolus injection of the radioligand. Imaging was performed on five healthy young volunteers over 106 min. The tissue time-activity curves of various brain regions were analyzed with models consisting of two (K1, k2") and three (K1, k2', k3', k4) compartments. Some of the methods use simultaneous fitting of the data from multiple brain regions coupled with common parameters. Distribution volumes and k3-based parameters [(K1/k2') k3' and k3')] were chosen to represent receptor density. Goodness of fit was assessed with F-test statistics and chi-square analysis. RESULTS: Compared with the two-compartment model, goodness of fit was significantly improved by all three-compartment configurations. Of the three-compartment models, goodness of fit was similar for the configurations with K1/k2', k4 or no parameter coupled, and slightly worse when both parameters were coupled. The most reliable estimates of receptor density were obtained from the specific distribution volumes (DVs) calculated with the three-compartment model, and the coupling of k4 or both k4 and K1/k2'. Due to oversimplification of the kinetics, the DV values calculated with the two-compartment model were underestimated. CONCLUSION: Reliable quantitative information regarding benzodiazepine receptor density following bolus injection of iomazenil is best obtained by tracer kinetic modeling that uses a three-compartment model and parameter coupling.

Adult↗

Whole-body PET: physiological and artifactual fluorodeoxyglucose accumulations.

UNLABELLED: The purpose of this study was to semiquantitatively identify artifactual and physiological soft-tissue accumulations in whole-body FDG-PET scans with the aim of defining their frequency and anatomic distribution. METHODS: Fifty whole-body FDG-PET scans performed for the staging of malignant melanoma were obtained from transaxial scans and reconstructed without absorption correction by filtered backprojection in the form of coronal and sagittal sections. The patients were asked to stay n.p.o. for at least 4 hr and interrogated about their physical activity prior to injection and until scanning. Classification of FDG organ accumulations was done using grades 0-6. Means and standard deviations on this scale were then calculated for multiple organs and muscle groups and tabulated. RESULTS: On this grading scale, viscera showed uptake grades between 1.7 +/- 0.5 and 2.05 +/- 1.0. Except for the intestines, the activity in these organs was homogeneously distributed. Relatively high average uptake values of 2.0-4.2 (s.d. > or = 2.3) were found in various muscle groups, especially the orbital musculature. Myocardial uptake was visible in 90% of the scans. Reconstruction artifacts were seen around the renal collecting system and the bladder. CONCLUSION: Most of the "normal" accumulations of FDG in nonattenuation corrected whole-body PET are readily recognized and distinct from the usually focal FDG accumulation associated with metastatic disease, but the diagnostician must be familiar with them. Muscular FDG uptake is related to physical activity prior and immediately following injection and can be minimized by proper patient instructions and positioning.

Adult↗

Staging of metastatic melanoma by whole-body positron emission tomography using 2-fluorine-18-fluoro-2-deoxy-D-glucose.

Metastatic melanoma was staged in 15 patients using whole-body positron emission tomography (PET) and the radiopharmaceutical 2-fluorine-18-fluoro-2-deoxy-D-glucose (FDG). PET correctly demonstrated 30 metastases in lung, brain, pancreas, nasal cavity, skin and subcutaneous tissue, and lymph nodes. It detected 97% of all metastases exceeding its spatial resolution (> 5 mm). Two cutaneous metastases (approximately 3 mm) did not show increased FDG uptake; the overall detection sensitivity was 91%. Two false-positive lesions in one patient were due to severe wound infection. PET correctly excluded malignancy in four cases where suspicious lesions were found with conventional cross-sectional imaging modalities but later ruled out by fine-needle biopsy. PET therefore proved to be an excellent method for staging of metastatic melanoma. Due to its high sensitivity for malignant lesions and the possibility of covering the whole body in one examination, it can replace staging techniques employing multiple imaging modalities: chest X-ray, ultrasonography and computed tomography. Furthermore, it provides information on the malignant potential of the detected lesion.

Adult↗

Malignant melanoma: staging with whole-body positron emission tomography and 2-[F-18]-fluoro-2-deoxy-D-glucose.

PURPOSE: To evaluate whole-body positron emission tomography (PET) with 2-[fluorine-18]-fluoro-2-deoxy-D-glucose (FDG) in the detection of metastasis from melanoma. MATERIALS AND METHODS: Whole-body PET was performed in 33 patients with either known metastatic or newly diagnosed melanoma. Patients with suspected metastases also underwent computed tomography, magnetic resonance imaging, or both. Diagnoses were confirmed with histologic examination or with at least one imaging modality in addition to PET. Blinded interpretations of PET scans were performed. RESULTS: Forty of 53 lesions evaluated proved to be melanoma metastases. Whole-body PET correctly depicted 37 sites of metastases. Three cutaneous metastases (< 3 mm) were missed. PET correctly excluded malignancy in 10 cases where suspicious lesions were found with conventional cross-sectional imaging modalities but later ruled out with fine-needle biopsy. In six patients, PET depicted new metastases. The sensitivity for the detection of malignant lesions was 92%; the specificity for reading the PET images without clinical information was 77% and with clinical information was 100%. CONCLUSIONS: These results suggest that whole-body FDG PET is an effective imaging modality to screen for metastases from malignant melanoma.

Adult↗

[Dopamine-D2 receptor scintigraphy with 123I-iodobenzofuran in malignant melanoma].

In recent publications dopamine-D2 receptor scintigraphy with benzamides was postulated for specific imaging of melanoma. In a prospective study the value of 123I-iodobenzofuran (IBF), a highly specific and affine dopamine-D2 receptor ligand was evaluated for the detection of melanoma metastases. With IBF-D2 receptor scintigraphy only 2 of 17 melanoma metastases could be detected. The interpretation of the abdomen was impaired by the hepatobiliary and renal excretion of the radionuclide. The ratio striatum/frontal cortex of 2.75 +/- 0.49 3 h p.i. demonstrated a high D2-receptor binding of the ligand. IBF-D2-receptor scintigraphy is not suitable as a method of staging melanoma.

Adult↗

Iodine-123-IBF SPECT evaluation of extrapyramidal diseases.

UNLABELLED: Iodine-123-IBF is a dopaminergic antagonist suitable for SPECT imaging of D2 receptors. Initial animal studies demonstrated that its affinity for D2 receptors is approximately four times that of the commonly used SPECT D2 ligand [123I]IBZM. In this study we investigated whether this higher affinity would lead to an improved accuracy in differentiating between various extrapyramidal diseases. METHODS: SPECT imaging was performed in 17 patients with idiopathic Parkinson's syndrome (IPS); 4 patients with progressive supranuclear palsy (PSP), 2 patients with multiple system atrophy (MSA) and 7 age-matched control subjects. SPECT imaging was performed 5, 60, 120 and 180 min following intravenous bolus injection of 150-250 MBq of [123I]IBF. The ratio of ligand uptake in the basal ganglia and frontal cortex was determined as a measure of receptor status. RESULTS: In PSP and MSA patients, the basal ganglia-to-frontal cortex ratio reached a plateau at 2 hr; in the control subjects and the IPS patients the ratio was steadily increasing. At 3 hr the basal ganglia-to-frontal cortex ratio was 2.66 +/- 0.29 (control subjects), 3.01 +/- 0.41 (IPS), 2.09 +/- 0.22 (PSP) and 2.10 (MSA). In the IPS patients with predominantly one-sided symptoms, the striatum contralateral to symptoms showed a tendency towards relatively increased ligand uptake. Despite the higher affinity of IBF for the D2 receptor compared to IBZM, the separation of individual PSP and MSA patients from the control subjects was not as clear cut as reported for IBZM due to a relatively high variation in the control subjects. We hypothesize that the latter is due to imaging in nonequilibrium conditions. CONCLUSION: The data suggest that IBF-SPECT can help in discriminating extrapyramidal disease. The accuracy might be improved by an administration protocol that allows imaging in "true equilibrium" conditions, such as a bolus injection followed by a constant infusion.

Aged↗

[11C]tropanyl benzilate-binding to muscarinic cholinergic receptors: methodology and kinetic modeling alternatives.

Quantitative estimation of cerebral muscarinic receptors was investigated with the use of the antagonist [11C]tropanyl benzilate ([11C]TRB) and positron emission tomography (PET). Kinetic modeling alternatives were examined with the goal of identifying an analysis method providing stable receptor measures, yet avoiding biases from inappropriate reductions in model complexity. Dynamic PET scans were performed on six young normal volunteers. Several modeling approaches yielding relative receptor density measures were evaluated: (a) a single "late" scan using relative tracer concentration values; (b) a slope estimate from graphic analysis (Patlak plot); (c) a two-compartment, two-parameter model (transport and total ligand distribution volume); (d) a three-compartment, two-parameter model using the free+nonspecific distribution volume, DV', fixed to the cerebellar value; (e) an early scan for transport, a fixed value for DV', and a single late scan for the binding rate constant; and (f) a three-compartment, three-parameter model. Both computer simulations and PET scan results indicate all methods provide receptor density index measures with the same rank order as in vitro measures. Oversimplified approaches (methods 1 and 2) yield a more highly nonlinear relation between the estimated receptor density index and the known receptor density than do methods retaining greater model complexity (methods 3-6). However, noise propagation into the receptor measure is greater for the more complex methods. Reliable receptor density information can be obtained from kinetic [11C]TRB PET studies, with methods 3-5 providing the most appropriate levels of model complexity for estimates of relative muscarinic receptor density.

Adult↗

[Positron-emission tomography (PET) in epilepsy and extrapyramidal disorders].

Epilepsy means are frequent neurologic disorders caused by abnormal electric cerebral discharges of diverse origins. While most epileptic patients experience satisfactory suppression of seizures by drug regimens, a substantial number requires a neurosurgical intervention for improvement. This is particularly the case with epilepsy originating from the temporal lobe. 35 interventions for seizure disorders are actually carried out in Zurich each year. For the whole of Switzerland this could, depending on the criteria for an indication, mean from 150 to 1500 annual intervention. In any case an accurate localization of the epileptic focus is a prerequisite. Over the past years it has been shown that such foci and their surrounding exhibit often an abnormal pattern of glucose utilisation, which can be visualized by PET. In various centers for epileptic disorders worldwide, invasive preoperative neurophysiologic investigations are no longer used in view of these results. In extrapyramidal disorders (i.e. Parkinson's disease or Huntington's chorea), disturbances of basal ganglia occur. PET studies of these areas center around measurements of glucose metabolism, synthesis of dopamine and dopaminergic receptors. Such studies provide new insight into the pathophysiology of these diseases. They provide diagnostic clues in difficult cases and permit assessment of extent and progression of degeneration. Functional PET measurements also open new avenues for clinical pharmacology.

Basal Ganglia Diseases↗

Transmission of human immunodeficiency virus infection presumed to have occurred via female homosexual contact.

We describe a 24-year-old woman infected with the human immunodeficiency virus (HIV) whose sole risk behavior was prior sexual contact with an HIV-infected woman. Our patient's clinical course suggests that viral transmission occurred during the beginning of their sexual relationship. Our case, combined with those previously reported, provides evidence that female homosexual activity can be a risk behavior for acquisition of HIV infection. Seroprevalence studies, however, have not provided evidence for transmission of HIV by this behavior. These studies, combined with the sparse number of individual case reports, suggest that female homosexual activity is an inefficient mechanism of HIV transmission.

Adult↗

Transmission pattern and intraspecific competition as determinants of population structure in pinworms (Oxyurida: Nematoda).

The transmission pattern of Zonothrix columbianus (Nematoda: Oxyurida) in its host Tropisternus columbianus (Coleoptera: Hydrophilidae), an aquatic beetle, was studied to determine whether parasites were dispersed with their hosts and to examine the possible role of intraspecific competition in limiting population size. Beetles were sampled at regular intervals from fall 1986 through fall 1989 and examined for worms. Worms, absent in larval stages of the host, were uncommon in newly metamorphosed beetles and therefore probably do not infect adult stages until after they have dispersed; worms are not dispersed with the host. Prevalence reached its lowest points in spring and fall when newly metamorphosed beetles were most common, but it was near 100% for most of the year. Worms were uniformly distributed in the host population. Many hosts had exactly 1 male and 1 female worm; the high prevalence suggests that this infrahost population results from interference competition between males on the one hand and females on the other. Only 3 of 285 beetles contained more than 1 male. Females shared the host with members of the same sex more commonly than males, but females from hosts harboring more than 1 female had significantly fewer eggs than lone females in hosts. Numbers of adult stages of beetles were estimated during spring, summer, and fall of 1989 and were lower in early spring and late fall. Because worms do not disperse with hosts, the panmictic unit could be estimated from the number of infected beetles; this probably was about 50 individuals during the winter bottleneck.

Analysis of Variance↗

Impairment of the myocardial ultrastructure and changes of the cytoskeleton in dilated cardiomyopathy.

This study was designed to determine the morphological correlate of chronic heart failure. Myocardial tissue from eight patients undergoing transplantation surgery because of end-stage dilated cardiomyopathy was investigated by electron microscopy and immunocytochemistry using monoclonal antibodies against elements of the cytoskeleton: desmin, tubulin, vinculin, and vimentin. The tissue showed hypertrophy, atrophy of myocytes, and an increased amount of fibrosis. Ultrastructural changes consisted of enlargement and varying shape of nuclei, numerous very small mitochondria, proliferation of T tubules, and accumulation of lipid droplets and glycogen. The most obvious ultrastructural alteration was the decrease of myofilaments, ranging from rarefication to complete absence of sarcomeres in cells filled with unspecified cytoplasm. Immunocytochemistry showed that desmin was localized at the Z lines. In diseased myocardium, the amount of desmin was increased, but it was disorderly arranged. Tubulin formed a fine network throughout the myocytes and was significantly increased in cardiomyopathic hearts. Vinculin, a protein closely associated with the cytoskeleton, occurred not only at the sarcolemma and the intercalated disc but also within the myocardial cells. Ultrastructural changes and alterations of the cytoskeleton were severe in about one third of all cells. About one third of all cells showed moderately severe changes, and the remaining cells were normal. Vimentin was present in the interstitial cells and was increased in relation to the increase of fibrosis. We conclude that the increase of fibrosis, the degeneration of hypertrophied myocardial cells, and the alterations of the cytoskeleton are the morphological correlates of reduced myocardial function in chronic heart failure.

Antibodies, Monoclonal↗

Effect of carbon-11-acetate recirculation on estimates of myocardial oxygen consumption by PET.

Mono- and biexponential fitting of myocardial 11C-acetate kinetics does not account for the effect of recirculating 11C activity following intravenous injection of the tracer. A tracer kinetic model comprising two and three compartments was developed to describe intravascular and myocardial 11C-acetate kinetics defined by PET. This model approach including a correction for 11C-metabolites in blood was validated by correlating the model parameter estimates with directly measured oxygen consumption (MVO2) in 11 closed-chest dog experiments over a wide range of cardiac work. The model parameter k2 closely correlated with oxygen consumption (r = 0.94). This approach was subsequently applied to human studies and k2-related to rate-pressure product (PRP). In comparison to conventional monoexponential fitting of 11C-acetate tissue kinetics, the model approach improved the correlation coefficients of scintigraphic MVO2 estimates and PRP values from 0.61 to 0.91. Thus, analysis of myocardial 11C-acetate and clearance kinetics with a tracer kinetic model corrects for recirculating 11C-activity and may provide more consistent estimates of myocardial oxygen consumption.

Acetates↗