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Biomedical subjects

J Rudolf

Publications and source records attributed to J Rudolf.

61 records · Page 4Linked to original sources

Estimation of local cerebral glucose utilization by positron emission tomography: comparison of [18F]2-fluoro-2-deoxy-D-glucose and [18F]2-fluoro-2-deoxy-D-mannose in patients with focal brain lesions.

A comparative PET study of [18F]2-fluoro-2-deoxy-D-glucose (FDG) and [18F]2-fluoro-2-deoxy-D-mannose (FDM) uptake was performed in 13 patients with focal brain lesions. Differences between FDG and FDM with respect to model rate constants, lumped constant, and estimated metabolic rate for glucose were determined on a regional basis. Across whole brain, the transport rate constant K1* was almost unchanged, whereas k2*, describing the transport back from tissue to plasma, was 6% higher, and the phosphorylation rate constant k3* was 9% lower for FDM compared to FDG. This implies a 20% lower lumped constant for FDM. No significant regional variability of this differential tracer behavior was observed in normal or in lesioned brain tissue. Thus, results from previous FDG studies, where the radiotracer was not 100% pure FDG but contained varying amounts of FDM, can easily be corrected by adjustment of the lumped constant employed in metabolic quantitation.

Adult↗

Increased amino acid transport into brain tumors measured by PET of L-(2-18F)fluorotyrosine.

The uptake of L-(2-18F)fluorotyrosine (F-Tyr), a newly synthetized amino acid tracer, was studied in 15 patients with various brain tumors by dynamic PET. The higher F-Tyr accumulation in tumors (mean 27% above contralateral tissue) was associated with two-fold transport rates into tumors, while the rate constants describing irreversible incorporation were decreased. The increased F-Tyr transport was not correlated to 68Ga-EDTA accumulation and cannot be explained by disruption of the blood-brain barrier. Kinetic analysis of 2-(18F)-fluoro-deoxy-glucose accumulation in the same patients demonstrated that increased metabolic rates in tumors are mainly caused by altered phosphorylation rates while transport of glucose is less affected. Since F-Tyr transport rates clearly separated tumors from normal tissue and since F-Tyr accumulation was related to tumor grade, PET studies of F-Tyr uptake are of clinical value for diagnosis and classification of brain tumors.

Adult↗

Positron emission tomography findings relevant to neurosurgery for epilepsy.

Using the 2-[F-18]fluorodeoxyglucose method, 213 positron emission tomographic (PET) studies of local brain glucose metabolism (CMRglu) were performed in 124 patients with various forms of epilepsy. Interictal PET scans of primary epileptics typically showed some global metabolic depression and decreased functional activity of insular, basal and anterior temporal cortex. Epilepsia partialis continua Kozevnikov was characterized by hypo- or hyper-metabolism of perirolandic cortex. Tuberous sclerosis was distinguished by neocortical foci of significantly decreased glucose consumption. Even in the interictal resting state, with regard to sensitivity (greater than 90%) and accuracy of focus localization. PET was superior to other diagnostic methods in typical temporal lobe epilepsy. Averaging 23% below normal CMRglu, the majority of hypometabolic foci were found in mesial temporal structures. Improved distinction between the epileptogenic area and the surrounding tissue showing comparatively normal functional responsiveness, was achieved by psychophysical activation using emotional speech or continuous visual recognition during PET scanning. In patients who had undergone total cerebral hemispherectomy because of uncontrolled epilepsy, remarkable recruitment of association areas was observed on both motor and speech activation.

Blood Glucose↗

PET studies of dopamine receptor distribution using [18F]fluoroethylspiperone: findings in disorders related to the dopaminergic system.

PET studies of dopamine D2-receptor binding were performed in thirty patients with various disorders related to the dopaminergic system and in six healthy controls. Uptake of [18F]fluoroethylspiperone in caudate over three hours was analyzed in terms of several indices of receptor binding:caudate-to-cerebellum activity ratio, concentration of ligand as percentage of injected dose, caudate-to-blood radioactivity ratio, slope of tracer uptake curves, binding potential, kinetic constants of a three compartment model. In 14 patients brain glucose metabolism was also measured. Data on medicated patients demonstrate that the average values of most of the above parameters indicate the decreased number of available D2-receptors whereby, besides an age dependent decline, the caudate-to-cerebellum ratio affords the relatively best distinction among diagnostic groups. In individual cases, large variability among subjects permits only the classification of severe pathologies. Morphological damage and neuronal loss in the striatum may also cause abnormal low values both for the indices of receptor binding and for glucose consumption, thus providing a possible pathogenetic link between receptor dysfunction and impaired energy metabolism.

Adolescent↗

Positron emission tomography of fluorine-18-deoxyglucose and image-guided phosphorus-31 magnetic resonance spectroscopy in brain tumors.

Positron emission tomography (PET) of 2(18F)-fluoro-2-deoxy-D-glucose (FDG) and volume-selective phosphorus-31 magnetic resonance spectroscopy (31P-MRS) are methods used to assess the energy metabolism of the brain. Both methods were studied with respect to their contribution to differential diagnosis in 23 patients with various brain tumors. The various neuroectodermal tumors differed with respect to their metabolic rate for glucose (MRGL). Benign and malignant tumors could be better differentiated by using tumor metabolism relative to contralateral brain and by evaluating heterogeneities in tumors. Low-grade gliomas usually showed normal 31P-MR spectra; high-grade gliomas were characterized by reduced and often split phosphodiester peaks and alkaline pH. Meningiomas, which had variable MRGL, typically showed extremely low phosphocreatine levels, reduced phosphodiesters, and alkaline pH. We concluded that FDG-PET and 31P-MRS examine different aspects of tumor metabolism. Therefore, both can contribute independently and complementarily to the differential diagnosis of brain tumors.

Astrocytoma↗

[Cellelectrophoretic studies of the effect of methylglyoxal-bis-guanylhydrazone on blood cells of tumour patients (author's transl)].

The effect of methylglyoxal-bis-guanylhydrazone has been studied on the electrophoretic mobility of blood cells of 10 unselected and untreated patients with preferably solid malignant diseases. Prior to the incubation with CH3-G the electrophoretic mobility of lymphocytes and erythrocytes showed increased and of platelets showed decreased rates which extend over a larger range than usual and for which reasons cannot be given till now. The incubation with CH3-G caused a concentration-dependent reduction of the electrophoretic mobility of all three tested types of blood cells. This can be estimated as an impairment of a function of surface membrane and confirms recently obtained results of activity of CH3-G on platelets' surface membrane.

Blood Cells↗

Incidence of space-occupying brain edema following systemic thrombolysis of acute supratentorial ischemia.

Whether 'malignant' brain edema following ischemic stroke is due to or aggravated by reperfusion and therefore more frequent after thrombolytic therapy of stroke is still under debate. From 3/96 to 1/97, we treated 51 patients with acute supratentorial stroke within 3 h after symptom onset with rt-PA following a protocol similar to the NINDS study. The results of thrombolytic therapy were evaluated by repeated clinical examination and computed tomography (CT) during the first week after ictus. The incidence of space-occupying brain edema following intravenous thrombolytic therapy of acute ischemic stroke was lower than the edema frequency after conventional treatment, but mortality from 'malignant' edema was higher in the patients with thrombolysis. Thus, space-occupying edema after acute ischemic stroke may be aggravated by thrombolytic treatment. Forced reperfusion of already irreversibly damaged tissue increases edema formation and enlarges developing infarcts with a deleterious increase of intracranial pressure.

Adult↗