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Prediction of radionuclide release is a central issue in the performance assessment of nuclear waste repositories. This requires modeling of the radionuclide migration processes through the repository barriers, accounting for the related uncertainties. The present paper illustrates a Monte Carlo simulation-based compartment model in which detailed, local-scale modeling feeds a global-scale analysis of the repository, at reasonable computational expenses. An application to a realistic case study is presented to verify the feasibility of the approach.  相似文献   
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The galanin-receptor ligand M40 [galanin-(1-12)-Pro3-(Ala-Leu)2-Ala amide] binds with high affinity to [mono[125I]iodo-Tyr26]galanin-binding sites in hippocampal, hypothalamic, and spinal cord membranes and in membranes from Rin m5F rat insulinoma cells (IC50 = 3-15 nM). Receptor autoradiographic studies show that M40 (1 microM) displaces [mono[125I]iodo-Tyr26]galanin from binding sites in the hippocampus, hypothalamus, and spinal cord. In the brain, M40 acts as a potent galanin-receptor antagonist: M40, in doses comparable to that of galanin, antagonizes the stimulatory effects of galanin on feeding, and it blocks the galaninergic inhibition of the scopolamine-induced acetylcholine release in the ventral hippocampus in vivo. In contrast, M40 completely fails to antagonize both the galanin-mediated inhibition of the glucose-induced insulin release in isolated mouse pancreatic islets and the inhibitory effects of galanin on the forskolin-stimulated accumulation of 3',5'-cAMP in Rin m5F cells; instead M40 is a weak agonist at the galanin receptors in these two systems. M40 acts as a weak antagonist of galanin in the spinal flexor reflex model. These results suggest that at least two subtypes of the galanin receptor may exist. Hypothalamic and hippocampal galanin receptors represent a putative central galanin-receptor subtype (GL-1-receptor) that is blocked by M40. The pancreatic galanin receptor may represent another subtype (GL-2-receptor) that recognizes M40, but as a weak agonist. The galanin receptors in the spinal cord occupy an intermediate position between these two putative subtypes.  相似文献   
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PURPOSE: Our purpose was to present imaging findings of six cases proven or supposed to be von Meyenburg complexes (VMCs) with a basis of reviewing the pathologic literature and to describe imaging points for the diagnosis of typical VMC along with its differential diagnosis. METHOD: Six cases were diagnosed as VMC of the liver with imaging modalities (one had histopathologic proof). Both ultrasound (US) and CT were available for all cases, and MRI was used for three cases. Follow-up with US, CT and/or MRI was performed in five cases. RESULTS: US detected varying abnormalities of the livers in four cases. CT and MRI revealed multiple or numerous intrahepatic tiny (usually < 5 mm) cystoid lesions in all of the cases. The lesions were scattered throughout the livers, and some of them were located more frequently adjacent to the medium-sized portal veins than to the hepatic veins of similar size on CT. Moreover, some lesions were apparently located in the subcapsular areas (up to the hepatic capsules). They were usually irregular in shape and showed no enhancement but increased in number by approximately 80-150% after administration of intravenous contrast medium. The T2-weighted MR images and MR cholangiopancreatography showed the lesions to be much more apparent and to be more numerous than T1-weighted images did. Follow-up of five cases with imaging modalities did not show remarkable change of the lesions. CONCLUSION: Despite our limited experience, VMC lesions seem to show some CT and MR features different from those of other multiple small hepatic lesions. They presented as multiple or numerous intrahepatic tiny cystoid lesions usually with irregular contour, scattered throughout the liver up to the subcapsular areas, and were detected in far greater number by enhanced CT or T2-weighted MR images than by unenhanced CT or T1-weighted images. They showed no remarkable change on long term follow-up imaging. We propose that a diagnosis of typical VMC could be made after analyzing CT or MR images carefully with good understanding of its pathologic basis, but imaging follow-up is necessary in oncology patients.  相似文献   
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Lipid hydroperoxide species can be analyzed with high sensitivity and specificity, using reversed-phase high-performance liquid chromatography with reductive mode electrochemical detection on a mercury drop cathode [HPLC-ED(Hg)]. The purpose of this study was to examine different variables in the operation of HPLC-ED(Hg) and to select optimal conditions for the analysis of several biologically relevant peroxides, including species derived from cholesterol, cholesteryl linoleate, oleate, linoleate, and two synthetic phosphatidylcholines. Parameters such as operating potential and mobile-phase solvent proportions, electrolyte composition, and ionic strength were evaluated for each peroxide class. Under optimal conditions, we have achieved baseline separation of four cholesterol hydroperoxide species, not only from one another, but also from phospholipid hydroperoxides; detection limits were < 0.3 pmol and < 30 pmol for the cholesterol and phospholipid hydroperoxides, respectively.  相似文献   
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Merocyanine 540 (MC540) is a lipophilic photosensitizing dye of biomedical interest in connection with its ability to preferentially inactivate leukemia cells in bone marrow grafts and enveloped viruses in blood products. Evidence that iron plays a role in dye-mediated photokilling is presented in this report. When sensitized with MC540 and irradiated with visible light, cultured murine leukemia L1210 cells underwent lipid peroxidation (accumulation of iodometrically detectable lipid hydroperoxides) and photokilling (loss of clonogenic capacity). Selenium-deficient [Se(-)] cells, which expressed minimal selenoperoxidase activity, were found to be more sensitive to photoperoxidation and photokilling than selenium-replete [Se(+)] controls. Since redox active iron in the presence of electron donors has been shown to exacerbate photoperoxidative damage in isolated membrane systems, it was of interest to examine the possible role of iron in MC540/light-induced cytotoxicity. Involvement of iron was established by showing (i) that desferrioxamine (a high-affinity chelator and redox inhibitor of Fe3+) acted protectively on Se(-) and Se(+) cells and (ii) that treating these cells with sublethal concentrations of the lipophilic chelate ferric 8-hydroxyquinoline [Fe(HQ)2] made them much more sensitive to photokiling and thiobarbituric acid-detectable lipid peroxidation. Lehal damage induced by t-butyl hydroperoxide was also amplified by Fe(HQ)2. Fe(HQ)2-enhanced photoperoxidation and photokilling were suppressed by alpha-tocopherol, suggesting that iron-catalyzed free radical reactions were involved. A mechanism based on iron-mediated one-electron reduction of nascent photoperoxides is proposed. We believe that under the conditions used, toxic one-electron chemistry overwhelms two-electron detoxification catalyzed by GSH-dependent selenoperoxidase(s).  相似文献   
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The operation and advantages of the SCADA (supervisory control and data acquisition) capacitor control called CAPCON (capacitor control) are presented. CAPCON is used to control VArs systemwide by switching substation capacitor banks based on real-time VAr and voltage data instead of the traditional time clock method. CAPCON has many benefits, which should increase as it is expanded to more capacitor banks on the system. There are cost savings in line losses, generator fuel, and better planning and utilization of substation equipment. Control is based upon real-time conditions, providing much more efficient and precise operation of capacitors and a resulting improvement in reactive power flow. By improving the control of capacitors, CAPCON has given the company the ability to serve its customers better  相似文献   
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