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61.
Sm5Fe17 bulk materials, one of the newer permanent magnetic materials, were successfully produced by the spark plasma sintering method. The resultant bulk materials had high densities of 85–98%. When obtained by sintering at relatively lower temperatures, the Sm5Fe17 bulk materials consisted of the Sm5Fe17 and SmFe3 phases, whereas they contained some -Fe phase together with the Sm5Fe17 and SmFe3 phases when obtained by sintering at relatively high temperatures. High coercivity values, exceeding 2 MAm−1, were found in the Sm5Fe17 bulk materials consisting of the Sm5Fe17 and SmFe3 phases.  相似文献   
62.
We present a new enzymatic process for synthesis of l-theanine using glutaminase combined with immobilization technique on a mesoporous silica (MPS). The MPS was firstly attempted to modify with zirconia in order to enhance the durability against the reaction under high pH conditions. The glutaminase on the MPS successfully catalyzed the reaction for the synthesis of l-theanine. The glutaminase/MPS conjugate was subsequently recovered and employed for the reaction again. The conjugate showed the corresponding activity to the first synthesis. This indicates that the conjugate functions as a catalyst for synthesis of l-theanine, having the operational stability sufficient for reuse.  相似文献   
63.
We conducted fundamental and clinical evaluations of a cephem antibiotic, cefozopran (SCE-2787, CZOP), in infants with low birth weights and mature infants. (1) Blood concentrations CZOP was intravenously given in bolus dose of 20 mg/kg to the newborn. The blood antibiotic concentrations were 69.7 micrograms/ml at 30 minutes after administration and the elimination half life was 2.99 hours in mature infants aged 1 to 3 days. They were 38.7 micrograms/ml and 2.85 hours in those aged 4 to 7 days, and 40.8 micrograms/ml and 3.81 hours in those aged 8 days or elder, respectively. In infants with lower birth weights aged 4 to 7 days the blood antibiotic concentrations were 48.6 micrograms/ml at 30 minutes after i.v. administration and the elimination half life was 3.77 hours. The blood antibiotic concentrations at 30 minutes after intravenous doses of 10, 20 and 50 mg/kg in mature infants aged 8 days or elder were 21.1, 40.8 and 153.6 micrograms/ml (value at 60 minutes) and the elimination half lives were 2.24, 3.81 and 3.07 hours, respectively. Administration of CZOP at doses of 20 and 40 mg/kg by intravenous drip infusion over 30 minutes gave the blood drug concentrations of 48.0 and 103.2 micrograms/ml at the end of the infusion and the half lives were 2.60 and 3.33 hours, respectively. (2) Urinary excretion The urinary excretion rates after i.v. bolus doses of 10, 20 and 40 mg/kg were 28.4 to 58.6% of dose. The urinary excretion rate after i.v. drip infusion of 40 mg/kg over 30 minutes was 49.0% of dose. (3) Transfer into cereblospinal fluid The transfer of the antibiotic into cereblospinal fluid in patients with serous meningitis was 4.1 to 15.5 micrograms/ml at 1 hours after administration. (4) Clinical results The clinical efficacy was judged "good" or "excellent" in 2 of the 3 patients with septicemia and in all of the 10 patients with suspected septicemia. It was judged "excellent" in all of the 9 patients with pneumonia, 3 with urinary tract infections and 3 with intrauterine infections. Prophylactic use of the antibiotic was effective in all of the 12 patients. Of the patients in whom bacteriological evaluation was successful, 7 of the 10 causative organisms were confirmed to be eradicated. No adverse drug reactions of signs and symptoms were recognized. Fourteen abnormal alterations of the laboratory test values such as elevation of gamma-GTP and that of GPT were recognized in 8 patients (16.7%). None of them were particularly serious. These results indicate that CZOP is a drug useful for treatment and prevention of infections in infants with lower birth weights as well as in mature infants.  相似文献   
64.
Active oxygen species or free radicals are considered to cause extensive oxidative damage to biological macromolecules, which brings about a variety of diseases as well as aging. The ideal scavenger for active oxygen should be 'active hydrogen'. 'Active hydrogen' can be produced in reduced water near the cathode during electrolysis of water. Reduced water exhibits high pH, low dissolved oxygen (DO), extremely high dissolved molecular hydrogen (DH), and extremely negative redox potential (RP) values. Strongly electrolyzed-reduced water, as well as ascorbic acid, (+)-catechin and tannic acid, completely scavenged O.-2 produced by the hypoxanthine-xanthine oxidase (HX-XOD) system in sodium phosphate buffer (pH 7.0). The superoxide dismutase (SOD)-like activity of reduced water is stable at 4 degrees C for over a month and was not lost even after neutralization, repeated freezing and melting, deflation with sonication, vigorous mixing, boiling, repeated filtration, or closed autoclaving, but was lost by opened autoclaving or by closed autoclaving in the presence of tungsten trioxide which efficiently adsorbs active atomic hydrogen. Water bubbled with hydrogen gas exhibited low DO, extremely high DH and extremely low RP values, as does reduced water, but it has no SOD-like activity. These results suggest that the SOD-like activity of reduced water is not due to the dissolved molecular hydrogen but due to the dissolved atomic hydrogen (active hydrogen). Although SOD accumulated H2O2 when added to the HX-XOD system, reduced water decreased the amount of H2O2 produced by XOD. Reduced water, as well as catalase and ascorbic acid, could directly scavenge H2O2. Reduce water suppresses single-strand breakage of DNA b active oxygen species produced by the Cu(II)-catalyzed oxidation of ascorbic acid in a dose-dependent manner, suggesting that reduced water can scavenge not only O2.- and H2O2, but also 1O2 and .OH.  相似文献   
65.
A microporous membrane is prepared by treating the cation exchange membrane (Fe+++ form) with an H2O2 aqueous solution. The cation exchange membrane is prepared by the paste method: the base membrane is prepared beforehand and then sulfonated. The preparative conditions of the base membrane were studied in connection with the characteristics of the resultant microporous membrane. Furthermore, the availability of the microporous membrane for ultrafiltration was studied by using an aqueous solution of a bovine hemoglobin.  相似文献   
66.
The objective of the study is to establish a method for measuring the thickness of thin condensates of liquid mixtures using a laser light absorption method during the process of water–ethanol Marangoni dropwise condensation. First, the extinction property of the test material, with unknown properties related to infrared laser light having a wavelength of 3.39µm, was measured. Next, measurements were made of the variations in condensate film thickness after the sweeping of the heat transfer surface by departing drops in the Marangoni dropwise condensation cycle. The precision of this method was investigated on the basis of the extinction coefficient of the test material and the thickness of the liquid film. Results showed that this method provides good precision and is applicable to the measurement of other similar materials. © 2003 Wiley Periodicals, Inc. Heat Trans Asian Res, 32(8): 700–711, 2003; Published online in Wiley InterScience ( www.interscience.wiley.com ). DOI 10.1002/htj.10124  相似文献   
67.
In this study, we evaluated the effects of topographic correction and gap filling of Landsat Enhanced Thematic Mapper Plus (ETM+) images on the accuracy of forest change detection through a trajectory-based approach. Four types of Landsat time series stacks (LTSS) were generated. These stacks resulted from combinations of topographically corrected and uncorrected imagery combined with gap-filled and unfilled stacks. These combinations of stacks were then used as input into a trajectory-based change detection. The results of change detection from trajectory-based analysis using these LTSS were compared in order to assess the effects of both topographic correction and gap-filling procedures on the ability to detect forest disturbances. The results showed that overall accuracies of change detection were improved after gap filling (10.5% and 7.5%), but were only slightly improved after topographic correction (3.6% and 0.6%). Although the gap-filling process introduced some uncertainty that might have caused false change detection, the number of pixels whose detection of disturbance was enhanced after gap filling exceeded those detecting false change. The results also showed that the topographic correction did not contribute much to improve the change detection in this study area. However, topographic correction has a potential to increase the accuracy of change detection in areas of more rugged terrain and steep slopes. This is because a direct relationship between the slope of the topography with topographic correction and an enhanced detection of disturbance in pixels from year to year was observed in this study. For robust change detection, we recommend that a gap-filling process should be included in the trajectory-based analysis procedures such as the one used in this study where a single image per year is used to characterize change. We also recommend that in areas of rugged terrain, a topographic correction in the image pre-processing should be implemented.  相似文献   
68.
69.
The development of efficient gene delivery systems targeting the lung endothelium remains a serious challenge. This study reports on the design and optimization of a multifunctional envelope‐type nanodevice (MEND) for an efficient siRNA delivery to the lung endothelium based on GALA‐peptide targeting ability. The incorporation of a pH‐sensitive lipid (YSK05) results in a dramatic improvement in silencing efficiency by enhancing endosomal escape, but this also causes a reduction in the lung selectivity. Contrary to the assumption that active targeting is largely dependent on the presence of a targeting ligand, the findings of the present study indicate that nanocarrier composition is critical for achieving the organ selectivity. Interestingly, helper lipids substantially mask the liver delivery resulting in optimum lung targeting. The optimized YSK05‐MEND is 40‐fold more efficient than a previously developed MEND, with a robust lung endothelium gene knockdown at small doses. The YSK05‐MEND strongly inhibits a metastatic lung cancer model and exerts superior control over lung metastasis compared to chemotherapy or the previously developed MEND. The YSK05‐MEND is well‐tolerated in mice after acute or chronic administration. As far as it is known, YSK05‐MEND achieves the most efficient lung endothelium gene silencing reported thus far with a median effective dose of 0.01 mg siRNA kg?1 while minimally affecting the endothelium of other organs.  相似文献   
70.
This paper presents the development of an alternating method for the interaction analysis of arbitrary distributed numerous elliptical microcracks. The complete analytical solutions (VNA solutions) for a single elliptical crack in an infinite solid, subject to arbitrary crack-face tractions, are implemented in the present alternating method, together with the coordinate transformations for stress tensors. First, the present method is verified by solving the problems of two interacting cracks for which accurate numerical solutions have been obtained previously. Next, the present method demonstrates obtaining efficient and accurate solutions for the problems of many interacting elliptical cracks, which cannot be solved in a practical sense by the ordinary numerical methods such as the finite element method. Furthermore, damaged solids containing periodically distributed elliptical microcracks are analyzed by the present alternating method. The effective elastic moduli are evaluated for varying microcrack density. Detailed structures of the interactions in the damaged solids are visualized and clarified. This revised version was published online in July 2006 with corrections to the Cover Date.  相似文献   
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