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1.
In the past 15 years five neonates and children have been treated for high vaginal atresia at the Surgical Unit of Department of Pediatrics, University Medical School, Pécs, Hungary. In three of the six patients distal atresia of the vagina was found (Type III). Two of the three were neonates and had a large hydrometrocolpos and the third, a 13-year-old girl, hematometrocolpos. In the fourth patient the vaginal atresia was associated with cloacal and anorectal malformation (Type V). In the fifth there was a duplication of uterus and vagina; however, only one of the two vaginas was atretic. In three patients a pull-through of the vagina was carried out, in one of them according to Pena, in another a transvesical approach, as suggested by Monfort, was used. Following repeated surgeries in the patient with cloacal malformation the vagina was replaced with large intestine. In the case of duplication of vagina and uterus one half of the duplication was removed.  相似文献   
2.
We investigated a family with optic atrophy which occurred in childhood or early adulthood plus late-onset cerebellar ataxia. The magnetic resonance imaging in the proband revealed cerebellar atrophy. The proband and her brother were homoplasmic for the most common mitochondrial DNA (mtDNA) 11778 mutation associated with Leber's hereditary optic neuropathy (LHON). This study showed further evidence that central nervous system lesions can occur in cases of LHON mtDNA mutation.  相似文献   
3.
Pint  B. A.  Hobbs  L. W. 《Oxidation of Metals》2004,61(3-4):273-292
Y2O3-dispersed NiAl was produced by a powder-metallurgy process. By adding Y as an oxide dispersion (OD), problems with NiYx formation and internal oxidation were avoided. Short-term isothermal and cyclic-oxidation performance at 1200°–1500° C was compared to cast NiAl alloys with and without Zr. Results indicate that the Y2O3 addition was beneficial to scale adhesion and significantly modified the α-Al2O3 scale microstructure, similar to a Zr alloy addition. However, at 1400 and 1500° C, neither the Y2O3 or Zr additions changed the scale-growth rate, eliminated the formation of voids at the metal-scale interface or prevented scale spallation. These similarities in performance suggest that similar mechanisms occur when the reactive element is added as either an OD or an alloy addition.  相似文献   
4.
The high-temperature oxidation behavior of an oxide dispersion-strengthened (ODS) Fe3Al alloy has been studied during isothermal and cyclic exposures in oxygen and air over the temperature range 1000 to 1300°C. Compared to commercially available ODS–FeCrAl alloys, it exhibited very similar short-term rates of oxidation at 1000 and 1100°C, but at higher temperatures the oxidation rate increased because of increased scale spallation. Over the entire temperature range, the oxide scale formed was -Al2O3, with the morphological features typical of reactive-element doping and was similar to those formed on the ODS–FeCrAl alloys. Although initially this scale appeared to be extremely adherent to the Fe3Al substrate, an undulating metal–oxide interface formed with increasing time and temperature, which led to cracking of the scale in the vicinity of surface undulations accompanied by a loss of small fragments of the full-scale thickness. In some instances, the surface undulations appeared to have resulted from gross outward local extrusion of the alloy substrate. Similar features developd on the FeCrAl alloys, but they were typically much smaller after a given oxidation exposure. The ODS–Fe3Al alloy has a significantly larger coefficient of thermal expansion (CTE) than typical FeCrAl alloys (approximately 1.5 times at 900°C) and this appears to be the major reason for the greater tendency for scale spallation. The stress generated by the CTE mismatch was apparently sufficient to lead to buckling and limited loss of scale at temperatures up to 1100°C, with an increasing amount of substrate deformation at 1200°C and above. This deformation led to increased scale spallation by producing an out-of-plane stress distribution, resulting in cracking or shearing of the oxide.  相似文献   
5.
Oxide scale exfoliation is a major concern in fossil fuel power generation because it can cause tube blockages and erode valves and steam turbine components downstream. There is still considerable scientific and commercial interest to improve the mechanistic understanding of oxide failures by developing models to predict exfoliation and the extent of tube blockage as a function of operating conditions and component geometries. Tensile testing inside a scanning electron microscope was conducted on ferritic–martensitic and austenitic steel specimens with the steam side (Fe,Cr)-rich oxides grown after exposures for up to 1000 h in steam with ~100 ppb O2 at 276 bar and 550°C. Multiple oxide layer cracks and delamination events were observed and analyzed in detail during the tests. Results from the testing agreed well with earlier observations that had identified the failure location at the outer–inner oxide layer for all tested materials. Calculated adhesion energies identified the outer–inner oxide interface of alloy 347HFG as the weakest interface.  相似文献   
6.
A 4-year-old boy presented with sudden onset of fever, pyuria, and bacteriuria. Ultrasound revealed left hydronephrosis and hydroureter. A plain abdominal radiography and excretory urogram showed a giant ureteral stone measuring 9 cm causing ureteral obstruction. Underlying anatomic or metabolic abnormalities were not detected. Extraction of the stone resulted in complete disappearance of the hydronephrosis and hydroureter.  相似文献   
7.
The objective of this work is to develop and validate the basis of a novel laser modeling and design methodology that incorporates a global optimization approach. Classical modeling techniques typically involve design evaluations that are conducted at the laser's threshold injection current. This is the point where the laser is just turning on, and the (standard practice) numerical challenge is minimal. The fundamental difference offered by the proposed new methodology is the possibility of developing laser designs directly at the injection current (power level) of interest.The effectiveness of the new methodology is verified by considering the computationally difficult problem of maximizing a laser's internal (cavity) field flatness over a range of above-threshold injection currents, while also considering the boundary condition error of the laser's internal field solution. Global optimization is then used to find an optimally flat field solution in terms of the laser's structural design parameters. The favorable comparison between our results and the results obtained by the extrapolation of threshold designs to the same injection current indicate the self-consistency and fundamental capabilities of the new methodology.  相似文献   
8.
9.
In separate effect tests at 1000–1200 °C Ru oxidation rate and content of Ru in escaping air flow have been studied with special emphasis on effects of other fission product elements on the Ru oxidation and transport. The results showed that in the decreasing temperature section (1100–600 °C) most of the RuO3 and RuO4 (≈95%) decomposed and formed RuO2 crystals; while the partial pressure of RuO4 in the escaping air was in the range of 10?6 bar. The re-evaporation of deposited RuO2 resulted in about 10?6 bar partial pressure in the outlet gas as well. Measurements demonstrated the importance of surface quality in the decreasing temperature area on the heterogeneous phase decomposition of ruthenium oxides to RuO2. On the other hand water or molybdenum oxide vapour in air appears to decrease the surface catalyzed decomposition of RuOx to RuO2 and increases RuO4 concentration in the escaping air. High temperature reaction with caesium changed the form of the released ruthenium and caused a time delay in appearance of maximum concentration of ruthenium oxides in the ambient temperature escaping gas, while reaction with barium and rare earth oxides extended Ru escape from the high temperature area.  相似文献   
10.
We demonstrate the fabrication of solid-state dielectric energy storage materials from self-assembled, aligned single-walled carbon nanotube arrays (VA-SWNTs). The arrays are transferred as intact structures to a conductive substrate and the nanotubes are conformally coated with a thin metal-oxide dielectric and a conductive counter-electrode layer using atomic layer deposition. Experimental results yield values in agreement with those obtained through capacitive modeling using Al2O3 dielectric coatings (C > 20 mF/cm3), and the solid-state dielectric architecture enables the operation of these devices at substantially higher frequencies than conventional electrolyte-based capacitor designs. Furthermore, modeling of supercapacitor architectures utilizing other dielectric layers suggests the ability to achieve energy densities above 10 W h/kg while still exhibiting power densities comparable to conventional solid-state capacitor devices. This device design efficiently converts the high surface area available in the conductive VA-SWNT electrode to space for energy storage while boasting a robust solid-state material framework that is versatile for use in a range of conditions not practical with current energy storage technology.  相似文献   
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