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941.
OBJECTIVE/HYPOTHESIS: To describe the ultrastructural changes occurring within pulsed-dye laser (PDL)-treated glottal tissues. STUDY DESIGN: Prospective. METHODS: Nine patients presenting with glottal dysplasia requiring biopsy to rule out microinvasive carcinoma were enrolled in this prospective study. At least two samples were obtained in each case: one from a PDL-treated area and another from a non-PDL-treated area (obtained from a nonphonatory region as an internal control). In some cases, a third sample was obtained from the junction between PDL- and non-PDL-treated areas. All samples were examined with light microscopy (H and E stain) and transmission electron microscopy. Observations were made of morphological changes within the epithelium, epithelial/ superficial lamina propria (SLP) junction, and the lamina propria of tissues treated with the PDL. Eight of nine patients were followed for a period of 9-25 months (mean, 18 months) with two recurrences that were retreated with awake-PDL and followed for an additional 8.3 and 9.5 months without recurrence. Vocal fold appearance returned to normal within 3-4 weeks posttreatment. RESULTS: Intraepithelial desmosome junctions were preferentially destroyed, and regional blood vessels were coagulated. The PDL consistently caused a separation of epithelial cells away from the basement membrane. CONCLUSIONS: The PDL allowed for both a surgical and a nonsurgical multimodality method for treatment of precancerous lesions with minimal effects on the SLP.  相似文献   
942.
We estimate, by means of a model, the long-range part of the hyperon scalar form factors and their contribution to the pion-hyperon sigma term.  相似文献   
943.
A model for chemical vapor infiltration is analyzed. Consider a cylindrical pore with a reacting and carrier gas flowing in from the left. The gas reacts with the interior of the pore and the result is a solid matrix. The model assumes that the flux due to binary diffusion is negligible. The model also assumes that the reactions are first order.  相似文献   
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Electron injection through a tunnel barrier into a long period GaAs/AlGaAs superlattice is investigated. Seven negative differential resistance (NDR) regions are observed, resulting from resonant tunneling into the first well of the superlattice. Their positions can be quantitatively accounted for by considering the distribution of the electric field in the depletion region and the tunnel barrier. Upon application of a magnetic field parallel to the layers, the NDR's are shifted and weakened, which can be explained in terms of conservation of energy and canonical momentum. Furthermore, optical phonon generated conductance oscillations are observed although the depletion region is punctuated by the superlattice structure.  相似文献   
948.
The magnetic field enhancement is calculated for a magnetically imploded liner system that has flux excluding radial vanes. For the thinnest vane tested the field is found to concentrate at the vanes to a maximum value of almost three times its ambient value with a corresponding temperature increase well above the melting point. These values are calculated using the three-dimensional magnetohydrodgnamic code, MACH3. Calculations are performed for three vane thicknesses, and the vane movement is estimated. A bound is established on the design specification of the vanes based the disruption of current delivery to the liner due to the movement of the vanes  相似文献   
949.
This article briefly summarizes historical developments in fundamental research related to the structure and biosynthesis of cellulose. Major advances concerning the structure of cellulose include the discovery of a new suballomorph of cellulose I, the lattice imaging of glucan chains showing no fringe micelle structure, parallel chain orientation in cellulose I, and the discovery of nematic ordered cellulose. Major advances in biosynthesis include the discovery of the terminal synthesizing complex, the isolation and purification of cellulose synthase, the in vitro synthesis of cellulose I, and synthetic cellulose assembly. This article focuses on recent advances in molecular biology with cellulose, including the cloning and sequencing of cellulose synthase genes from bacteria, cyanobacteria, and vascular plants; proof of the terminal synthesizing complex as the site of the catalytic subunit of cellulose synthase; cellulose and callose synthase expression during growth and development; and phylogenetic aspects of cellulose synthase evolution. This article concludes with thoughts about future uses for the accumulating genetic information on cellulose biosynthesis for textiles and forest products and discusses possibilities of new global resources for cellulose production. © 2003 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 42: 487–495, 2004  相似文献   
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