Abstract:
An array substrate for a liquid crystal display device, the array substrate including a substrate, a gate line including a gate electrode disposed upon the substrate, a data line disposed upon the substrate and formed orthogonal to the gate line, a barrier disposed upon the substrate and spaced apart from the gate electrode and the data line, a gate insulating layer disposed upon the substrate to cover the gate line, the gate electrode, and the barrier, an active layer disposed upon the gate insulating layer and over the gate electrode, a source electrode disposed upon the active layer, a drain electrode having a first portion disposed upon the active layer opposite to the source electrode, and a second portion disposed upon the insulating layer to cross over the barrier, a pixel region defined by a cross of the gate line and the data line, and a pixel electrode electrically connected to the second portion of the drain electrode.
Abstract:
Disclosed is a visualization method of RNA pseudoknot structures. The method of the invention comprises the steps of setting criteria required for visualizing RNA pseudoknots, setting structural elements and data structures for representing a whole RNA structure containing pseudoknots, determining an input format for visualization and a drawing order of the structure, determining connectivity relations between regular loops and stems in the structure and between pseudoknot loops and stems in the structure, calculating radii of the regular loop and the PK loop, calculating coordinates of bases in the regular loops, setting internal angles of the PK loops, calculating startAngles of the regular loops and angles of the stem, determining positions of the pseudoknots in the PK loops, and drawing the pseudoknots and the whole RNA structure containing the pseudoknots.
Abstract:
The present invention relates to expression vectors containing in vivo urea cycle enzyme gene; transformants thereof; and the use of transformants for protein overexpression. During the overexpression of protein, if the animal cell transformed with expression vectors of the present invention is used, amounts of ammonia accumulation within cell culture medium will decrease and cell growth rate will increase, thus, it is advantageous to be capable of obtaining desired protein in high yields.
Abstract:
Provided is a method for forming solid substrates having high density of primary amine group on its surface, in which the primary amine groups on the surface of an aminosilylated substrate are treated with aziridine or an aziridine derivative. The surface density of the primary amine functional groups (—NH2) on the very top surface of a substrate can be drastically increased.
Abstract:
The present invention relates to a pharmaceutical vaccine composition for a human cervical cancer, comprising: (a) (i) a L1 virus-like particle (VLP) of human papillomavirus (HPV) type 16, a L1 VLP of HPV type 18, or a combination thereof; and (ii) a deacylated non-toxic lipooligosaccharide (LOS); and (b) a pharmaceutically acceptable carrier; and a method for preparing a human papillomavirus (HPV) L1 virus-like particle (VLP). The pharmaceutical vaccine composition of the present invention is in both Th1-type immune response (cellular immunity) and Th2-type immune response (humoral immunity) against HPV more excellent than Cervrix™ and Gardasil™, exhibiting a superior efficacy as a vaccine for a human cervical cancer.
Abstract:
A pad conditioning disk, a pre-conditioning unit, and a CMP apparatus having the same are provided. The pad conditioning disk includes a base in which mountain-type tips and valley-type grooves are repeatedly connected to each other, and a cutting layer formed on the base layer. The cutting layer including conditioning particles deposited on surfaces of the tips and grooves. A surfaces roughness of conditioning particles deposited on the surfaces of the tips is less than a surface roughness of conditioning particles deposited on the surfaces of the grooves.
Abstract:
An array substrate for a transflective liquid crystal display device which includes a substrate having a display region and a boundary region; a gate line disposed on the substrate; a first insulating layer disposed on the gate line; a data line disposed on the first insulating layer, the data line crossing the gate line and defining a pixel region with the gate line; a thin film transistor connected to the gate line and the data line; a second insulating layer disposed on the thin film transistor; a reflective plate disposed on the second insulating layer at the display region, the reflective plate being extended to the boundary region and having a transmission hole in the pixel region; a third insulating layer disposed on the reflective plate; and a pixel electrode disposed on the third insulating layer at the pixel region, the pixel electrode being connected to the thin film transistor.
Abstract:
An apparatus and method for maximizing throughout for HARQ transmissions is provided. Systematic and prodeduralized RV selection is facilitated by determining the parameter “s” by using two important factors affecting the system throughout, specifically the coding gain varying according to the code rate and the balance between energy per systematic bit and energy per parity bit.
Abstract:
An array substrate for a transflective liquid crystal display device which includes a substrate having a display region and a boundary region; a gate line disposed on the substrate; a first insulating layer disposed on the gate line; a data line disposed on the first insulating layer, the data line crossing the gate line and defining a pixel region with the gate line; a thin film transistor connected to the gate line and the data line; a second insulating layer disposed on the thin film transistor; a reflective plate disposed on the second insulating layer at the display region, the reflective plate being extended to the boundary region and having a transmission hole in the pixel region; a third insulating layer disposed on the reflective plate; and a pixel electrode disposed on the third insulating layer at the pixel region, the pixel electrode being connected to the thin film transistor.
Abstract:
An array substrate for a transflective liquid crystal display device includes: a gate line on a substrate; a data line crossing the gate line, the gate line and the data line defining a pixel region having a transmissive portion and a reflective portion; a gate electrode connected to the gate line; source and drain electrode spaced apart from each other over the gate electrode, the source and drain electrode being spaced apart from each other, the source electrode being connected to the data line; a reflective layer having the same layer as the source and drain electrodes, the reflective layer being disposed in the pixel region and having a transmissive hole corresponding to the transmissive portion; and a pixel electrode connected to the drain electrode, the pixel electrode being disposed in the pixel region, wherein the source and drain electrodes and the reflective layer have multiple layers of metal, wherein a top layer of the multiple layers includes a reflective metallic material.