Abstract:
Disclosed are nanoparticles that are introduced into cells and express a specific protein and a manufacturing method thereof. More particularly, the present invention relates to mRNA nanoparticles, which increase the expression of a specific protein capable of stimulating the cellular immune system to induce cellular immune responses and are thus applicable to treat a variety of diseases, do not require passage across the nuclear envelope because a desired gene is delivered not as plasmid DNA itself but in the form of mRNA, thus improving the efficiency of protein expression, and the nanoparticles are generated through a one-step process with a relatively small amount of plasmid DNA via rolling circle transcription (RCT), thereby providing a simple and economical process for gene delivery. The present invention is also concerned with such mRNA nanoparticles.
Abstract:
A method for transmitting and receiving a message for Downloadable-Conditional Access System (D-CAS) or Downloadable-Digital Rights Management (D-DRM) in Moving Picture Experts Group Media Transport (MMT) is provided. The method includes, upon receiving Composition Information (CI) from an MMT server, acquiring signaling information for D-CAS or D-DRM, which is included in the CI, acquiring, from the signaling information, an address of a server from which software of D-CAS or D-DRM is downloadable, generating a request for the software based on the signaling information, and sending the request for the software to the server address.
Abstract:
Disclosed are a method of manufacturing an RNA membrane and an RNA membrane manufactured thereby, wherein the RNA membrane can be produced at lower cost, in which the RNA membrane is composed exclusively of RNA, and thus has no toxicity in vivo, is controllable, and can be effectively applied to bio-organs such as the pericardium, as well as the production of peptides or proteins, and particularly, long linear RNA strands, which have not yet formed particles, are concentrated on the surface of a tube by inducing an evaporation process to thus activate the bonding of base pairs thereof, and the roughness and thickness of the RNA membrane can be controlled by changing the manufacturing conditions.
Abstract:
A rectifier includes: a rectifying circuit configured to rectify alternating current (AC) power into direct current (DC) power through a switching operation; a driver configured to apply a switching signal to the rectifying circuit; and a signal modulator configured to select a parameter from among parameters of the switching signal based on a frequency of the switching signal, and adjust the selected parameter.
Abstract:
The present invention relates to a technique for correcting a geometric image error calculated as a rational polynomial coefficient (RPC) only through a corresponding point extracted from a digital elevation model (DEM) and a stereoscopic image without direct measurement of a ground control point (GCP). To this end, a system for automatic geometric correction using an RPC in accordance with the present invention comprises: an auxiliary data extraction unit; a corresponding point extraction unit; a first ground coordinate extraction unit; a second ground coordinate extraction unit; an RPC correction model generation unit; and an image distortion correction unit. The auxiliary data extraction unit extracts two or more different images captured from the same ground surface and auxiliary data of the two or more different images. The corresponding point extraction unit extracts a corresponding point from the two or more different images through image matching. The first ground coordinate extraction unit extracts first ground coordinates from the corresponding point and an RPC model of the auxiliary data. The second ground coordinate extraction unit extracts second ground coordinates by using the first ground coordinates and a correlation coefficient of a DEM. The RPC correction model generation unit generates an RPC correction model by correcting the RPC model on the basis of the second ground coordinates. The image distortion correction unit corrects distortion of an image by allocating ground coordinates to each image coordinates of the image by using the second ground coordinates and the RPC correction model.
Abstract:
A method for representing a document as a matrix in an electronic device comprising a processor and a memory storing instructions executed by the processor and the method includes creating a term vector comprising at least one term in the document, calculating a weight of each of the at least one term for each of at least one concept in the document and representing the document as a matrix by mapping the at least one term included in the document onto any one of rows and columns of the matrix, and mapping the at least one concept onto the other of the rows and columns of the matrix and the matrix comprises a weight the at least one term has in the document as a component.
Abstract:
Disclosed herein are a start-up circuit capable of reducing a leakage current to reduce power consumption, and a power device using the same. The start-up circuit includes: a bias unit connected between a first power source and a second power source and allowing a first current to flow from the first power source to the second power source according to a predetermined voltage; a first start unit connected to the bias unit and driving a second current to apply the predetermined voltage to the bias unit, and stopping driving the second current when a voltage received from the second power source reaches a first voltage; and a second start unit connected to the bias unit and driving a third current, the predetermined voltage being applied to the bias unit by the third current, and stopping driving the third current upon receiving a stop signal.
Abstract:
The present invention provides an organic-inorganic composite light-emitting device including a luminescent layer emitting high-brightness light using low voltage, wherein the luminescent layer has a sandwich structure in which organic luminescent layers are formed on both sides of an inorganic thin film layer.The organic-inorganic composite light-emitting device configured as above is advantageous in that an inorganic thin film layer is inserted and formed between organic luminescent layers, and thus the injection of electrons that occurs when low voltage is applied stabilizes the structure of the luminescent layer, thereby emitting brighter light. Further, the organic-inorganic composite light-emitting device is effective in greatly improving the power efficiency of an organic light-emitting device by greatly increasing the luminance efficiency thereof. Moreover, the organic-inorganic composite light-emitting device can exhibit improved luminance efficiency at low cost because it can be manufactured by directly using a conventional organic light-emitting device structure and a conventional process of manufacturing an organic light-emitting device.
Abstract:
The present invention relates to an electrolyte having improved high-rate charge and discharge property, and a capacitor comprising the same, and more particularly to an electrolyte having improved high-rate charge and discharge property comprising an aromatic compound, which comprises at least one compound of the following Chemical Formula 1 to Chemical Formula 11 that can induce resonance effect of electron movement, and which is a substituted organic compound in which a functional group is present at a location that can structurally prevent local polarization effect, and the boiling point of which is 80° C. or higher, wherein R in the Chemical Formula 1 to Chemical Formula 11 is at least one functional group selected from the alkyl group consisting of methyl, ethyl, propyl and butyl, and a capacitor comprising the same.Further, the present invention relates to an electrolyte for a lithium secondary battery, and a lithium secondary battery using the same, and more particularly to an electrolyte for a lithium secondary battery, which is the electrolyte having improved high-rate charge and discharge property comprising a linear acrylate compound, wherein the linear acrylate compound is a linear acrylate compound composed of any one linear structure of ether, ketone, ester and amide, and a lithium secondary battery using the same.