Abstract:
외부 장치(예컨대, 휴대폰, USB 메모리)에 연결되어 외부 장치로부터 제공된 인쇄 데이터를 인쇄하는 본 발명의 적어도 하나의 실시예에 따른 화상형성장치 및 방법은, 화상형성장치가 그 인쇄 데이터(의 프리뷰(preview) 이미지)를 표시하고, 사용자의 화상형성장치 조작에 따라 화상형성장치가 그 인쇄 데이터의 인쇄옵션을 설정하고, 화상형성장치가 그 인쇄 데이터를 그 설정된 인쇄 옵션에 따라 인쇄하고, 설정된 인쇄옵션을 외부 장치와 공유한다.
Abstract:
A non-operative or less-invasive molecular staging marker is provided to classify a highly endangered group, which shows abrupt decrease of survival rate, from an 1B group by identifying more detailed progress and prognosis prediction of cancer than T-staging depending on a size of tumor. A marker for classifying sub-stages of a stage 1 lung cancer patient comprises at least one polynucleotide. A kit for classifying the sub-stages of the stage 1 lung cancer patient comprises a sense and an anti-sense primers of the at least one of the polynucleotide. A microarray for classifying the sub-stages of the stage 1 lung cancer patient comprises the marker or an antibody recognizing a protein encoded by the marker. A method for classifying the sub-stages of the stage 1 lung cancer patient comprises the steps of: (a) obtaining a lung cancer sample from the stage 1 lung cancer patient; (b) detecting expression of the polynucleotide from the sample; and (c) classifying the lung cancer patient based on the detection result into a specific sub-stage.
Abstract:
A method and a system for outputting personal management information data are provided to improve the convenience by classifying the personal management information into a specific priority or a field. A method for outputting the personal management information data includes the steps of: transmitting the XHTML data of the personal management information to an image formation device by using the XHMTL template defining the layout for the output of the personal management information(10); and outputting the personal management information by interpreting the transmitted XHTML data(12).
Abstract:
A quantitative dispensing apparatus for cell is provided to improve the uniformity of a cell chip and increase the productivity by distributing a cell suspension into fine volumetric liquid droplets and simultaneously providing each of the liquid droplet including quantitated cell to a target portion. The apparatus comprises a liquid droplet manipulating unit(100) using electrowetting phenomenon, a sensing unit(200) placed toward a liquid droplet manipulating side, an exit unit(300) connected to a liquid droplet discharging portion(120), and a control unit(400) controlling the units. The liquid droplet manipulating unit includes an electrode array consisting of a plurality of electrode pads and has at least one drain portion(130) including a drainage path(134). The electrode array is equipped with an injection portion(110) in which a hydrophilic suspension including a plurality of cells is supplied and at least one liquid droplet discharging portion(120) discharging quantitated cells. The sensing unit optically detects the number of cells contained in each of the droplets distributed on the electrode array and is a digital camera(201), which preferably has a lens(202) adequate for magnifying photographing, converts an image formed by the lens into a digital signal through a state image sensing device such as a CCD or CMOS sensor and then inputs the signal to the control unit. The control unit analyzes the input signal from the sensing unit to calculate the number of the cells contained in each of the liquid droplet and applies a control signal into the liquid droplet manipulating unit to repetitively and selectively divide, transfer and merge the droplets, thereby obtaining the droplet including the desired number of the cell. The exit unit includes a receiving portion receiving the quantitated cells and an exit placed at the lower side of the vertical direction of the receiving portion to exit the quantitated cells fallen by the gravity to a target portion.
Abstract:
An image forming device and a controlling method thereof are provided to assign priority to a communication request which is to be firstly processed from external device wanting to use a communication mode including restriction. A network interface(210) receives the communication request from the external devices through the network. A memory(220) sets and stores a priority communication mode among the communication modes with the external devices. A controller(230) preferentially responds to the communication request corresponding to the priority communication mode. An OPE(Operation Panel Equipment)(240) displays a list and communication mode information of the external devices, and receives the priority communication mode by using the list and the communication mode information. The controller stores the communication request to the memory if a task is performed, and promptly responds to the communication request if a process for the communication request is enabled.
Abstract:
본 발명은 바이오칩 지지대 및 샘플투입구가 구비된 덮개로 형성되는 하나 이상의 혼성화 챔버를 포함하는 챔버 장치, 상기 혼성화 챔버의 양 말단에 연결된 두개의 에어 채널, 상기 에어 채널상에 설치된 두개의 밸브, 상기 두개의 에어 채널이 연결된 하나의 통합 채널 및 상기 통합 에어 채널상에 설치된 하나의 에어 펌프를 포함하는 교반 장치, 및 상기 두개의 에어 체널 중 하나에 분지 밸브를 통해 연결된 유로, 상기 유로상에 연결된 플로우 펌프, 상기 유로의 반대편에 완충액 투입구를 포함하는 세척/건조 장치를 포함하는 바이오칩의 혼성화 장치에 관한 것이다. 본 발명에 따르면, 바이오 칩을 이용한 혼성화에 필요한 샘플 확산(diffusion) 및 샘플 교반(agitation), 칩 세척(washing) 및 건조(drying)를 자동화된 한 시스템내에서 효율적으로 구현할 수 있다.
Abstract:
본 발명은 (a) 핵산 시료로부터 하나 이상의 프라이머의 5′말단 쪽에 태그 서열을 포함하고 3′말단 쪽에 표적 결합 서열을 포함하는 프라이머 세트를 이용하여 표적 핵산을 증폭하는 단계; (b) 얻어진 증폭 산물을 상기 태그 서열에 특이적으로 결합하고 표지가 되어 있는 검출 프로브와 혼성화하는 단계; (c) 상기 혼성화 반응물을 상기 표적 핵산에 특이적으로 결합하나 태그 서열에는 결합하지 않는 포획 프로브의 마이크로어레이 상에서 혼성화하는 단계; 및 (d) 상기 혼성화 결과를 측정하는 단계를 포함하여 이루어지는 표적 핵산의 검출방법으로서, 상기 태그 서열은 증폭용 프라이머의 5′쪽에 위치하고, 표적 서열에는 존재하지 않는 10 내지 50 뉴클레오티드의 올리고뉴클레오티드 서열인 것인 방법을 제공한다. 태그 서열, 검출, 마이크로어레이, 포획 프로브
Abstract:
A method for detecting a target nucleic acid by using a detection probe capable of hybridizing with a tag sequence is provided, thereby detecting a plurality of target nucleic acids amplified by multiple PCR using only one detection probe, and requiring no additional labeling process such as dyeing process, so that the detection costs can be reduced by eliminating the labeling cost. The method for detecting a target nucleic acid by using a detection probe capable of hybridizing with a tag sequence comprises the steps of: (a) PCR amplifying a target nucleic acid using a primer set comprising a tag sequence to the 5'-terminal and a target nucleic acid-binding sequence to the 3'-terminal of one or more primers from the nucleic acid sample; (b) hybridizing the PCR product with a detection probe which binds specifically to the tag sequence and is labeled; (c) hybridizing the hybridization product with a capture probe which binds specifically to the target nucleic acid and does not bind to the tag sequence on a microarray; and (d) measuring the hybridization results.
Abstract:
PURPOSE: Provided is a process for producing a hydrogel biochip having 3-dimensional structure and improved sensitivity by using an epoxy-contained radial polyethylene glycol derivative. CONSTITUTION: The process comprises the steps of: reacting the radial polyethylene glycol having an epoxy group at the end thereof and a low molecular weight hydrophilic polymer to prepare a matrix, wherein the hydrophilic polymer has an average molecular weight of 60-100,000 and is a polyethylene glycol having hydroxy, amino, or thiol; covalently bonding a probe to the matrix to prepare a matrix-probe conjugation body, wherein the probe is nucleic acid(DNA, RNA, or PNA), protein, or oligopeptide; fixing the matrix-probe conjugation body to a solid substrate such as glass, quartz, silicone, plastic, polypropylene, polycarbonate, or activated acrylamide.