Abstract:
PURPOSE: A sequencing apparatus and a sequencing method using the same are provided to effectively determine base sequence. CONSTITUTION: A sequencing apparatus comprises one or more nanochannels(100) of which both ends as first(110) and second(120) electrodes to applying voltage. The nanochannels have a first detection unit(130) for detecting position signal of a target nucleic acid and a second detection unit for detecting signal of a detectable label which is conjugated to the target nucleic acid. The first and second detection units are an optical or electric detection unit. The electric detection unit is used for detecting current, voltage, resistance, or impedance. The optical detection unit is used for detecting optical extinction, scattering, fluorescence, fluorescence resonance energy transfer, surface plasmon resonance, or diffraction.
Abstract:
PURPOSE: A magnetic particle for determining nucleic acid and method for determining nucleic acid sequence are provided to ensure effective determination. CONSTITUTION: A magnetic particle for determining nucleic acid sequence has a plurality of fixed single strand nucleic acids. The plural strand nucleic acid is fixed on a magnetic particle through terminal side. The plural single strand nucleic acid comprises a first area having a nucleotide sequence which is identical from distal end; and a second area having random sequence to proximal end.
Abstract:
DRM이 적용된 콘텐츠의 공유 방법이 개시된다. 본 발명에 따른 콘텐츠의 공유 방법은, DRM이 적용된 콘텐츠를 저장하고 있는 제1 디바이스가 제2 디바이스와 연결된 상태에서 상기 콘텐츠를 공유하는 방법에 있어서, 상기 제2 디바이스로부터 상기 콘텐츠의 전송 요청을 수신하는 단계; 상기 제2 디바이스와의 연결 상태를 확인하고, 상기 DRM에 대한 라이센스 정보를 생성하는 단계; 및 상기 라이센스 정보 및 상기 콘텐츠를 전송하는 단계를 포함함으로써, 복수의 디바이스가 서로 연결되어 있는 상태에서만 콘텐츠를 공유할 수 있으므로, DRM 콘텐츠를 중복하여 구입할 필요가 없으며, 편리하게 콘텐츠를 공유할 수 있다. 또한, 디바이스들이 직접 연결된 상태에서 콘텐츠를 공유하므로, 연결 상태에 따른 음질 저하나 방해 요소를 최소화 할 수 있다.
Abstract:
An apparatus and a method for setting an initial display are provided to edit and set preview images as the initial display without selecting the additional initial display setting menu by setting the selected preview image according to the zoom-in key input for setting the preview image set by a user. A controller maintains a standby state(1000). The controller checks whether the request for setting up an initial display exists through a key input unit(1001). The controller displays the current initial display image in a predetermined position after zooming out the current initial display image with a predetermined size(1002). The controller fixes and displays a predetermined preview set among the preview sets including preview elements to reflect the initial display(1003). The controller checks whether the preview set conversion key input for selecting the preview set exists(1004). The controller displays previous or following preview set in each position of the displayed preview sets overlapped except the fixed preview set according to the input of the preview set conversion key(1005). The controller displays the preview elements corresponding to the initial display setting region(1006). The controller checks whether the request for completing the initial display setting exists(1007). The controller finishes the initial display setting process after zooming in the preview image to reflect the preview elements corresponding to the initial display setting region and displaying the final initial display unit on the whole display unit(1008).
Abstract:
A fluorescence detection module for detecting microreaction and a fluorescence detection system having the module are provided to optimize the spot of excited light irradiated to microchambers to detect fluorescence in a specific microchamber without affecting neighboring microchambers even when a distance between neighboring microchambers is small. A fluorescence detection module for detecting fluorescence in a microchamber includes a light source(110) emitting excited light, a collimating lens(120) for condensing the excited light, a dichroic mirror(124) for selectively transmitting or reflecting light according to wavelength, an objective lens(126) for focusing excited light selected by the dichroic mirror, irradiating the focused light to a sample placed in the microchamber and focusing fluorescence generated in the microchamber caused by irradiation of the excited light, a focusing lens(129) for focusing fluorescence selected by the dichroic mirror, and a fluorescence detecting element(130) for detecting the fluorescence focused by the focusing lens.
Abstract:
A system and a method for detecting fluorescence in a micro-fluidic chip are provided to automatically detect an amount of the fluorescence emitted from a micro-chamber. A system for detecting fluorescence includes a chip support, an optical device(300), transfer parts(301-306), a measurement part(450), and an operation part(500). The chip support nests a micro-fluidic chip(100) thereon. The optical device irradiates light on the micro-fluidic chip and detects fluorescence of a fluorescence material existing in the micro-fluidic chip. The transfer part transfers the chip support or the optical device such that the optical device irradiates light while scanning the micro-fluidic chip.
Abstract:
본 발명은 미세유체 칩 및 그를 구비한 미세유체 조작장치를 개시한다. 개시된 미세유체 칩은: 기판 내부에 형성된 적어도 하나의 미세유체 조작 유니트를 구비한다. 상기 미세유체 조작 유니트는: 기판 내부에 형성된 복수의 마이크로 채널; 상기 각 마이크로 채널의 일단에 형성되며, 상기 기판으로부터 노출된 인입구; 상기 마이크로 채널에 형성된 트랩; 상기 마이크로 채널들의 타단에 연결된 챔버; 및 상기 챔버에 연결되며, 그 단이 상기 기판으로부터 노출된 배출구;를 구비하는 것을 특징으로 한다.
Abstract:
A display device and a signal recognition method thereof are provided to prevent execution of an unwanted function on a touch screen even if a touch function of the touch screen is operated by change of an external environment regardless of a touch operation of a user. A key input unit(110) is equipped with touch type function keys. A controller(120) compares a continuous key input time of a key input value output from each function keys with a preset maximum continuous input waiting time corresponding to each input key value, and blocks operation of the function corresponding to the input key value when the continuous input time exceeds the maximum continuous input time. In addition, the controller includes an MCD(Micro Controller Unit)(122) to control the overall operation of a display device(110), and processes an image or voice signal inputted from the external device to display the signal on a display unit(150). A timer(140) counts the continuous input time of the input key value. A memory(130) stores a setting value for the maximum continuous input time corresponding to each input key value.
Abstract:
스피팅(spitting)시 플래튼(platen)에 형성되어 있는 인쇄매체 가이드 리브가 노즐부로부터 분사되는 잉크에 의해 오염되는 것을 방지하고 고속 인쇄시 급지의 안정성을 향상시키기 위하여, 본 발명은 노즐부가 구비된 어레이 방식의 잉크젯 헤드, 및 상기 잉크젯 헤드의 노즐부와 이격되어 대향되게 배치되고, 잉크 배출구 및 인쇄매체 가이드 리브가 형성되어 있으며, 인쇄매체의 배면을 지지하는 플래튼(platen)을 구비하고, 상기 플래튼은 제1플래튼부, 및 상기 제1플래튼부에 이동가능하게 결합되고 제2 인쇄매체 가이드 리브가 형성되어 있는 제2플래튼부를 구비하는 잉크젯 헤드의 스피팅 장치를 제공한다.
Abstract:
An apparatus and a method for separating a polarizable anolyte using dielectrophoresis are provided to quickly analyze polarizable target materials without disturbing the flow of a fluid. An apparatus for a separating polarizable anolyte using dielectrophoresis includes an inlet(201), an outlet(202), a micro channel(230), and a film(210). The inlet and the outlet are connected through the micro channel. In the micro channel, the film having air gaps(212) of nano or micro size is installed across the flow of a fluid. Electrodes(220,221) are installed apart from the film by a predetermined distance. It is preferable that the size of the air gap is 0.1~500mum similar to the thickness of the film.