Abstract:
PURPOSE: A tomography system including a small X-ray source is provided to effectively obtain a high quality radiation 3D reconstructed image by taking a photograph of an object while rotating a gantry in a predetermined angle to obtain image information. CONSTITUTION: A small vacuum chamber(20) is separated from an X-ray detector(10). A circular gantry unit(30) fixes the X-ray detector and the small vacuum chamber. The circular gantry unit is rotationally formed. A unit X-ray source is attached in the small vacuum chamber. An object and an X-ray filter are located between the X-ray detector and the small vacuum chamber. [Reference numerals] (60) Controller
Abstract:
PURPOSE: A bio-adhesive is provided to form a coating film with strong adhesion and improved physical properties, to remarkably reduce side-effect like inflammation, etc, and to have excellent profitability. CONSTITUTION: A bio-adhesive comprises poly L-3, 4-dihydroxyphenylalanine having a repeating unit in chemical formula 1, and cyano acrylate. In chemical formula 1, A is a bond or -(CH2)l-B-(CH2)m-, B is CH2 or O, l and m is respectively an integer from 1-9, the sum of l and m is 2-10, and a molecular weight of the poly L-3, 4-dihydroxyphenylalanine is 500-5,000,000. The A is a bond, C1-10 alkylene, or -(CH2)-O-(CH2)-. The A is a bond, ethylene, or -(CH2)-O-(CH2)-
Abstract:
PURPOSE: A compound, and a bio-adhesive using the same are provided to form a coating film having improved physical property with excellent adhesion with an object, and to remarkably reduce side effect like infection, etc because penetration to inside injury. CONSTITUTION: A compound is in chemical formula 1. In chemical formula 1, A is a bond or -(CH2)n-B-(CH2)m-, B is CH2 or O, n and m is an integer from 1-9, and a sum of n and m is 2-10. A manufacturing method of the compound comprises: a step of manufacturing a compound in chemical formula 4 by reacting a compound in chemical formula 2 and a compound in chemical formula 3, and a step of manufacturing a compound in chemical formula 1 by reacting a compound in chemical formula 4 and a compound in chemical formula 5.
Abstract:
PURPOSE: An X-ray source acceptor and an X-ray system including the same are provided to apply a power source by fixing and controlling the location of an electrode fixing unit. CONSTITUTION: An X-ray source supporting unit(210) is detachably combined with an X-ray source. A first insulation post(220) is located at the upper surface or surface of the X-ray source supporting unit. One or more electrode fixing units(230) are combined with the first insulation post. An electrode is attached to one side of the one or more electrode fixing units. The one or more electrode fixing units fix and control the location of electrodes(240) of the X-ray source. One or more electrode connection holes are formed on the electrodes. A power connection member passing through the electrode connection hole contacts the electrode of the X-ray source.
Abstract:
본발명은관절간격을측정하는방법에있어서, a) 엑스레이(X-ray) 영상을추출하는단계, b) 비선형이방성분산필터(Coherence filter)를이용하여영상의경계선을보다선명하게하는단계, c) 상기엑스레이(X-ray) 영상으로부터로컬바이너리피팅법(LBF)법을이용하여관절의컨투어(contour)를추출하는단계, d) 상기관절의컨투어(contour)에의해서뼈 사이공간의간격을수치화하는단계를포함하는것을특징으로하는발명이다. 본발명에의하면관절사이의간격을수치화하여정확하게측정할수 있으며, 관절간격을측정하여정확한진단이가능하게된다.
Abstract:
PURPOSE: An electrode for an electrochemical biosensor and a bio sensor having the same are provided to effectively living things and biomaterials by selectively controlling a density, a height, a diameter, an area, a shape, an arrangement shape of a carbon nano tube. CONSTITUTION: An electrode for an electrochemical biosensor comprises a substrate(10), a first layer(20), a carbon nano tube(30), and a second layer(40). The first layer comprises a grapheme formed on the substrate. The carbon nano tube is formed on the first layer. The second layer is arranged on the upper part of the carbon nano tube and specific biomaterials are fixed on the second layer.
Abstract:
본 발명은 동물 모델의 이스케미아에 따른 실시간 신경계 측정 시스템에 관한 것으로, 특히 동물의 이스케미아 상태에서 동물의 최적 상태 조건(체온 및 뇌의 온도)을 충족하고, 이스케미아 유발이 정상적으로 이루어졌는지를 확인하면서 뇌의 신경전달물질의 변화량 값을 측정하는 동물 모델의 이스케미아에 따른 실시간 신경계 측정 시스템에 관한 것이다. 본 발명인 동물 모델의 이스케미아에 따른 실시간 신경계 측정 시스템을 이루는 구성수단은, 상기 동물의 이스케미아(ischemia) 유발 확인을 위하여 상기 동물의 생체 파라미터를 측정하는 이스케미아 유발 확인 장치, 상기 이스케미아에 따라 상기 동물의 생존을 유지시키고 신경 변화의 실시간 측정을 최적화시키기 위하여 상기 동물의 생체 파라미터를 측정 및 유지시키는 이스케미아 유지 최적 장치, 상기 동물의 이스케미아 상태에서 방출되는 신경전달물질의 변화량을 측정하는 신경전달물질 측정 장치, 상기 장치들로부터 데이터들을 전달받아 저장하고 분석하는 데이터 분석 장치를 포함하여 이루어진 것을 특징으로 한다. 동물모델, 이스케미아, 신경전달물질, 글루타메이트
Abstract:
PURPOSE: An ischemic animal model real time monitoring system is provided to effectively diagnosis as comparing the amount of change of data measured on a real time basis each other. CONSTITUTION: The ischemic animal model real time monitoring system includes: a ischemia induction acknowledgement set(30) for measuring HRV of the animal to check ischemia induction; a ischemia device(40) for maintaining the alive of the animal according to the ischemia, and measuring and maintain HRV of the animal to optimize the real time measurement of the nerve change; a neurotransmitter measure system(50) for measuring the amount of change of neurotransmitter emitted in the ischemia state of the animal; a data analysis part(60) for storing and analyzing the received data; and a display unit(70) for displaying the analyzed data on a real time basis.