바이오 채널 시스템
    3.
    发明公开
    바이오 채널 시스템 失效
    生物通道系统

    公开(公告)号:KR1020120075188A

    公开(公告)日:2012-07-06

    申请号:KR1020100137236

    申请日:2010-12-28

    Inventor: 박승한 이상엽

    Abstract: PURPOSE: A bio channel system is provided to accurately observe the optical characteristics of specimens by illuminating amplified light to the specimens. CONSTITUTION: A bio channel system includes a metal-based base(200), at least one aperture(205), a slide(210), and a channel(220). The apertures are formed at the base. The slide is combined with the base to cover the apertures. The channel is combined with the upper side of the slide. The channel includes a trench(215) in order to receive specimens. The widths of the apertures are in nanometer units. The thicknesses of the slides are in nanometer units. The slide is based on SiO_2 or Si_3N_4. The slide is based on an optically transparent material.

    Abstract translation: 目的:提供生物通道系统,通过向样品照射放大光来准确观察样品的光学特性。 构成:生物通道系统包括金属基底(200),至少一个孔(205),滑动件(210)和通道(220)。 孔形成在底部。 滑块与基座组合以覆盖孔。 通道与幻灯片的上侧相结合。 通道包括用于接收标本的沟槽(215)。 孔的宽度为纳米单位。 载玻片的厚度为纳米单位。 幻灯片基于SiO_2或Si_3N_4。 幻灯片基于光学透明材料。

    나노 와이어를 이용한 패치 형태의 신경 소자
    7.
    发明授权
    나노 와이어를 이용한 패치 형태의 신경 소자 有权
    使用纳米线的贴片型神经元件

    公开(公告)号:KR101158773B1

    公开(公告)日:2012-06-22

    申请号:KR1020100113881

    申请日:2010-11-16

    Abstract: 본 발명은 나노 와이어를 이용한 패치 형태의 신경 소자에 관한 것으로, 유연한 기판 상에 나노 와이어 팁을 부착하여 대뇌피질과 같은 넓은 면적의 신경기관 상의 신경신호를 검출하거나 자극할 수 있는 패치 형태의 신경 소자로서, 다수의 처리 모듈이 서로 전기적으로 연결됨으로써 신경이 끊긴 부위가 있더라도 전기 신호 또는 전기 자극을 상호 송수신할 수 있는 신경 소자를 제공한다.

    외부 모듈과 데이터 통신이 가능한 지능형 신경소자
    8.
    发明公开
    외부 모듈과 데이터 통신이 가능한 지능형 신경소자 有权
    具有外部模块通信数据的智能神经元件

    公开(公告)号:KR1020120052634A

    公开(公告)日:2012-05-24

    申请号:KR1020100113887

    申请日:2010-11-16

    Abstract: PURPOSE: An intelligent nerval element capable of communicating data with an external module is provided to use a radio frequency transmitter/receiver or a wired device for transmitting or receiving data obtained from the nerval element or processed from the external module. CONSTITUTION: An intelligent nerval element capable of communicating data with an external module includes an electrode unit(500), a process module(510), and a unit electrode unit(520). The electrode unit provides electric signals obtained from nerve fibers to the process module, and applies electro-stimulation to the nerve fibers by the control of the process module. The process module obtains the electric signals from the nerve fibers, or controls the application of the electric signals to the nerve fibers. The unit electrode unit is electrically connected to nanowires, and includes a CMOS(complementary metal oxide semiconductor) device or a CCD(charge-coupled device).

    Abstract translation: 目的:提供一种能够与外部模块通信数据的智能神经元,以便使用射频发射机/接收机或有线设备发送或接收从神经元件获取或从外部模块处理的数据。 构成:能够与外部模块通信数据的智能神经元包括电极单元(500),处理模块(510)和单元电极单元(520)。 电极单元向神经纤维提供从神经纤维获得的电信号,并通过控制过程模块对神经纤维进行电刺激。 该过程模块从神经纤维获得电信号,或控制电信号施加于神经纤维。 单元电极单元电连接到纳米线,并且包括CMOS(互补金属氧化物半导体)器件或CCD(电荷耦合器件)。

    나노 와이어와 커프를 활용한 신경 소자
    9.
    发明公开
    나노 와이어와 커프를 활용한 신경 소자 有权
    使用纳米线和CUFF的NERVAL元件

    公开(公告)号:KR1020120052633A

    公开(公告)日:2012-05-24

    申请号:KR1020100113885

    申请日:2010-11-16

    Abstract: PURPOSE: A nerval element using nanowires and cuffs is provided to continuously transmit the electro-stimulation to nerves without killing nerve fibers, and to transmit electric signals regardless of the existence of a cut on the nerves. CONSTITUTION: A nerval element using nanowires and cuffs includes the cuffs(11), nanowire modules(20), and process modules(40). The cuffs form a hollow cylindrical shape, and include an opening by cutting on part of the cylinder perimeter. The nanowire modules are vertically extended from the element, and are inserted into nerves for obtaining electric signals or transmitting the electric signal to nerve fibers using nanowires. The process modules are electrically connected to the nanowire modules for receiving and transmitting the electric signals or electro-stimulation.

    Abstract translation: 目的:提供使用纳米线和袖口的神经元件,以不间断地传播电刺激神经而不会神经纤维,并传播电信号,而不管神经存在切割。 构成:使用纳米线和袖口的神经元件包括袖口(11),纳米线模块(20)和加工模块(40)。 袖口形成中空圆柱形,并且包括通过在圆筒周边的一部分上切割的开口。 纳米线模块从元件垂直延伸,并插入神经中以获得电信号或使用纳米线将电信号传输到神经纤维。 工艺模块电连接到纳米线模块,用于接收和传输电信号或电刺激。

    굴절률 분포 측정 방법 및 장치
    10.
    发明公开
    굴절률 분포 측정 방법 및 장치 有权
    用于测量折射率指标的方法和装置

    公开(公告)号:KR1020110071582A

    公开(公告)日:2011-06-29

    申请号:KR1020090128195

    申请日:2009-12-21

    Abstract: PURPOSE: A method and an apparatus for measuring refractive index profile are provided to measure refractive index profile in a non-destructive manner excluding cutting and grinding of an object being measured. CONSTITUTION: An apparatus for measuring refractive index profile comprises a light source unit(110), a diffraction grating, a diffraction pattern recording unit(160), and an operation unit(170). The light source unit irradiates collimated light to enter the diffraction grating. The diffraction pattern recording unit records a diffraction pattern which is formed by the diffraction beam from the diffraction grating passes through an object having a non-uniform refractive index. The operation unit computes the refraction index profile of the object from the interval between the zeroth peak position and the first peak position.

    Abstract translation: 目的:提供一种用于测量折射率分布的方法和装置,以非破坏性的方式测量折射率分布,不包括被测量物体的切割和研磨。 构成:用于测量折射率分布的装置包括光源单元(110),衍射光栅,衍射图案记录单元(160)和操作单元(170)。 光源单元照射准直光进入衍射光栅。 衍射图案记录单元记录由衍射光栅衍射光束形成的衍射图案通过具有不均匀折射率的物体。 操作单元从第零峰位置和第一峰位置之间的间隔计算物体的折射率分布。

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