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    • 63. 发明公开
    • 차량 운전자의 생체신호 측정장치
    • 用于测量车辆驾驶员生理信号的装置
    • KR1020100063651A
    • 2010-06-11
    • KR1020090111260
    • 2009-11-18
    • 한국전자통신연구원
    • 박선희김승환이인범신승철장용원송윤선
    • B60K28/06A61B5/04A61B5/18
    • PURPOSE: A device for measuring a physiological signal of a driver is provided to safely measure a physiological signal without an obstruction when a vehicle travels using a conductive fabric electrode sensor. CONSTITUTION: A device for measuring a physiological signal of a driver comprises a conductive fabric electrode(210) and a signal generator. The conductive fabric electrode is spread on one of a wheel frame, a gear stick, an armrest, and a window frame in a vehicle. And the conductive fabric electrode senses a physiological current by being in contact with the body of a driver. The signal generator generates an electric signal corresponding to the physiological current.
    • 目的:提供一种用于测量驾驶员的生理信号的装置,用于当使用导电织物电极传感器行驶时,无障碍地安全地测量生理信号。 构成:用于测量驱动器的生理信号的装置包括导电织物电极(210)和信号发生器。 导电性织物电极在车辆框架,齿轮杆,扶手和窗框中的一个上铺展。 并且导电织物电极通过与驾驶员的身体接触来感测生理电流。 信号发生器产生对应于生理电流的电信号。
    • 64. 发明公开
    • 생체신호 측정의복과 생체신호 처리시스템
    • 生理信号测量和加工生理信号系统
    • KR1020090009645A
    • 2009-01-23
    • KR1020070073100
    • 2007-07-20
    • 한국전자통신연구원
    • 정연희전영주신승철장용원김승환
    • A61B5/04
    • A61B5/0408A41D13/1281A61B5/01A61B5/0816A61B5/6805
    • A garment for physiological signal measurement and a system for processing physiological signal are provided to obtain exact physiological information by manufacturing a garment for physiological signal measurement in consideration of muscle form and moving characteristics of a human body. A garment(110) is made of an elastic fabric, and comprises a mesh structure and a elastic band(116). At least one or more physiological signal sensing electrode(120) is sewed to the garment. A physiological signal transmitting part(130) is sewed to the garment, and transmits a physiological signal obtained from the physiological signal sensing electrode. Physiological information measuring module(140a) measures various physiological information from the physiological signal delivered through the physiological signal transmitting part. The physiological signal sensing electrode is made of a conductive fabric. The physiological signal transmitting part comprises a transmission wire(132) and a wire cover(134). The transmission wire transmits a physiological signal sensed by the physiological signal sensing electrode to the physiological information measuring module. The wire cover insulates the transmission wire from a skin of a human body.
    • 提供用于生理信号测量的服装和用于处理生理信号的系统,以考虑到人体的肌肉形状和运动特征,通过制造用于生理信号测量的服装来获得精确的生理信息。 衣服(110)由弹性织物制成,并包括网状结构和弹性带(116)。 将至少一个或多个生理信号感测电极(120)缝合到衣服上。 将生理信号发送部(130)缝合到衣服上,并且发送从生理信号感测电极获得的生理信号。 生理信息测量模块(140a)根据通过生理信号发送部分输送的生理信号测量各种生理信息。 生理信号感应电极由导电织物制成。 生理信号传输部分包括传输线(132)和线罩(134)。 传输线将由生理信号感测电极感测的生理信号传送到生理信息测量模块。 电线罩将传输线与人体皮肤隔离。
    • 65. 发明公开
    • 광 네트워크에서의 음성 전화 가입자 정합 방법 및 장치
    • 用于在电话网络中接入电话用户的方法和装置
    • KR1020080050257A
    • 2008-06-05
    • KR1020070070016
    • 2007-07-12
    • 한국전자통신연구원
    • 남홍순김승환송광석권율
    • H04L12/28H04L12/66H04B10/2581
    • H04Q11/0067H04B10/25
    • A voice telephone subscriber interfacing method and apparatus in an optical network are provided to effectively use network resources by transmitting only data of an active POTS(Plain Old Telephone Service) subscriber terminal. An SLIC(Subscriber Line Interface Circuit)(112) provides power necessary to a POTS subscriber terminal, and transceives a call signal between the POTS subscriber terminal and an optical network termination device(100). A codec(113) converts analog signals of a plurality of voice terminals into a plurality of digital signals. A GEM(G-PON(Gigabit-Passive Optical Network) Encapsulation Method) frame allocation unit(115) inserts state information including whether the plurality of voice terminals have been activated or not into an optical communication frame for a voice service, and inserts the digital signal of an activated voice terminal, among the plurality of digital signals, into an optical communication frame for the voice service. A medium controller(120) multiplexes the optical communication frame for the voice service and optical communication frames of the plurality of packet terminals, and transmits the same to an optical line.
    • 提供光网络中的语音电话用户接口方法和装置,通过仅传送活动POTS(普通老式电话业务)用户终端的数据来有效地使用网络资源。 SLIC(用户线接口电路)(112)提供POTS用户终端所需的功率,并且在POTS用户终端和光网络终端设备(100)之间收发呼叫信号。 编解码器(113)将多个语音终端的模拟信号转换成多个数字信号。 GEM(G-PON(千兆位无源光网络)封装方法)帧分配单元(115)将包括多个语音终端是否被激活的状态信息插入到用于语音服务的光通信帧中,并将 多个数字信号中的激活语音终端的数字信号转换成用于语音服务的光通信帧。 媒体控制器(120)多路复用用于语音业务的光通信帧和多个分组终端的光通信帧,并将其发送到光线路。
    • 66. 发明公开
    • 초음파 영상으로부터 대상 장기의 조잡도를 측정하는 방법및 장치
    • 用于从超声视觉图像测量目标组织中的无害水平的方法和装置
    • KR1020080041546A
    • 2008-05-13
    • KR1020070037956
    • 2007-04-18
    • 한국전자통신연구원
    • 정지욱이수열이정원유돈식김승환안영섭조준식
    • A61B8/00
    • A method and an apparatus for measuring a coarseness level in a target organ from an ultrasound visual image are provided conveniently to measure fibrosis of the organ at lost cost. A method for measuring a coarseness level in a target organ from an ultrasound visual image includes the steps of: obtaining an ultrasound area visual image of the organ(S210); (b) setting a target area for the ultrasound area visual image(S220); obtaining a quantified representative roughness level of the target area from distribution of luminance values of pixels within the target area(S230); and calculating the coarseness level of the organ corresponding to the quantified representative roughness level(S240).
    • 提供了一种用于从超声视觉图像测量靶器官中的粗糙度水平的方法和装置,其方便地以损失的方式测量器官的纤维化。 用于从超声视觉图像测量目标器官的粗糙度水平的方法包括以下步骤:获得器官的超声区域视觉图像(S210); (b)设定超声波区域视觉图像的目标区域(S220); 从目标区域内的像素的亮度分布中获得目标区域的量化代表粗糙度水平(S230); 并计算与量化的代表性粗糙度水平相对应的器官的粗糙度(S240)。
    • 68. 发明授权
    • 이중에너지감산촬영 영상을 이용한 폐 결절 부피 측정 방법및 장치
    • 使用双能量减影图像测量肺结节体积的方法和系统
    • KR100744555B1
    • 2007-08-01
    • KR1020060042013
    • 2006-05-10
    • 한국전자통신연구원
    • 이수열이정원김승환
    • A61B6/00
    • 본 발명은 이중에너지감산촬영 영상을 이용한 폐 결절 부피 측정 방법 및 장치에 관한 것이다. 본 발명에 따른 이중에너지감산촬영 영상을 이용한 폐 결절 부피 측정 방법은 (a) 흉부의 이중에너지감산촬영 영상을 획득하는 단계; (b) 상기 획득한 이중에너지감산촬영 영상에서 폐 결절 영역을 포함하는 관심 영역을 설정하는 단계; (c) 피팅 함수를 이용하여 상기 관심 영역 내의 상기 폐 결절 영역 주변의 그레이레벨 트렌드를 상기 폐 결절 영역으로 내삽하는 단계; 및 (d) 상기 폐 결절 영역에서 상기 내삽 결과를 차감함으로써 상기 폐 결절의 부피를 측정하는 단계를 포함한다. 본 발명에 따르면 이중에너지감산촬영 영상을 이용하여 폐 결절 부피를 측정하고자 할 때 이중에너지감산촬영 영상의 특성에 의하여 폐 결절 영역에서 폐 결절의 두께 정보를 얻고 폐 결절 영역의 경계선 오차를 피팅 함수를 이용하여 보정함으로써 폐 결절 부피를 정확하게 측정할 수 있다.
      이중에너지감산촬영 영상, 폐 결절, 부피, 그레이레벨 트렌드
    • 69. 发明公开
    • 생체신호를 측정하는 스마트 의복
    • 用于测量生理信号的智能服装
    • KR1020060117449A
    • 2006-11-17
    • KR1020050039229
    • 2005-05-11
    • 한국전자통신연구원
    • 김승환유창용
    • A61B5/0205A61B5/02A41D1/02
    • A smart garment for measuring physiologic signs is provided to improve exercise performance by analyzing information obtained by a measuring electrode and checking analyzed contents through a flexible display. In a smart garment for measuring physiologic signs, a pair of physiologic sign measuring electrodes(130,132) attached to an inside of a wrist part of clothes measure a physiologic sign. A pair of tightening units(140,142) tighten the wrist part of the clothes to closely adhere the physiologic sign measuring electrode to a wrist. A physiologic sign measuring module(110) attached to a lower arm of the clothes analyzes/displays physiologic sign measured by the physiologic sign measuring electrodes(130,132).
    • 提供了用于测量生理标志的智能服装,通过分析由测量电极获得的信息并通过柔性显示器检查分析的内容来改善运动性能。 在用于测量生理标志的智能服装中,附接到衣服腕部内部的一对生理信号测量电极(130,132)测量生理信号。 一对紧固单元(140,142)拧紧衣服的腕部,以将生理标志测量电极紧密地粘附到手腕上。 连接到衣服的下臂的生理符号测量模块(110)分析/显示由生理符号测量电极(130,132)测量的生理学符号。