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    • 71. 发明专利
    • Access trouble detection system in dialysis
    • 访问故障检测系统
    • JP2005040518A
    • 2005-02-17
    • JP2003280230
    • 2003-07-25
    • Toin Gakuen学校法人桐蔭学園
    • SATO TOSHIOTAKEUCHI SHINICHITSUJI KIICHIKAWASHIMA NORIMICHIAGISHI TETSUZOAKAMATSU MAKOTO
    • A61B5/00A61M1/14
    • PROBLEM TO BE SOLVED: To provide a system capable of always providing an accurate evaluation result to a bloodstream state of blood access in dialysis.
      SOLUTION: The blood access trouble detection system comprises a shunt sound sensor 1 composed of an acceleration sensor mounted to the skin surface corresponding to a shunt part to convert the acceleration of vibration caused by shunt sound, into voltage to output it; a primary amplifier 2 for amplifying the voltage outputted from the sensor 1; a band-pass filter 3 having a frequency range of the shunt sound as a passing band and damping noise mixed in an electric signal outputted from the amplifier 2; a secondary amplifier 4 for amplifying again the electric signal whose noise is damped by the band-pass filter 3; an A-D converter 5 for converting the electric signal amplified by the secondary amplifier 4, from an analog signal to a digital signal; and a determining computer 6 for making a frequency analysis of the A-D converted electric signal to determine the relation between the frequency and the output voltage.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种能够始终为血液透析血液状态提供准确的评价结果​​的系统。 解决方案:血液通路故障检测系统包括:分流声音传感器1,其由安装到与分流部分相对应的皮肤表面的加速度传感器构成,以将由分流声音引起的振动的加速度转换成电压以输出; 用于放大从传感器1输出的电压的初级放大器2; 具有作为通带的分流声音的频率范围的带通滤波器3和从放大器2输出的电信号中混合的阻尼噪声; 副放大器4,用于再次放大噪声被带通滤波器3阻尼的电信号; 用于将由次级放大器4放大的电信号从模拟信号转换成数字信号的A-D转换器5; 以及用于对A-D转换的电信号进行频率分析以确定频率和输出电压之间的关系的确定计算机6。 版权所有(C)2005,JPO&NCIPI
    • 74. 发明专利
    • Affected part tissue excising apparatus
    • 有影响的部分组织装备
    • JP2003038517A
    • 2003-02-12
    • JP2001227785
    • 2001-07-27
    • Toin Gakuen学校法人桐蔭学園
    • HAYAKAWA YOSHINORIHONBO YOSHITAKAOCHIAI MAKOTO
    • A61B17/221A61B1/00A61B17/22A61B18/12
    • PROBLEM TO BE SOLVED: To provide an affected part tissue excising apparatus capable of simply and safely handling by using a machinery material and a material which can be easily acquired.
      SOLUTION: The affected part tissue excising apparatus comprises an ultrasonic endoscope and a needling unit for excising an affected part tissue. In this apparatus, the needing element for excising the tissue is formed of a heat resistant heating wire material for heating by a high frequency. The needling element has a linear support member, and a linearly cauterizing member supported at one end to the support member and slidably attached to the support member while the cauterizing member is partly curving. The cauterizing member has at least two curving points between both ends and can enlarge or contract a rotary arriving area of a curved outer edge at the support member as a center by sliding along the support member.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题:提供能够通过使用机械材料和易于获得的材料简单且安全地处理的受影响部件组织切除装置。 解决方案:受影响部位组织切除装置包括用于切除受影响部位组织的超声波内窥镜和针刺单元。 在该装置中,用于切除组织的需要元件由用于高频加热的耐热加热丝材料形成。 针刺元件具有线性支撑构件,并且线状烧灼构件在其一端支撑到支撑构件并且在烧灼构件部分弯曲时可滑动地附接到支撑构件。 烧灼构件在两端之间具有至少两个弯曲点,并且可以沿着支撑构件滑动,以支撑构件为中心来扩大或收缩弯曲外边缘的旋转到达区域。
    • 76. 发明专利
    • ULTRASONIC CONTRAST MEDIUM
    • JPH11269100A
    • 1999-10-05
    • JP10839798
    • 1998-03-17
    • TOIN GAKUEN
    • KAWAN STANTWATARAI HIROSHI
    • A61K49/00
    • PROBLEM TO BE SOLVED: To provide an ultrasonic contrast medium comprising fine bubbles and used for reinforcing the contrast of a diagnostic image on ultrasonic image diagnosis, capable of preventing the coagulation of the bubbles and being stably preserved for a long period by controlling the surface potential of the bubbles. SOLUTION: This ultrasonic contrast medium comprises fine bubbles 1 coated with a surfactant. Therein, the surface potential 3 of the bubbles can be controlled by the adsorption of an ionic surfactant 2 to the surfaces of the bubbles 1. The anionic surfactant adsorbed to the surfaces preferably includes carboxylic acid salts, sulfonic acid salts, sulfate ester salts, phosphate ester salts and phosphonic acid salts, and the cationic surfactant adsorbed to the surfaces of the bubbles preferably includes amine salts, quaternary ammonium salts, phosphonium salts and sulfonium salts.