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    • 36. 发明授权
    • Ultrasonic treatment apparatus
    • 超音波治疗仪
    • US06193709B1
    • 2001-02-27
    • US09310646
    • 1999-05-12
    • Makoto MiyawakiToshihiko HashiguchiMitsumasa OkadaNorikiyo Shibata
    • Makoto MiyawakiToshihiko HashiguchiMitsumasa OkadaNorikiyo Shibata
    • A61B1732
    • A61B17/320092A61B2017/2825A61B2017/320088
    • An ultrasonic treatment apparatus according to the present invention comprises an ultrasonic transducer for generating ultrasonic vibration, a vibration transmitting member for transmitting the ultrasonic vibration generated by the ultrasonic transducer, the vibration transmitting member having a proximal end connected to the ultrasonic transducer and a distal end portion used to treat a living organism by means of the transmitted ultrasonic vibration, a grasping member opposed to the distal end portion of the vibration transmitting member and having a grasping surface capable of grasping the living organism in cooperation with the distal end portion, an operating mechanism for moving the grasping member between a closed position in which the grasping member engages the distal end portion of the vibration transmitting member and an open position in which the grasping member is separated from distal end portion, and a follow-up mechanism for driving or allowing the grasping member in the closed position to follow a deflective displacement of the distal end portion of the vibration transmitting member so that the substantially whole surface of the grasping surface of the grasping member contacts with the distal end portion of the vibration transmitting member.
    • 根据本发明的超声波处理装置包括用于产生超声波振动的超声波换能器,用于传递由超声波换能器产生的超声波振动的振动传递部件,所述振动传递部件具有连接到超声波换能器的近端和远端 用于通过传送的超声波振动来处理活体的部分;与振动传递部件的远端部分相对的抓握部件,具有能够与前端部一起抓住活体的抓握面, 用于使把持构件在其中抓握构件接合振动传递构件的远端部分的关闭位置和把持构件与远端部分分离的打开位置之间移动的机构,以及用于驱动或 允许抓握部件在 e关闭位置以跟随振动传递部件的远端部分的偏转位移,使得把持部件的把持表面的大致整个表面与振动传递部件的远端部分接触。
    • 37. 发明授权
    • Spin valve magnetoresistive head and manufacturing method therefor
    • 自旋阀磁阻头及其制造方法
    • US6123780A
    • 2000-09-26
    • US6977
    • 1998-01-14
    • Hitoshi KanaiKenichi AoshimaKenichiro YamadaMitsumasa OkadaEiji ShimizuJunichi Kane
    • Hitoshi KanaiKenichi AoshimaKenichiro YamadaMitsumasa OkadaEiji ShimizuJunichi Kane
    • G11B5/31G11B5/39C21D1/04
    • B82Y25/00B82Y10/00G11B5/3903G11B5/3967G11B2005/3996G11B5/3163
    • A method for manufacturing a spin valve GMR head is describe in which a fixed magnetic layer of the head may maintain magnetization in a desired orientation. In one aspect of the invention, the method comprises steps of: forming a magnetic film including at least a free magnetic layer, a non-magnetic metallic layer, a fixed magnetic layer, and a magnetic domain control layer; subjecting the magnetic film to a first heat treatment under a magnetic field to enhance magnetic anisotropy of the free magnetic layer; and subjecting the magnetic film to a second heat treatment under a magnetic field and at a higher temperature than the maximum temperature applied in the processes that precede the second heat treatment, to fix the magnetization in the fixed magnetic layer. In anther aspect of the invention, the method comprises steps of: forming a magnetic film including a free magnetic layer, a non-magnetic metallic layer, a fixed magnetic layer, and a magnetic domain control layer; subjecting the magnetic film to a first heat treatment under a magnetic field to fix the magnetization in the fixed magnetic layer; subjecting the magnetic film to a second heat treatment under a magnetic field to enhance magnetic anisotropy of the free magnetic layer; and subjecting the magnetic film to a third heat treatment in the absence of an externally applied magnetic field.
    • 描述了用于制造自旋阀GMR头的方法,其中磁头的固定磁性层可以将磁化保持在期望的取向。 在本发明的一个方面,所述方法包括以下步骤:形成至少包括自由磁性层,非磁性金属层,固定磁性层和磁畴控制层的磁性膜; 在磁场下对磁性膜进行第一次热处理以提高自由磁性层的磁各向异性; 并且在磁场和比在第二热处理之前的工序中施加的最高温度更高的温度下对磁性膜进行第二次热处理,以将磁化固定在固定磁性层中。 在本发明的另一方面,该方法包括以下步骤:形成包括自由磁性层,非磁性金属层,固定磁性层和磁畴控制层的磁性膜; 对磁性膜进行磁场的第一次热处理,以固定在固定磁性层中的磁化强度; 在磁场下对磁性膜进行第二次热处理,以提高自由磁性层的磁各向异性; 并且在没有外部施加的磁场的情况下对磁性膜进行第三次热处理。
    • 38. 发明授权
    • Ultrasonic treatment instrument
    • 超声波治疗仪
    • US5906628A
    • 1999-05-25
    • US842637
    • 1997-04-16
    • Makoto MiyawakiMitsumasa Okada
    • Makoto MiyawakiMitsumasa Okada
    • A61B17/00A61B17/28A61B17/32A61B18/14
    • A61B17/320092A61B18/1445A61B2017/00473A61B2017/00849A61B2017/00853A61B2017/2825A61B2017/292A61B2017/320076A61B2017/320088
    • An ultrasonic treatment instrument includes an ultrasonic transducer for generating ultrasonic oscillation, a hand piece containing the ultrasonic transducer, and a probe having a proximal end portion connected to the ultrasonic transducer and a distal end portion to which the ultrasonic oscillation of the ultrasonic transducer is transmitted. A sheath covers the probe and has a front end portion extending toward the distal end portion of the probe and a rear end portion connected to the hand piece. A hook-shaped treatment section is provided at the distal end portion of the probe and has a hook portion bent which is substantially perpendicular to an axis of the sheath and an axial body extending from a proximal end of the bent hook portion. The axial body is eccentric with respect to the axis of the sheath, and an operating section is provided which moves the sheath and the probe relative to each other along the axis of the sheath to thereby enable an organic tissue to be held between the hook-shaped treatment section and the front end portion of the sheath.
    • 一种超声波处理器具具有超声波振荡用超声波振子,含有超声波振子的手部件和具有连接于该超声波振子的基端部的探头和超声波振子的超声波振荡的远端部 。 护套覆盖探针并且具有朝向探针的远端部分延伸的前端部分和连接到手持件的后端部分。 钩状处理部设置在探头的远端部分,并且具有基本上垂直于护套的轴线的弯曲部的钩部和从弯曲钩部的近端延伸的轴向体。 轴向体相对于护套的轴线是偏心的,并且提供了操作部分,该操作部分使护套和探针相对于护套的轴线相对移动,从而使有机组织能够保持在钩状体之间, 形状处理部和护套的前端部。