会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明授权
    • Probe adapted to treat living tissue and actuation method of device
    • 探针适用于治疗活组织和装置的致动方法
    • US09149292B2
    • 2015-10-06
    • US13531745
    • 2012-06-25
    • Yukihiko SawadaNorihiro Yamada
    • Yukihiko SawadaNorihiro Yamada
    • A61H1/00A61B17/32
    • A61B17/320092
    • A probe which is configured for a treatment device which is configured to treat a body tissue using ultrasonic vibration, includes a base member which includes a base surface defined by a longitudinal direction and a width direction shorter than the longitudinal direction and which is a vibration-retardation member configured to hardly transmit the ultrasonic vibration, a waveguide main body which has a width smaller than a width of the base surface in a width direction, protrudes with respect to the base surface, and is extended along the longitudinal direction of the base surface, and an end effecter which is provided at a tip end portion of the waveguide main body and which is configured to treat the body tissue by the ultrasonic vibration transmitted through the waveguide main body.
    • 构造成用于使用超声波振动来治疗身体组织的治疗装置的探针包括:基部构件,其包括由长度方向和比长度方向短的宽度方向限定的基面, 延迟部件,其构造成难以透过超声波振动,宽度方向的宽度小于基面的宽度的波导主体相对于基面突出,沿着基面的长度方向延伸 以及末端执行器,其设置在波导管主体的前端部,并且被配置为通过穿过波导管主体的超声波振动来治疗身体组织。
    • 3. 发明申请
    • ULTRASONIC OPERATING APPARATUS
    • 超声操作装置
    • US20100057117A1
    • 2010-03-04
    • US12201005
    • 2008-08-29
    • Norihiro Yamada
    • Norihiro Yamada
    • A61B17/32
    • A61B17/320092
    • In an ultrasonic operating apparatus which is provided with an insertion portion including a sheath having a distal end and a proximal end and formed of a cylindrical body having at least partially flexibility and a procedure portion disposed at the distal end of the sheath and performing a procedure for resection of a body tissue, and an operation portion disposed at the proximal end of the sheath and operating the procedure portion, the procedure portion is provided with an ultrasonic transducer unit including an ultrasonic transducer generating ultrasonic vibration, a probe portion integrally coupled with the ultrasonic transducer and transmitted with ultrasonic waves output from the ultrasonic transducer, and a casing accommodating the ultrasonic transducer, a jaw caused to face the probe portion which configures a distal end of the ultrasonic transducer and including a supporting point held in a state that the supporting point is not moved to the probe portion axially relative to the probe portion and an operating point movable axially relative to the probe portion, the jaw being driven to be opened and closed to the probe portion, a cover member coupled to the distal end of the sheath and rotatably supporting the operating point of the jaw, and a supporting portion disposed at a distal end of the casing and supporting the supporting point of the jaw, the operation portion is provided with a movable handle moving the operating point of the jaw axially relative to the probe member via the sheath and the cover member and rotating the jaw about the supporting point to drive the jaw to be opened and closed to the probe portion, and the jaw is set in a state that the operating point and the supporting point are positioned on a line orthogonal to a center line of the probe portion in a state that the jaw has been closed to the probe portion.
    • 在设置有包括具有远端和近端的护套的插入部分的超声波操作装置中,并且由具有至少部分柔性的圆柱形主体和设置在护套的远端处的过程部分执行程序 用于切除身体组织,以及操作部,设置在护套的近端并操作手术部,操作部设置有包括产生超声波振动的超声波换能器的超声波换能器单元,与 超声波换能器,并且从所述超声波换能器输出的超声波传输,以及容纳所述超声波换能器的壳体,构成所述超声波换能器的远端构成的所述探针部的颚部,并且包括支撑点,所述支撑点保持在所述支撑 点不相对于轴向轴向移动到探针部分 所述探针部分和操作点相对于所述探针部分轴向移动,所述钳口被驱动以打开和关闭到所述探针部分;盖构件,其耦合到所述护套的远端并可旋转地支撑所述钳口的操作点, 以及支撑部,其设置在所述壳体的远端并且支撑所述钳口的支撑点,所述操作部设置有可移动手柄,所述可动手柄通过所述护套和所述盖构件相对于所述探针构件轴向地移动所述钳口的操作点 并且使夹爪围绕支撑点旋转以驱动夹爪打开和关闭到探针部分,并且钳口被设定在工作点和支撑点位于与 探针部分处于颌已经关闭到探针部分的状态。
    • 9. 发明授权
    • Bone measuring method
    • 骨测量方法
    • US06839457B1
    • 2005-01-04
    • US09744814
    • 2000-06-02
    • Yoshiaki AzumaYoshifumi HaradaNorihiro YamadaTsutomu MaedaTomohiro Ohta
    • Yoshiaki AzumaYoshifumi HaradaNorihiro YamadaTsutomu MaedaTomohiro Ohta
    • A61B6/00G06K9/00
    • A61B6/505Y10S128/922
    • This invention relates to a bone measurement method for measuring a bone shape, structure and architecture on the basis of the tomographic images of a test bone or joint, in more detail, to a bone measurement method characterized by having a template image extraction step for obtaining a wholly continued template image of a bone inner portion surrounded by a cortical bone from the binary image of a test bone cross section, and separating a cortical bone and a cancellous bone by the product of said template image and said binary image, as a bone measurement method which enables the automatic, high-speed and repeatable separation of a cortical bone and a cancellous bone on the basis of the binary image of a test bone or joint cross section and by which a separated three-dimensional image of the cortical bone portion and the cancellous bone portion is obtained as the bases for a non-invasive analyses of three-dimensional bone structure, bone strength, and the like.
    • 本发明涉及一种骨测量方法,用于基于测试骨或关节的断层图像来测量骨形状,结构和结构,更详细地涉及一种骨测量方法,其特征在于具有模板图像提取步骤,用于获得 作为骨骼内部部分的完整连续的模板图像,其由来自测试骨截面的二值图像的皮质骨包围,并且通过所述模板图像和所述二值图像的乘积将骨皮质和松质骨分离为骨骼 测量方法,其能够基于测试骨或关节横截面的二值图像来自动,高速和可重复地分离皮质骨和松质骨,并且通过其测量皮质骨部分的分离的三维图像 获得松质骨部分作为三维骨结构,骨强度等的无创分析的基础。