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    • 35. 发明授权
    • Ultrasound heater-agitator for thermal tissue treatment
    • 用于热组织治疗的超声加热器 - 搅拌器
    • US08287472B2
    • 2012-10-16
    • US12748964
    • 2010-03-29
    • Isaac OstrovskyVictor ShukhatJamie Li
    • Isaac OstrovskyVictor ShukhatJamie Li
    • A61H1/00
    • A61N7/00A61B2017/4216A61N2007/0043
    • A method and a device to deliver heat and mechanical agitation in a liquid with ultrasound. The method and device may be used for thermal treatment of tissue within a living body, the device comprises a housing extending from a distal end to a proximal end, the housing including a first opening exposing an inner chamber of the device to the fluid, the housing being sized and shaped for insertion to a target location within the body and a piezoelectric element fixed within the housing and generating pulses of ultrasound energy directed substantially along a longitudinal axis of the housing in combination with first and second deflecting elements, the first deflecting element being mounted within the housing on a distal side of the piezoelectric element, the second deflecting element being mounted within the housing on a proximal side of the piezoelectric element, the first and second deflecting elements deflecting a portion of ultrasound energy from the piezoelectric element away from the axis of the housing so that the deflected ultrasound energy exits the housing via the first opening.
    • 用超声波在液体中传送热和机械搅拌的方法和装置。 该方法和装置可以用于对生物体内的组织进行热处理,该装置包括从远端延伸到近端的壳体,该壳体包括将该装置的内腔暴露于流体的第一开口, 壳体的尺寸和形状用于插入到主体内的目标位置和固定在壳体内的压电元件,并且产生基本上沿着壳体的纵向轴线指向的第一和第二偏转元件组合的超声能量的脉冲,第一偏转元件 被安装在所述壳体内的所述压电元件的远端侧,所述第二偏转元件安装在所述壳体内的所述压电元件的近侧上,所述第一偏转元件和所述第二偏转元件偏转所述压电元件的一部分超声能量, 壳体的轴线,使得偏转的超声能量经由冷杉离开壳体 开门
    • 38. 发明授权
    • Medical scanning system and related method of scanning
    • 医疗扫描系统及相关扫描方法
    • US08099157B2
    • 2012-01-17
    • US12855074
    • 2010-08-12
    • Isaac Ostrovsky
    • Isaac Ostrovsky
    • A61B1/07G02B26/00
    • A61B5/6852A61B1/0008A61B1/00096A61B1/00172A61B5/0062A61B5/0066A61B5/0084G01N21/4795
    • The present invention is directed to a scanning system that uses uniform rotary motion of an optical reflector to create reciprocal linear scanning. The system converts uniform rotation into uniform longitudinal scanning. The system thereby creates mechanical reciprocal linear scanning free of reciprocally moving mechanical parts common in conventional scanning systems. In a preferred embodiment of the invention, the scanning system is incorporated within an imaging catheter for medical scanning. The optical reflector is rotatable and includes a spiral reflecting portion. The spiral reflecting portion may be a single uniform reflecting surface or may include several reflection surfaces arranged in a spiral configuration.
    • 本发明涉及一种使用光学反射器的均匀旋转运动来产生相互线性扫描的扫描系统。 系统将均匀旋转转换为均匀的纵向扫描。 因此,该系统产生机械的往复线性扫描,不存在常规扫描系统中常见的往复运动的机械部件。 在本发明的优选实施例中,扫描系统被结合在用于医学扫描的成像导管内。 光反射器是可旋转的并且包括螺旋反射部分。 螺旋反射部分可以是单个均匀的反射表面,或者可以包括以螺旋构造布置的多个反射表面。