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    • 2. 发明授权
    • Hands-free operator-independent transcranial ultrasound apparatus and methods
    • 免提操作者独立经颅超声仪和方法
    • US08603014B2
    • 2013-12-10
    • US13209408
    • 2011-08-14
    • Anthony John AllemanWilliam BarnardRandal Lee Radford
    • Anthony John AllemanWilliam BarnardRandal Lee Radford
    • A61H1/00
    • A61N7/00A61B8/4427A61B2017/00734A61N2007/0078A61N2007/0095
    • Disclosed is a “hands-free”, autonomously operating, battery-powered apparatus with electronic programmable actuation circuitry for non-invasive ultrasonic treatment of ischemic stroke, microatheromas of the cerebral vasculature, intracranial hypertension, and other cerebrovascular pathologies such as hypoperfusion associated with migraine. The apparatus is provided with registration members to facilitate stereotactic placement of the headset on the skull with respect to target intracranial anatomy. Once fitted in place on the skull and activated, the device does not require clinical intervention during operation; does not need skilled technical adjustment of the waveform patterns; and achieves therapeutic results with power consumption of less than 400 mAmp-hr, thus permitting extended portable operation without external power and eliminating the need for assisted cooling. Using a device of the invention, transcranial ultrasound may be self-administered. The device has application in therapeutic methods, such as methods for treating stroke or migraine, for non-invasively augmenting drug action, and for release or dispersal of endogenous neurovascular mediators.
    • 公开了一种“免提”自主操作的电池供电装置,其具有用于非侵入性超声治疗缺血性卒中的电子可编程驱动电路,脑血管系统的微动脉,颅内高压和其他脑血管病变,例如与偏头痛相关的灌注不足 。 该装置设置有对准构件,以便于相对于目标颅内解剖结构将耳机的立体定向放置在头骨上。 一旦安装在颅骨上的位置并被激活,该装置在手术期间不需要临床干预; 不需要熟练的技术调整波形图案; 并实现功耗小于400 mAmp-hr的治疗效果,从而延长便携操作而无需外部电源,无需辅助冷却。 使用本发明的装置,经颅超声可以是自我施用的。 该装置可用于治疗方法,例如治疗中风或偏头痛的方法,用于非侵入性增加药物作用,以及释放或分散内源性神经血管介质。
    • 5. 发明申请
    • Hands-Free Operator-Independent Transcranial Ultrasound Apparatus and Methods
    • 免提操作者独立经颅超声设备和方法
    • US20120083718A1
    • 2012-04-05
    • US13209408
    • 2011-08-14
    • Anthony J. AllemanWilliam BarnardRandal Lee Radford
    • Anthony J. AllemanWilliam BarnardRandal Lee Radford
    • A61N7/00
    • A61N7/00A61B8/4427A61B2017/00734A61N2007/0078A61N2007/0095
    • Disclosed is a “hands-free”, autonomously operating, battery-powered apparatus with electronic programmable actuation circuitry for non-invasive ultrasonic treatment of ischemic stroke, microatheromas of the cerebral vasculature, intracranial hypertension, and other cerebrovascular pathologies such as hypoperfusion associated with migraine. The apparatus is provided with registration members to facilitate stereotactic placement of the headset on the skull with respect to target intracranial anatomy. Once fitted in place on the skull and activated, the device does not require clinical intervention during operation; does not need skilled technical adjustment of the waveform patterns; and achieves therapeutic results with power consumption of less than 400 mAmp-hr, thus permitting extended portable operation without external power and eliminating the need for assisted cooling. Using a device of the invention, transcranial ultrasound may be self-administered. The device has application in therapeutic methods, such as methods for treating stroke or migraine, for non-invasively augmenting drug action, and for release or dispersal of endogenous neurovascular mediators.
    • 公开了一种“免提”自主操作的电池供电装置,其具有用于非侵入性超声治疗缺血性卒中的电子可编程驱动电路,脑血管系统的微动脉,颅内高压和其他脑血管病变,例如与偏头痛相关的灌注不足 。 该装置设置有对准构件,以有助于相对于目标颅内解剖结构将耳机的立体定位放置在头骨上。 一旦安装在颅骨上的位置并被激活,该装置在手术期间不需要临床干预; 不需要熟练的技术调整波形图案; 并实现功耗小于400 mAmp-hr的治疗效果,从而延长便携操作而无需外部电源,无需辅助冷却。 使用本发明的装置,经颅超声可以是自我施用的。 该装置可用于治疗方法,例如治疗中风或偏头痛的方法,用于非侵入性增加药物作用,以及释放或分散内源性神经血管介质。
    • 9. 发明授权
    • System for aiming ultrasonic bladder instruments
    • 瞄准超声波膀胱器械的系统
    • US06884217B2
    • 2005-04-26
    • US10607919
    • 2003-06-27
    • Gerald J. McMorrowWilliam Barnard
    • Gerald J. McMorrowWilliam Barnard
    • A61B8/08A61B8/00
    • A61B5/204A61B8/08A61B8/483
    • The system includes a function for generating a plurality of ultrasound scan planes, each separated by a selected angle, to produce a scan cone having an ultrasound scan cone boundary for scanning the bladder, or other organ. The amount, if any, of the scanned bladder which extends beyond the ultrasound scan cone boundary is then determined, as well as the percentage of the bladder within an inner cone boundary relative to that within the ultrasound cone boundary. A signal is provided, specifically illumination of one of four orthogonal arrows in a display, indicating the direction that the transducer should be moved in order to more accurately center the bladder within the ultrasound scan cone boundary. Re-aiming of the transducer is considered necessary when the ratio of the percentages is less than 70%, while if the percentage ratio is greater than 70%, aiming is optional.
    • 该系统包括用于产生多个超声扫描平面的功能,每个超声扫描平面以选定角度分隔,以产生具有用于扫描膀胱或其他器官的超声波扫描锥边界的扫描锥体。 然后确定延伸超出超声波扫描锥边界的扫描囊的量(如果有的话)以及相对于超声波锥边界内的内锥边界内的膀胱的百分比。 提供信号,特别是在显示器中的四个正交箭头之一的照明,指示换能器应该被移动的方向,以更准确地将膀胱居中在超声扫描锥边界内。 当百分比的比例小于70%时,传感器的重新瞄准被认为是必要的,而如果百分比率大于70%,瞄准是可选的。
    • 10. 发明授权
    • Ultrasound imaging probe and method
    • 超声成像探头和方法
    • US08206307B2
    • 2012-06-26
    • US12948622
    • 2010-11-17
    • William BarnardDavid Bartholomew Shine
    • William BarnardDavid Bartholomew Shine
    • A61B8/14
    • A61B8/4455A61B5/204A61B8/08A61B8/4281A61B8/4461A61B8/4472A61B8/461A61B8/483A61B8/56
    • An ultrasound probe is provided having an ultrasound module received in a housing thereof, the ultrasound module including a plurality of transducers longitudinally spaced apart within the housing and a control and processing system electrically coupled to the transducers for collecting ultrasonic data representative of a target biological tissue when the ultrasound probe is in operation. A motor is likewise received in the housing to rotate, oscillate and/or translate the ultrasound module in a data collection mode. Coupling fluid is received in the housing to at least partially surround the ultrasound module and the motor. A method of obtaining ultrasonic data representative of a target biological tissue, such as a bladder, for diagnostic purposes is also provided.
    • 提供超声波探头,其具有容纳在其外壳中的超声模块,所述超声波模块包括在所述壳体内纵向间隔开的多个换能器以及电耦合到所述换能器的控制和处理系统,用于收集代表靶生物组织的超声数据 当超声波探头工作时。 电机同样被接收在壳体中以在数据收集模式下旋转,振荡和/或平移超声模块。 耦合流体被容纳在壳体中以至少部分地围绕超声模块和电动机。 还提供了用于诊断目的的获得表示目标生物组织如膀胱的超声波数据的方法。