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
    • 61. 发明授权
    • Implantable cardiac stimulation device providing accelerated defibrillation delivery and method
    • 植入式心脏刺激装置提供加速的除颤输送和方法
    • US07171268B1
    • 2007-01-30
    • US10746298
    • 2003-12-24
    • Mark W. KrollJames E. Brewer
    • Mark W. KrollJames E. Brewer
    • A61N1/00
    • A61N1/3621A61N1/3925A61N1/3962
    • An implantable cardiac stimulation device provides accelerated delivery of defibrillation therapy to a patient's heart. The device includes a sensing circuit that provides right and left heart cardiac activity signals and a detector that detects an accelerated arrhythmia of the patient's heart and establishes a plurality of accelerated cardiac rate zones including a fibrillation rate zone and at least one intermediate rate zone. A classifier responsive to the right and left heart cardiac activity signals classifies an accelerated arrhythmia as one of fibrillation and tachycardia responsive to the detector detecting an accelerated arrhythmia having a cardiac rate within the at least one intermediate rate zones. A therapy circuit applies defibrillation to the heart responsive to the classifier classifying an accelerated arrhythmia as fibrillation and anti-tachycardia pacing to the heart responsive to the classifier classifying an accelerated arrhythmia as tachycardia.
    • 植入式心脏刺激装置提供加速递送除颤疗法给患者的心脏。 该装置包括提供左心心脏活动信号和左心脏心脏活动信号的感测电路和检测患者心脏的加速心律不齐的检测器,并建立包括原纤化速率区和至少一个中间速率区的多个加速心率区。 响应于左心心脏活动信号和左心脏心脏活动信号的分类器将加速心律不齐作为对颤动和心动过速之一进行分类,其响应于检测器检测到在至少一个中间速率区域内具有心率的加速心律失常。 治疗电路根据分类器对心脏进行除颤,该加速心律失常将加速心律失常归类为心律失常,抗心动过速起搏响应分类器将加速心律失常归类为心动过速。
    • 62. 发明授权
    • Flexible joint for well logging instruments
    • 用于测井仪器的柔性接头
    • US06484801B2
    • 2002-11-26
    • US09810985
    • 2001-03-16
    • James E. BrewerBorislav TchakarovPaul G. JunghansJames C. Hunziker
    • James E. BrewerBorislav TchakarovPaul G. JunghansJames C. Hunziker
    • E21B1720
    • E21B17/028E21B17/04E21B47/01
    • A universal joint between adjacent, electrically connected instrument housings for downhole well operations allow the connected housings to bend longitudinally as required to traverse an arced section of a well bore but does not permit relative elongation or twisting about the longitudinal axis of the housings. In one embodiment, a fluid impermeable open passage space at atmospheric pressure surrounds electrical signal carriers linking the instrument circuitry within the two housings. The passage is constructed as a high-pressure flexible bellows or as a braided or spiral wound high-pressure fluid hose. In another embodiment, a fluid impermeable sheath surrounds the signal carriers and encapsulates the signal carriers by a resilient solid. The articulation structure comprises a Cardan-type of universal joint wherein two fingers project longitudinally from the end of each of the housings. The fingers are meshed and pivotally joined to respective spindles projecting radially from the open center of a ring spyder. The protective bellows, hose or resilient compound filled sheath is secured at opposite ends to bore plugs in the respective instrument housings. Between the instrument housings, the hose, bellows or filled sheath passes through the open center of the spyder ring.
    • 相邻的电气连接的用于井下井操作的仪器壳体之间的万向接头允许连接的壳体根据需要纵向弯曲以穿过井眼的弧形部分,但不允许围绕壳体的纵向轴线的相对伸长或扭转。 在一个实施例中,在大气压下的流体不可渗透的开放通道空间包围连接两个壳体内的仪器电路的电信号载体。 通道构造为高压柔性波纹管或编织或螺旋缠绕的高压流体软管。 在另一个实施例中,流体不可渗透的护套围绕信号载体并通过弹性固体封装信号载体。 铰接结构包括万向节万向接头,其中两个手指从每个壳体的端部纵向突出。 指状物被啮合并且枢转地连接到从环形螺旋桨的开放中心径向突出的相应主轴。 保护波纹管,软管或弹性复合物填充的护套固定在相对的两端,以在相应的仪器壳体内插入塞子。 在仪器外壳之间,软管,波纹管或填充的护套穿过了Spyder环的开放中心。
    • 63. 发明授权
    • Method for determining the second phase of external defibrillator devices
    • 用于确定外部除颤器装置的第二相的方法
    • US5968080A
    • 1999-10-19
    • US886736
    • 1997-07-01
    • James E. BrewerGary B. StendahlKenneth F. Olson
    • James E. BrewerGary B. StendahlKenneth F. Olson
    • A61N1/39
    • A61N1/3937
    • A method for determining an optimal transchest external defibrillation waveform which, when applied through a plurality of electrodes positioned on a patient's torso will produce a desired response in the patient's cardiac cell membranes. The method includes the steps of providing a quantitative model of a defibrillator circuit for producing external defibrillation waveforms, the quantitative model of a patient includes a chest component, a heart component, a cell membrane component and a quantitative description of the desired cardiac membrane response function. Finally, a quantitative description of a transchest external defibrillation waveform that will produce the desired cardiac membrane response function is computed. The computation is made as a function of the desired cardiac membrane response function, the patient model and the defibrillator circuit model.
    • 一种用于确定最佳交织外部除颤波形的方法,当通过位于患者躯体上的多个电极施加时,其将在患者的心脏细胞膜中产生期望的响应。 该方法包括提供用于产生外部除颤波形的除颤器电路的定量模型的步骤,患者的定量模型包括胸部组分,心脏组分,细胞膜组分和所需心脏膜响应函数的定量描述 。 最后,计算将产生期望的心脏膜响应函数的经外科除颤波形的定量描述。 作为所需心脏膜响应函数,患者模型和除颤器电路模型的函数进行计算。
    • 64. 发明授权
    • Method of designing external defibrillator waveforms
    • 设计外部除颤器波形的方法
    • US5891173A
    • 1999-04-06
    • US837224
    • 1997-04-10
    • James E. Brewer
    • James E. Brewer
    • A61N1/39
    • A61N1/39A61N1/3906A61N1/3912A61N1/3925
    • A method for determining an optimal transchest external defibrillation waveform which, when applied through a plurality of electrodes positioned on a patient's torso will produce a desired response in the patient's cardiac cell membranes. The method includes the steps of providing a quantitative model of a defibrillator circuit for producing external defibrillation waveforms, the quantitative model of a patient includes a chest component, a heart component, a cell membrane component and a quantitative description of the desired cardiac membrane response function. Finally, a quantitative description of a transchest external defibrillation waveform that will produce the desired cardiac membrane response function is computed. The computation is made as a function of the desired cardiac membrane response function, the patient model and the defibrillator circuit model.
    • 一种用于确定最佳交织外部除颤波形的方法,当通过位于患者躯体上的多个电极施加时,其将在患者的心脏细胞膜中产生期望的响应。 该方法包括提供用于产生外部除颤波形的除颤器电路的定量模型的步骤,患者的定量模型包括胸部组分,心脏组分,细胞膜组分和所需心脏膜响应函数的定量描述 。 最后,计算将产生期望的心脏膜响应函数的经外科除颤波形的定量描述。 作为所需心脏膜响应函数,患者模型和除颤器电路模型的函数进行计算。
    • 66. 发明授权
    • Compaction monitoring instrument system
    • 压实监测仪系统
    • US5705812A
    • 1998-01-06
    • US656503
    • 1996-05-31
    • James E. BrewerRichard R. PemperIzhar AhmadRandy Gold
    • James E. BrewerRichard R. PemperIzhar AhmadRandy Gold
    • E21B47/00E21B47/01E21B47/09E21B49/00G01V5/04G01V5/00
    • E21B49/006E21B47/00E21B47/01E21B47/0905E21B49/00
    • An apparatus and method for detecting the location of subsurface markers in a formation proximate to a borehole. The apparatus includes marker detectors in a housing having at least two housing sections attached in an initial orientation. The distance between the detectors is measured under controlled conditions with a calibration bar. The initial attached orientation between the housing sections is identified with a calibrator, and deviations from the initial attached orientation are identified by the calibrator after the housing sections are detached and reattached. The calibrator permits well site corrections to be made to the housing sections without recalibration. Gauges permit corrections for temperature and pressure fluctuations, and the corrected distances between the housing detectors is computed. Detectors in the housing generate signals when each detector is proximate to a marker in the formation, and such signals can be processed to identify the elevation of a marker in the borehole, or the distance between markers in the borehole, to determine formation compaction or settlement. In an apparatus having two detectors separated by a spacer, flexible retainers can be positioned between each detector and the spacer to permit thermal expansion or contraction of the detectors relative to the spacer.
    • 一种用于检测靠近钻孔的地层中地下标记的位置的装置和方法。 该装置包括在壳体中的标记检测器,其具有以初始取向附接的至少两个壳体部分。 检测器之间的距离在受控条件下用校准条进行测量。 在壳体部分之间的初始附接取向由校准器识别,并且在拆卸和重新连接壳体部分之后,通过校准器识别与初始附接取向的偏差。 校准器允许在不重新校准的情况下对外壳部分进行良好的现场校正。 仪表允许校正温度和压力波动,并且计算外壳检测器之间的校正距离。 当每个检测器接近地层中的标记物时,壳体中的探测器产生信号,并且可以处理这些信号以识别井眼中的标记物的高度或井眼中的标记之间的距离,以确定地层压实或沉降 。 在具有由隔离物隔开的两个检测器的设备中,柔性保持器可以位于每个检测器和间隔件之间,以允许检测器相对于间隔件的热膨胀或收缩。
    • 68. 发明授权
    • Method and apparatus for generating biphasic waveforms in an implantable
defibrillator
    • 用于在可植入除颤器中产生双相波形的方法和装置
    • US5534015A
    • 1996-07-09
    • US321540
    • 1994-10-11
    • Mark W. KrollJames E. Brewer
    • Mark W. KrollJames E. Brewer
    • A61N1/39H01M2/10H01M16/00
    • A61N1/3956A61N1/3906A61N1/3912H01M16/00H01M2/1066
    • An implantable defibrillator system for generating biphasic waveforms comprises a self-contained human implantable housing containing a capacitor system for storing an electrical charge, a power supply for charging the capacitor system, and a controller for selectively discharging the electrical charge as a biphasic countershock to be delivered through at least two electrodes in response to a sensing of a cardiac dysrhythmia in the human patient. The controller includes a system for controlling a first duration of a first phase of the biphasic countershock such that the discharge of the electrical charge is of a first polarity and the first duration is variable and a system for controlling a second duration of a second phase of the biphasic countershock such that the discharge of the electrical charge is of a second polarity that is opposite from the first polarity and the second duration is fixed.
    • 用于产生双相波形的可植入除颤器系统包括:包含用于存储电荷的电容器系统的独立人类可植入壳体,用于对电容器系统充电的电源以及用于将电荷选择性地放电为两相反相的控制器 响应于人类患者心脏心律失常的感测,通过至少两个电极递送。 控制器包括用于控制双相反冲的第一相位的第一持续时间的系统,使得电荷的放电具有第一极性,并且第一持续时间是可变的,并且用于控制第二相的第二持续时间的系统 两相反相,使得电荷的放电具有与第一极性相反的第二极性,并且第二持续时间是固定的。
    • 69. 发明授权
    • Digitally controlled audio amplifier with voltage limiting
    • 带电压限制的数字音频放大器
    • US5255324A
    • 1993-10-19
    • US633919
    • 1990-12-26
    • James E. BrewerPeter S. AbowdFrank W. Raffaeli
    • James E. BrewerPeter S. AbowdFrank W. Raffaeli
    • H03G9/02H03G11/00H03G3/00H03G9/00
    • H03G9/005H03G11/00H03G9/02
    • An audio system employs a microcontroller to supervise the operation of an audio system including a digitally controlled audio processor which controls at least a wideband and a narrowband gain for the audio signal. The narrowband gain may preferably comprise a bass boost to the audio signal. Clipping distortion of the audio signal is avoided by sensing clipping in a power amplifier and reducing the digital commands for the wideband gain and the narrowband gain according to a method which reduces narrowband gain in preference to the wideband gain. After the narrowband gain is reduced to a predetermined gain, the wideband gain may be reduced if clipping persists. When clipping ceases, the narrowband gain is likewise restored to its original gain in preference to restoring of the wideband gain.
    • 音频系统采用微控制器来监督音频系统的操作,包括数字控制的音频处理器,该音频处理器至少控制音频信号的宽带和窄带增益。 窄带增益可以优选地包括对音频信号的低音提升。 通过感测功率放大器中的限幅并且根据减小窄带增益优先于宽带增益的方法减少用于宽带增益和窄带增益的数字命令来避免音频信号的剪切失真。 在窄带增益减小到预定增益之后,如果削波持续,则宽带增益可能会降低。 当削波停止时,窄带增益同样恢复到其原始增益,优于恢复宽带增益。