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    • 2. 发明申请
    • Single acquisition system for electrophysiology and hemodynamic physiological diagnostic monitoring during a clinical invasive procedure
    • 在临床侵入性手术期间用于电生理学和血液动力学生理诊断监测的单次采集系统
    • US20070276196A1
    • 2007-11-29
    • US11434049
    • 2006-05-15
    • Brenda DonaldsonSachin Vadodaria
    • Brenda DonaldsonSachin Vadodaria
    • A61B5/00
    • A61B5/0002A61B5/0215A61B5/022A61B5/028A61B5/0402A61B5/145
    • A single acquisition diagnostic monitoring system for monitoring electrophysiology data and hemodynamic physiological data from a subject of interest. The system comprises a first module configured to receive the electrophysiology data via a plurality of first sensors coupled to the subject of interest. The system also comprises a second module configured to receive the hemodynamic physiological data via a plurality of second sensors coupled to the subject of interest. The system also comprises a base unit coupled to each module and configured to supply electrical power to each module, to receive the data from each module, and to synchronize the data from each module together. The system also comprises a processor coupled to the base unit and configured to receive the synchronized electrophysiology and hemodynamic physiological data from the base unit, combine the synchronized data into a single database, and transmit the synchronized processed data for further use.
    • 用于监测来自感兴趣的受试者的电生理学数据和血液动力学生理数据的单个采集诊断监测系统。 该系统包括被配置为经由耦合到感兴趣对象的多个第一传感器接收电生理学数据的第一模块。 该系统还包括被配置为经由耦合到感兴趣对象的多个第二传感器接收血流动力学生理数据的第二模块。 该系统还包括耦合到每个模块并被配置为向每个模块提供电力,从每个模块接收数据并使每个模块的数据同步在一起的基本单元。 该系统还包括耦合到基本单元并被配置为从基本单元接收同步的电生理学和血液动力学生理数据的处理器,将同步的数据组合成单个数据库,并且发送同步的处理数据以供进一步使用。
    • 3. 发明申请
    • Physiology workstation with real-time fluoroscopy and ultrasound imaging
    • 生理工作站具有实时荧光透视和超声成像
    • US20070016029A1
    • 2007-01-18
    • US11182910
    • 2005-07-15
    • Brenda DonaldsonIsrael RazSachin Vadodaria
    • Brenda DonaldsonIsrael RazSachin Vadodaria
    • A61B8/00
    • A61B6/12A61B5/0215A61B5/0245A61B5/7475A61B6/03A61B6/5247A61B6/541A61B8/12A61B8/14A61B8/463A61B8/465A61B8/467A61B8/468A61B8/469A61B8/5238A61B8/565A61B8/582
    • A physiology workstation is provided that comprises an physiology input configured to receive physiology signals from at least one of an intracardiac (IC) catheter inserted in a subject and surface ECG leads provided on the subject. The physiology signals are obtained during a procedure. A video input is configured to receive image frames, in real-time during the procedure. The image frames contain diagnostic information representative of data samples obtained from the subject during the procedure. A control module controls physiology operations based on user inputs. A display module is controlled by the physiology control module. The display module displays the physiology signals and the image frames simultaneously, in real-time, during the procedure. Optionally, the workstation may include a video processor module that formats the physiology signals into a display format. The video processor module may include an video processor and an external video processor that receive and control display of the physiology signals and image frames, respectively. The image frames may include at least one of ultrasound images obtained from a surface ultrasound probe, intravenous ultrasound images obtained from an ultrasound catheter and fluoroscopy images obtained from a fluoroscopy system.
    • 提供了一种生理工作站,其包括生理输入,所述生理输入被配置为从插入在受试者中的心内(IC)导管和所述对象上提供的表面ECG导联中的至少一个接收生理信号。 在手术过程中获得生理信号。 视频输入被配置为在该过程期间实时地接收图像帧。 图像帧包含表示在该过程期间从受试者获得的数据样本的诊断信息。 控制模块根据用户输入控制生理操作。 显示模块由生理控制模块控制。 显示模块在此过程中实时显示生理信号和图像帧。 可选地,工作站可以包括将生理信号格式化为显示格式的视频处理器模块。 视频处理器模块可以包括分别接收和控制生理信号和图像帧的显示的视频处理器和外部视频处理器。 图像帧可以包括从表面超声波探头获得的超声图像,从超声波导管获得的静脉内超声图像和从​​透视系统获得的荧光透视图像中的至少一个。
    • 7. 发明授权
    • Integrated physiology and imaging workstation
    • 综合生理和成像工作站
    • US07572223B2
    • 2009-08-11
    • US11433951
    • 2006-05-15
    • Brenda Donaldson
    • Brenda Donaldson
    • A61B8/00A61B5/0402
    • A61B8/0833A61B5/021A61B5/0402A61B8/04A61B8/0841A61B8/582G06F19/00G06F19/321G06F19/3418G16H40/63
    • A physiology workstation includes a communications interface conveying physiology signals and ultrasound data representative of a region of interest. The ultrasound data is obtained by an ultrasound device in real-time during a procedure. Also includes is a physiology processing unit, an ultrasound processing unit, and a display unit displaying the physiology signals and the ultrasound images, the physiology signals and ultrasound signals being presented jointly to a user in real-time during the procedure being carried out on the subject. The display unit includes at least one monitor co-displaying the physiology signals and ultrasound images in adjacent windows on a single display. The physiology processing unit, ultrasound processing unit and display unit are located in a control room divided from a procedure room. The communications interface extends between the procedure and control rooms and the physiology processing unit is configured to remotely control the ultrasound system via the communications interface.
    • 生理工作站包括传送生理信号的通信接口和表示感兴趣区域的超声数据。 超声波数据在手术过程中通过超声波装置实时获得。 还包括生理处理单元,超声处理单元和显示生理信号和超声图像的显示单元,生理信号和超声信号在用于在 学科。 显示单元包括在单个显示器上共同显示相邻窗口中的生理信号和超声图像的至少一个监视器。 生理处理单元,超声处理单元和显示单元位于从处理室分离的控制室中。 通信接口在程序和控制室之间延伸,并且生理处理单元被配置为经由通信接口远程控制超声系统。
    • 8. 发明授权
    • Integrated physiology and imaging workstation
    • 综合生理和成像工作站
    • US07569015B2
    • 2009-08-04
    • US11182473
    • 2005-07-15
    • Brenda DonaldsonIsrael RazSachin Vadodaria
    • Brenda DonaldsonIsrael RazSachin Vadodaria
    • A61B8/00A61B5/0402
    • A61B8/0833A61B5/021A61B5/0402A61B8/04A61B8/0841A61B8/582G06F19/00G06F19/321G06F19/3418G16H40/63
    • A physiology workstation is provided that comprises a communications interface conveying physiology signals derived from a subject and ultrasound data representative of a region of interest of the subject. The ultrasound data is obtained by an ultrasound device in real-time during a procedure carried out on the subject. An physiology processing unit receives and processes the physiology signals. An ultrasound processing unit receives and processes the ultrasound data to generate ultrasound images. The physiology processing unit combines the physiology signals with the ultrasound images from the ultrasound processing unit. A display unit displaying the physiology signals and the ultrasound images. The physiology signals and ultrasound signals are presented jointly to a user in real-time during the procedure being carried out on the subject.
    • 提供了一种生理工作站,其包括传送从受试者获得的生理学信号的通信界面和表示受试者感兴趣区域的超声数据。 在对被检体进行的手术中,超声波数据是通过超声波装置实时获得的。 生理处理单元接收并处理生理信号。 超声处理单元接收并处理超声数据以产生超声图像。 生理处理单元将生理信号与来自超声处理单元的超声图像相结合。 显示生理信号和超声图像的显示单元。 在对被摄体进行的过程中,生理信号和超声信号被共同地呈现给使用者。
    • 9. 发明申请
    • Method and system for mapping physiology information onto ultrasound-based anatomic structure
    • 将生理信息映射到基于超声的解剖结构的方法和系统
    • US20070055150A1
    • 2007-03-08
    • US11204711
    • 2005-08-16
    • Brenda DonaldsonIsrael RazSachin Vadodaria
    • Brenda DonaldsonIsrael RazSachin Vadodaria
    • A61B8/00A61B8/14
    • A61B8/467A61B5/0215A61B5/042A61B5/06A61B8/0833A61B8/0883A61B8/12A61B8/14A61B8/4245A61B8/461A61B8/469A61B8/483A61B8/5238A61B8/543A61B2090/378
    • A physiology system is provided that includes an ultrasound beamformer that is configured to receive signals from an ultrasound probe that is located proximate the region of interest. The beamformer, based on the receive signals, produces ultrasound data representative of a scan plane including the region of interest. The system also includes an ultrasound processor module for generating an ultrasound image, based on the ultrasound data, that is representative of an anatomical structure of a portion of the region of interest contained in the scan plane. A physiology signal processor module is also provided and configured to receive physiology signals from a catheter located proximate the region of interest. The physiology signal processor module produces physiology data representative of the physiologic activity of the portion of the region of interest contained in the scan plane. A registration module registers the ultrasound image and physiology data within a common coordinate reference system. A display processor module forms a display image combining the ultrasound image and physiology data.
    • 提供了生理系统,其包括被配置为从位于感兴趣区域附近的超声波探头接收信号的超声波束形成器。 波束形成器基于接收信号产生代表包括感兴趣区域的扫描平面的超声数据。 该系统还包括用于基于超声数据生成超声图像的超声处理器模块,其表示包含在扫描平面中的感兴趣区域的一部分的解剖结构。 生理信号处理器模块还被提供和配置为从位于感兴趣区域附近的导管接收生理信号。 生理信号处理器模块产生表示包含在扫描平面中的感兴趣区域的部分的生理活动的生理学数据。 注册模块将超声图像和生理数据登记在公共坐标参考系统内。 显示处理器模块形成组合超声图像和生理数据的显示图像。
    • 10. 发明申请
    • INTEGRATED PHYSIOLOGY AND IMAGING WORKSTATION
    • 综合生理和成像工作站
    • US20090292181A1
    • 2009-11-26
    • US12534542
    • 2009-08-03
    • Brenda Donaldson
    • Brenda Donaldson
    • A61B5/00G06F3/048G06K9/00
    • A61B8/0833A61B5/021A61B5/0402A61B8/04A61B8/0841A61B8/582G06F19/321G06F19/3418G16H40/63
    • A physiology workstation includes a communications interface conveying physiology signals and ultrasound data representative of a region of interest. The ultrasound data is obtained by an ultrasound device in real-time during a procedure. Also included is a physiology processing unit, an ultrasound processing unit, and a display unit displaying the physiology signals and the ultrasound images, the physiology signals and ultrasound signals being presented jointly to a user in real-time during the procedure being carried out on the subject. The display unit includes at least one monitor co-displaying the physiology signals and ultrasound images in adjacent windows on a single display. The physiology processing unit, ultrasound processing unit and display unit are located in a control room divided from a procedure room. The communications interface extends between the procedure and control rooms and the physiology processing unit is configured to remotely control the ultrasound system via the communications interface.
    • 生理工作站包括传送生理信号的通信接口和表示感兴趣区域的超声数据。 超声波数据在手术过程中通过超声波装置实时获得。 还包括生理处理单元,超声处理单元和显示生理信号和超声图像的显示单元,生理信号和超声信号在用于在 学科。 显示单元包括在单个显示器上共同显示相邻窗口中的生理信号和超声图像的至少一个监视器。 生理处理单元,超声处理单元和显示单元位于从处理室分离的控制室中。 通信接口在程序和控制室之间延伸,并且生理处理单元被配置为经由通信接口远程控制超声系统。