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    • 2. 发明授权
    • Anti-tachycardia pacing method and apparatus for multi-chamber pacing
    • 用于多室起搏的抗心动过速起搏方法和装置
    • US07295873B1
    • 2007-11-13
    • US10893710
    • 2004-07-15
    • Xiaoyi MinGene A. BornzinMark W. Kroll
    • Xiaoyi MinGene A. BornzinMark W. Kroll
    • A61N1/362
    • A61N1/3622
    • Improved methods and devices perform tachycardia detection and anti-tachycardia pacing (ATP) to convert a tachycardia (e.g., VT or AT) to normal sinus rhythm. According to one embodiment, an anti-tachycardia pacing method includes sensing, during sinus rhythm, first and second cardiac signals at first and second sites, respectively, in a patient's heart. The first and second sites include left and right ventricles or left and right atria, for example. The method further includes sensing third and fourth cardiac signals at the first and second sites, respectively, during a tachycardia (e.g., ventricular tachycardia or atrial tachycardia). The cardiac signals are processed to provide respective values. One or more anti-tachycardia pacing pulses are delivered at the site closest to the reentrant circuit based on a comparison of a first ratio of the first and third values and a second ratio of the second and fourth values. Unipolar sensing of the cardiac signals may be employed by, for example, shorting together pairs of electrodes implanted at each site.
    • 改进的方法和装置执行心动过速检测和抗心动过速起搏(ATP)以将心动过速(例如VT或AT)转换为正常窦性心律。 根据一个实施例,抗心动过速起搏方法包括在病人心脏中分别在窦性心律期间感测第一和第二部位的第一和第二心脏信号。 第一和第二个地点包括左心室和右心室,例如左心房和右心房。 该方法还包括在心动过速(例如,室性心动过速或心房心动过速)期间分别在第一和第二位置处感测第三和第四心脏信号。 处理心脏信号以提供相应的值。 基于第一值和第三值的第一比率以及第二和第四值的第二比率的比较,在最靠近可重入电路的位置处递送一个或多个抗心动过速起搏脉冲。 可以通过例如将植入在每个部位的电极对短路来采用心脏信号的单极性感测。
    • 3. 发明授权
    • Systems and methods for assessing heart failure and controlling cardiac resynchronization therapy using hybrid impedance measurement configurations
    • 用于评估心力衰竭并使用混合阻抗测量配置控制心脏再同步治疗的系统和方法
    • US08750981B2
    • 2014-06-10
    • US13217554
    • 2011-08-25
    • Gene A. BornzinXiaoyi MinLaurence S. SlomanSteve Koh
    • Gene A. BornzinXiaoyi MinLaurence S. SlomanSteve Koh
    • A61B5/05A61B5/053A61N1/36A61N1/368A61B5/0205
    • A61B5/053A61B5/0205A61B5/0538A61B5/686A61N1/36185A61N1/3627A61N1/3686
    • Techniques are provided for use with an implantable medical device for detecting and assessing heart failure and for controlling cardiac resynchronization therapy (CRT) based on impedance signals obtained using hybrid impedance configurations. The hybrid configurations exploit right atrial (RA)-based impedance measurement vectors and/or left ventricular (LV)-based impedance measurement vectors. In one example, current is injected between the device case and a ring electrode in the right ventricle (RV) or RA. RA-based impedance values are measured along vectors between the device case and an RA electrode. LV-based impedance values are measured along vectors between the device case and one or more electrodes of the LV. Heart failure and other cardiac conditions are detected and tracked using the measured impedance values. CRT delay parameters are also optimized based impedance. In this manner, multiple hybrid impedance measurement configurations are exploited whereby different vectors are used to inject current and measure impedance.
    • 提供技术用于可植入医疗装置,用于基于使用混合阻抗配置获得的阻抗信号来检测和评估心力衰竭并用于控制心脏再同步治疗(CRT)。 混合配置利用基于右心房(RA)的阻抗测量向量和/或左心室(LV))的阻抗测量向量。 在一个示例中,电流注入到装置壳体和右心室(RV)或RA中的环形电极之间。 基于RA的阻抗值是沿器件壳体和RA电极之间的矢量测量的。 基于LV的阻抗值在器件壳体和LV的一个或多个电极之间的矢量上测量。 使用测量的阻抗值检测和跟踪心力衰竭和其他心脏状况。 CRT延迟参数也是基于阻抗的优化。 以这种方式,利用多个混合阻抗测量配置,由此使用不同的矢量来注入电流并测量阻抗。
    • 7. 发明申请
    • SYSTEMS AND METHODS FOR REMOTE MONITORING OF IMPLANTABLE MEDICAL DEVICE LEAD TEMPERATURES DURING AN MRI PROCEDURE
    • 在MRI程序中远程监测可植入医疗设备引导温度的系统和方法
    • US20110066028A1
    • 2011-03-17
    • US12558366
    • 2009-09-11
    • Xiaoyi MinGene A. Bornzin
    • Xiaoyi MinGene A. Bornzin
    • A61B5/01A61N1/08A61B5/055
    • G01R33/288A61B5/01A61N1/056A61N1/08
    • Systems and methods are provided for detecting and responding to excessive heating of implantable medical device leads, such as leads used with pacemakers or implantable cardioverter-defibrillators (ICDs), during a magnetic resonance imaging (MRI) procedure. In one example, a critical temperature is determined for the lead that is representative, e.g., of the temperature at which tissue damage might occur or pacing/sensing might be significantly impaired. A temperature threshold is then set based on the critical temperature by subtracting a predetermined safety margin. Lead temperatures are then sensed during the MRI procedure. The lead temperatures are compared against the threshold and suitable warnings are transmitted to an external monitoring system if lead temperatures exceed their thresholds so that the attending personnel can take corrective action. The implantable device may also be programmed to take corrective action, such as automatically changing pacing modes, adjusting pulse magnitudes or sensitivity values, etc.
    • 提供了系统和方法,用于在磁共振成像(MRI)过程期间检测和响应可植入医疗装置引线的过度加热,例如与起搏器或植入式心律转复除颤器(ICD)一起使用的引线。 在一个实例中,确定代表性的导线的临界温度,例如组织损伤可能发生的温度,或起搏/感测可能受到显着损害。 然后通过减去预定的安全裕度,基于临界温度设定温度阈值。 然后在MRI过程中检测铅温度。 将引导温度与阈值进行比较,如果引线温度超过其阈值,则合适的警告将传输到外部监控系统,以便主管人员能够采取纠正措施。 也可以将可植入装置编程为采取校正动作,例如自动改变起搏模式,调节脉冲幅度或灵敏度值等。