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    • 3. 发明申请
    • METHOD AND SYSTEM FOR ADAPTING PACING SETTINGS OF A CARDIAC STIMULATOR
    • 用于适应心脏刺激器的切片设置的方法和系统
    • US20120221071A1
    • 2012-08-30
    • US13355696
    • 2012-01-23
    • Andreas KarlssonAndreas BlomqvistKarin Jarverud
    • Andreas KarlssonAndreas BlomqvistKarin Jarverud
    • A61N1/365
    • A61N1/3627A61N1/36528A61N1/36542A61N1/36564A61N1/36571A61N1/36592
    • In an implantable medical device, such as a cardiac stimulator such as a pacemaker, and method for predicting patient responses to physical exertion, the patient response is monitored over time to evaluate disease progression and pacing therapies of cardiac stimulators are adapted based on the predicted patient response. A current cardiac status indicator for the patient is created indicating a response of the patient to an increased physical activity as a primarily heart rate response or as a primarily a stroke volume response. The pacing parameters of the cardiac stimulator can thereafter be adapted depending on the current cardiac status indicator, wherein the adapted pacing parameters include a first pacing setting if the current cardiac status indicator indicates a primarily heart rate response or a second pacing setting if the current cardiac status indicator indicates a primarily stroke volume response.
    • 在诸如心脏起搏器等心脏刺激器的可植入医疗装置中,以及用于预测患者对体力消耗的反应的方法,随着时间的推移监视患者反应以评估心脏刺激器的疾病进展和起搏疗法,基于预测患者 响应。 产生患者的当前心脏状态指示符,指示患者作为主要心率反应或作为主要的中风体积响应的增加的身体活动的反应。 心脏刺激器的起搏参数随后可以根据当前的心脏状态指示器进行调整,其中如果当前心脏状态指示符指示主要的心率响应或第二起搏设置,如果当前的心脏 状态指示器表示主要是中风体积响应。
    • 5. 发明授权
    • Identification of pacing site
    • 鉴定起搏部位
    • US08620432B2
    • 2013-12-31
    • US13171952
    • 2011-06-29
    • Sven-Erik HedbergNils HolmströmJohn GustafssonAndreas BlomqvistAndreas Karlsson
    • Sven-Erik HedbergNils HolmströmJohn GustafssonAndreas BlomqvistAndreas Karlsson
    • A61N1/00
    • A61N1/3686A61N1/36521
    • An implantable medical device applies an electric signal over two electrodes and measures the resulting electric signal over a candidate pair of neighboring electrodes on a lead for a first heart ventricle or over a candidate electrode of the lead and a case electrode. An impedance signal is determined for each candidate pair or electrode based on the applied signal and the measured resulting signal. A time difference between start of contraction in a second ventricle and the timing of local myocardial contraction as identified from the impedance signal at the site of the candidate pair or electrode is determined for each candidate pair or electrode. An optimal pacing electrode is selected to correspond to one of the electrodes of the candidate pair having the largest time difference or the candidate electrode having largest time difference.
    • 可植入医疗装置在两个电极上施加电信号,并且通过在第一心室的引线上或在引线的候选电极和外壳电极上的相邻电极的候选对测量所得到的电信号。 基于所施加的信号和测得的结果信号,为每个候选对或电极确定阻抗信号。 针对每个候选对或电极确定从候选对或电极的位置处的阻抗信号识别的第二心室的收缩开始与局部心肌收缩的定时之间的时间差。 选择最佳起搏电极以对应于具有最大时间差的候选对的电极之一或具有最大时间差的候选电极。
    • 6. 发明申请
    • IDENTIFICATION OF PACING SITE
    • 鉴定场地
    • US20120004700A1
    • 2012-01-05
    • US13171952
    • 2011-06-29
    • Sven-Erik HedbergNils HolmströmJohn GustafssonAndreas BlomqvistAndreas Karlsson
    • Sven-Erik HedbergNils HolmströmJohn GustafssonAndreas BlomqvistAndreas Karlsson
    • A61N1/368
    • A61N1/3686A61N1/36521
    • An implantable medical device applies an electric signal over two electrodes and measures the resulting electric signal over a candidate pair of neighboring electrodes on a lead for a first heart ventricle or over a candidate electrode of the lead and a case electrode. An impedance signal is determined for each candidate pair or electrode based on the applied signal and the measured resulting signal. A time difference between start of contraction in a second ventricle and the timing of local myocardial contraction as identified from the impedance signal at the site of the candidate pair or electrode is determined for each candidate pair or electrode. An optimal pacing electrode is selected to correspond to one of the electrodes of the candidate pair having the largest time difference or the candidate electrode having largest time difference.
    • 可植入医疗装置在两个电极上施加电信号,并且通过在第一心室的引线上或在引线的候选电极和外壳电极上的相邻电极的候选对测量所得到的电信号。 基于所施加的信号和测得的结果信号,为每个候选对或电极确定阻抗信号。 针对每个候选对或电极确定从候选对或电极的位置处的阻抗信号识别的第二心室的收缩开始与局部心肌收缩的定时之间的时间差。 选择最佳起搏电极以对应于具有最大时间差的候选对的电极之一或具有最大时间差的候选电极。
    • 10. 发明申请
    • Method and means for 2d-gel-image segmentation
    • 二维凝胶图像分割的方法和手段
    • US20060153435A1
    • 2006-07-13
    • US10516800
    • 2003-06-19
    • Gustav WallmarkAnders HeydenAndreas KarlssonOla Frosstrom-Olsson
    • Gustav WallmarkAnders HeydenAndreas KarlssonOla Frosstrom-Olsson
    • G06E3/00
    • G06T7/0012G06K9/0014G06K9/34G06T7/11G06T7/187G06T7/64G06T2207/10056G06T2207/30024
    • The present invention relates to the segmentation of two-dimensional gel electrophoresis images (2D images). The method according to the invention associates an initial protein seed candidate with an interface circumscribing said seed and thereafter brings said interface to evolve in accordance with a defined speed function F(x, y). The evolution of the interface is halted by a stopping criterion, C. According to the invention, the speed function can depend on a wide variety of parameters such as the pixel intensity, the curvature of the pixel intensity, the distance to the initial seed, the curvature and/or shape and/or normal direction and/or position of the evolving interface. The stopping criterion depends e.g. on the speed function F and/or the time of arrival T(x, y) and/or the departure time Td for said interface. The invention provides criteria for a specific treatment of saturated spots and to mike sure that interfaces never overlap.
    • 本发明涉及二维凝胶电泳图像(2D图像)的分割。 根据本发明的方法将初始蛋白质种子候选物与限定所述种子的界面相关联,然后使所述界面根据定义的速度函数F(x,y)进行演化。 接口的演变由停止标准C停止。根据本发明,速度函数可以取决于各种各样的参数,例如像素强度,像素强度的曲率,到初始种子的距离, 演变界面的曲率和/或形状和/或法线方向和/或位置。 停止标准取决于 对于所述接口,速度函数F和/或到达时间T(x,y)和/或出发时间T 。 本发明提供了对饱和斑点的具体处理的标准,并确保界面不重叠。