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    • 6. 发明授权
    • Stabilizing guide wire apparatus for use with implantable device
    • 用于可植入装置的稳定导丝装置
    • US07509172B2
    • 2009-03-24
    • US10421213
    • 2003-04-23
    • Mark RichardsonDavid Anderson
    • Mark RichardsonDavid Anderson
    • A61N1/05
    • A61N1/056A61N2001/0578A61N2001/0585
    • An apparatus is usable for guiding and stabilizing a body implantable medical device. The apparatus includes a guide wire with an enlarged distal tip. The enlarged distal tip may include a compliant portion to prevent tissue abrasion or perforation. The implantable device includes an open lumen configured to longitudinally advance along the guide wire. A sleeve is disposed over the guide wire and slidably deployable over the enlarged tip of the guide wire. When the implantable device is in final position, the open lumen encompasses at least part of the enlarged tip of the guide wire. The sleeve can be moved over at least part of the enlarged tip and create an interference between the tip and the open lumen, thereby stabilizing the implantable device.
    • 一种装置可用于引导和稳定身体可植入医疗装置。 该装置包括具有放大的远端的引导线。 扩大的远侧末端可以包括柔顺部分以防止组织磨损或穿孔。 可植入装置包括被构造为沿着导丝纵向前进的开口腔。 套筒布置在引导线上并可滑动地布置在引导线的扩大的尖端上。 当可植入装置处于最终位置时,开放的内腔包围引导线的扩大末端的至少一部分。 套筒可以在扩大的尖端的至少一部分上移动,并在尖端和开放的内腔之间产生干涉,从而稳定可植入装置。
    • 8. 发明授权
    • Guidewire having linear change in stiffness
    • 导丝具有刚度线性变化
    • US06390993B1
    • 2002-05-21
    • US09203140
    • 1998-12-01
    • Wayne E. CornishJohn SchreinerJames JacobsMarc M. JalisiMark Richardson
    • Wayne E. CornishJohn SchreinerJames JacobsMarc M. JalisiMark Richardson
    • A61B500
    • A61B5/6851A61M25/09A61M2025/09083A61M2025/09175
    • The invention is directed to a guidewire having a distal section with multiple distally tapered core segments with at least two contiguous distally tapering core segments in which the most distal tapered core segment preferably has a greater degree of taper than the proximally contiguous tapered core segment. The invention is also directed to an elongated intracorporeal device, preferably a guidewire or section thereof, that has a core member or the like with a plurality of contiguous tapered segments having taper angles that are configured to produce a linear change in stiffness over a longitudinal section of the device. The device may also have a core section with a continuously changing taper angle to produce a curvilinear profile that preferably is configured to produce a linear change in stiffness of the core over a longitudinal section of the device.
    • 本发明涉及一种具有多个具有至少两个相邻的远端锥形芯段的多个远端锥形芯部段的远端部分,其中最远端锥形芯部段优选地具有比近端相邻的锥形芯部分更大的锥度。 本发明还涉及一种细长的体内装置,优选的导丝或其一部分,其具有芯构件或类似物,多个相邻的锥形段具有锥形角,该锥形角构造成在纵向截面上产生刚度线性变化 的设备。 该装置还可以具有连续变化的锥角的芯部分,以产生曲线轮廓,该轮廓优选被配置成在装置的纵向部分上产生芯的刚度的线性变化。
    • 10. 发明申请
    • ASSESSING SUSCEPTIBILITY TO EPILEPSY AND EPILEPTIC SEIZURES
    • 评估对于癫痫发作和癫痫发作的可能性
    • US20150164431A1
    • 2015-06-18
    • US14406452
    • 2013-06-05
    • John Robert TerryMark RichardsonOscar Benjamin
    • John Robert TerryMark RichardsonOscar Benjamin
    • A61B5/00G01R33/48A61B5/0476
    • A61B5/7275A61B5/04004A61B5/04008A61B5/0476A61B5/4094A61B5/4848A61B5/7246A61B5/7264G01R33/4806G16H50/30G16H50/50
    • Assessing Susceptibility to Epilepsy and Epileptic Seizures A method and system adapted to assist with assessing susceptibility to epilepsy and/or epileptic seizures in a patient receives (202) patient brain data and generates (204) a network model from the received patient brain data. The system further generates (206) synthetic brain activity data in at least some of the nodes of the network model and computes (208) seizure frequency from the synthetic brain activity data by monitoring transitions from non-seizure states to seizures states in at least some of the nodes over time. The system further includes a device (104, 110) configured to use the seizure frequency to compute (210) a likelihood of susceptibility to epilepsy and/or epileptic seizures in the patient, and a device (104, 110) configured to compare (212) the computed likelihood with another likelihood of susceptibility to epilepsy and/or epileptic seizures in order to assess whether the likelihood has increased or decreased. FIG. 2
    • 评估对癫痫和癫痫发作的敏感性适于协助评估患者对癫痫和/或癫痫发作的易感性的方法和系统接收(202)患者脑数据,并从接收到的患者脑数据生成(204)网络模型。 该系统进一步在网络模型的至少一些节点中产生(206)合成脑活动数据,并通过监视至少一些从非癫痫状态到癫痫发作状态的过渡来从合成脑活动数据计算(208)癫痫发作频率 的节点。 该系统还包括被配置为使用癫痫发作频率来计算(210)对患者的癫痫和/或癫痫发作易感性的可能性的装置(104,110),以及被配置为比较(212) )计算的可能性具有对癫痫和/或癫痫发作易感性的另一可能性,以便评估这种可能性是否增加或减少。 图。 2