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    • 27. 发明申请
    • Electrode Positioning
    • 电极定位
    • US20130345571A1
    • 2013-12-26
    • US13920698
    • 2013-06-18
    • Maquet Critical Care AB
    • Christer SINDERBYJennifer BeckFrederik JaldeJoachim Sallvin
    • A61B5/08
    • A61B5/08A61B5/0421A61B5/0488A61M16/00A61M16/024A61M2016/0021A61M2202/0208A61M2210/1014A61M2210/105A61M2230/04A61M2230/08A61M2230/60A61M2230/005
    • In a method for positioning linear array of electrodes (LAE) mounted on distal end section of elongated flexible member in patient's respiratory airways (PRA) at level of diaphragm, a length of the member pre-determined to position LEA at the level of the diaphragm is inserted through PRA. Signals representative of an electrical activity of the diaphragm (EAdi) are detected through LAE, presence/absence of ECG signal components is detected in EAdi signals, and position of LAE in PRA is detected in response to presence/absence of ECG signal components in EAdi signals. Lower esophageal sphincter activity may be detected in EAdi signals, and position of LAE in PRA determined in response to the detected lower esophageal sphincter. End-expiratory occlusion of PRA may be performed to verify that the electrical activity of the diaphragm coincides with a negative deflection of PRA pressure again in view of determining adequate positioning of LAE.
    • 在用于将患者呼吸气道(PRA)中的细长柔性构件的远端部分上安装的电极线性阵列(LAE)定位在隔膜水平面上的方法中,预先确定将该位置LEA定位在隔膜水平处的部件的长度 通过PRA插入。 通过LAE检测代表隔膜电活动的信号(EAdi),在EAdi信号中检测到ECG信号成分的存在/不存在,并且响应EADi中ECG信号成分的存在/不存在来检测LAE在PRA中的位置 信号。 食管下端括约肌活动可能在EAdi信号中检测到,LAE在PRA中的位置是根据检测到的食道下括约肌而确定的。 考虑到确定LAE的适当定位,可以执行PRA的呼气末阻塞以验证隔膜的电活动再次与PRA压力的负偏转重合。
    • 28. 发明授权
    • Electromagnetic diaphragm assist device and method for assisting a diaphragm function
    • 电磁隔膜辅助装置及辅助隔膜功能的方法
    • US08281792B2
    • 2012-10-09
    • US11648908
    • 2007-01-03
    • John W Royalty
    • John W Royalty
    • A61B19/00
    • A61B5/0809A61F2002/043A61F2250/0001A61H31/02A61M2210/1014
    • A diaphragm assist device includes a magnetic mat adapted for mounting inside a human body adjacent the diaphragm. The mat is made from a material responsive to application of an electromagnetic field so as to be movable into compressive relation with the diaphragm in response to application of the electromagnetic field thereto and movable out of the compressive relation to permit the diaphragm to relax when application of the electromagnetic field is discontinued. The device also includes an electromagnetic assembly adapted for surrounding the torso of the human body in functionally cooperative relation with respect to the mat, and for alternately generating and discontinuing the electromagnetic field so that the mat alternately moves into and out of the compressive relation with the diaphragm. The device also includes a controller constructed and arranged to control an intensity level of the electromagnetic field generated by the electromagnetic assembly.
    • 隔膜辅助装置包括适于安装在邻近隔膜的人体内的磁性垫。 该垫由响应于施加电磁场的材料制成,以响应于向其施加电磁场而移动成与隔膜的压缩关系,并且可移出压缩关系,以允许隔膜在施加 电磁场停止。 该装置还包括电磁组件,其适于围绕人体的功能性协调关系围绕人体躯干,并且用于交替地产生和中断电磁场,使得垫交替地移动到和/ 隔膜 该装置还包括构造和布置成控制由电磁组件产生的电磁场的强度水平的控制器。
    • 30. 发明申请
    • Ventilator-Initiated Prompt Regarding Auto-PEEP Detection During Pressure Ventilation
    • 呼吸机启动关于压力通气期间自动PEEP检测的提示
    • US20120000470A1
    • 2012-01-05
    • US12827130
    • 2010-06-30
    • Gary MilneKirk HensleyPeter R. DoyleGardner Kimm
    • Gary MilneKirk HensleyPeter R. DoyleGardner Kimm
    • A61M16/00G06F3/048
    • A61M16/0063A61B5/08A61M16/0051A61M16/026A61M16/0833A61M2016/0021A61M2016/0027A61M2016/0036A61M2205/502A61M2205/505A61M2205/584A61M2210/1014A61M2230/20A61M2230/43A61M2230/46G06F19/00G16H40/63G16H50/20
    • This disclosure describes systems and methods for monitoring and evaluating ventilatory parameters, analyzing ventilatory data associated with those parameters, and providing useful notifications and/or recommendations to clinicians. Modern ventilators monitor, evaluate, and graphically represent a myriad of ventilatory parameters. However, many clinicians may not easily identify or recognize data patterns and correlations indicative of certain patient conditions, changes in patient condition, and/or effectiveness of ventilatory treatment. Further, clinicians may not readily determine appropriate ventilatory adjustments that may address certain patient conditions and/or the effectiveness of ventilatory treatment. Specifically, clinicians may not readily detect or recognize the presence of Auto-PEEP during various types of pressure ventilation. According to embodiments, a ventilator may be configured to monitor and evaluate diverse ventilatory parameters to detect Auto-PEEP and may issue suitable notifications and recommendations to the clinician when Auto-PEEP is implicated. The suitable notifications and recommendations may further be provided in a hierarchical format.
    • 本公开描述了用于监测和评估通气参数的系统和方法,分析与这些参数相关联的通气数据,并向临床医生提供有用的通知和/或建议。 现代呼吸机监测,评估和图形化表示无数通气参数。 然而,许多临床医生可能不容易识别或识别指示某些患者状况,患者状况变化和/或通气治疗有效性的数据模式和相关性。 此外,临床医生可能不能容易地确定可以解决某些患者状况和/或通气治疗的有效性的适当的通气调节。 具体来说,临床医生在各种类型的压力通气期间可能不能容易地检测或识别Auto-PEEP的存在。 根据实施例,呼吸机可以被配置为监测和评估各种通气参数以检测自动PEEP,并且当涉及Auto-PEEP时可以向临床医生发布合适的通知和建议。 可以以分层格式进一步提供合适的通知和建议。