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An Implantable Sensorized Lead for Continuous Monitoring of Cardiac Apex Rotation

机译:用于持续监测心尖旋转的可植入传感器导线

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摘要

Changes in the pattern or amplitude of cardiac rotation have been associated with important cardiovascular diseases, including Heart Failure (HF) which is one of the major health problems worldwide. Recent advances in echocardiographic techniques have allowed for non-invasive quantification of cardiac rotation; however, these examinations do not address the continuous monitoring of patient status. We have presented a newly developed implantable, transvenous lead with a tri-axis (3D) MEMS gyroscope incorporated near its tip to measure cardiac apex rotation in the three-dimensional space. We have named it CardioMon for its intended use for cardiac monitoring. If compared with currently proposed implantable systems for HF monitoring based on the use of pressure sensors that can have reliability issues, an implantable motion sensor like a gyroscope holds the premise for more reliable long term monitoring. The first prototypal assembly of the CardioMon lead has been tested to assess the reliability of the 3D gyroscope readings. In vitro results showed that the novel sensorized CardioMon lead was accurate and reliable in detecting angular velocities within the range of cardiac twisting velocities. Animal experiments will be planned to further evaluate the CardioMon lead in in vivo environments and to investigate possible endocardial implantation sites.
机译:心脏旋转方式或幅度的变化与重要的心血管疾病有关,包括心力衰竭(HF),这是全球范围内的主要健康问题之一。超声心动图技术的最新进展已允许对心脏旋转进行无创量化。但是,这些检查无法解决对患者状态的持续监控。我们已经提出了一种新开发的可植入的静脉引线,其尖端附近装有一个三轴(3D)MEMS陀螺仪,用于测量三维空间中的心尖旋转。我们将其命名为CardioMon,是因为它可用于心脏监护。如果与当前提出的基于压力传感器使用的可植入式HF监测系统相比较,该系统可能存在可靠性问题,那么像陀螺仪这样的可植入式运动传感器为长期监测提供了前提。 CardioMon导线的第一个原型组件已经过测试,可以评估3D陀螺仪读数的可靠性。体外结果表明,新颖的CardioMon铅感测器在检测心脏扭曲速度范围内的角速度时准确而可靠。将计划进行动物实验,以进一步评估体内环境中的CardioMon铅,并研究可能的心内膜植入部位。

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