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A Method to Realize Rate-adaptive Function in Pacemakers Based on Accelerometer Sensors

机译:基于加速度计传感器的起搏器速率自适应功能实现方法

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We have developed a method to realize rate-adaptive function in pacemakers, which can greatly improve patients' exercise capacity. In our method, an accelerometer is employed to collect patients' acceleration signals along moving direction, according to which efficient algorithms are applied afterwards for activity estimate. Further analysis indicates an approximate linear relationship between human metabolic level and normal sinus rate. Therefore, we imitate a similar relationship between activity estimate and target pacing rate in our algorithm. We also need a strategy of smooth transition instead of immediately changing the current pacing rate to the target pacing rate. Treadmill tests are applied to verify the performance of our rate-adaptive system. Compared with an Impulse pacemaker from Medtronic Inc., we find the pacing rate yielded by our system in great conformity with that yielded by the Impulse pacemaker, especially when testers experience moderate exercise. The results validate our proposed method for rate-adaptive function.
机译:我们已经开发出一种在起搏器中实现速率自适应功能的方法,可以大大提高患者的运动能力。在我们的方法中,采用加速度计来收集患者沿运动方向的加速度信号,然后根据此有效算法进行活动估计。进一步的分析表明人类代谢水平和正常窦率之间存在近似线性关系。因此,我们在算法中模拟了活动估计与目标起搏率之间的相似关系。我们还需要一种平稳过渡的策略,而不是立即将当前起搏率更改为目标起搏率。跑步机测试用于验证我们的自适应系统的性能。与Medtronic Inc.的Impulse心脏起搏器相比,我们发现系统产生的起搏率与Impulse心脏起搏器产生的起搏率非常一致,尤其是在测试人员进行适度运动的情况下。结果验证了我们提出的速率自适应函数方法。

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