Snoeck J, Berkhof M, Claeys M, Vrints C, Bosmans J, Decoster H, Heuten H
Department of Cardiology, University Hospital Antwerp, Belgium.
Pacing Clin Electrophysiol. 1992 Nov;15(11 Pt 2):1841-5. doi: 10.1111/j.1540-8159.1992.tb02979.x.
The change of the pacing rate in response to external vibration interference was assessed in four rate responsive pacemakers with a piezoelectric crystal (Medtronic Activitrax 8403, Siemens Sensolog 3, Biotronik Ergos 01, and Medtronic Legend 8417) and one with an accelerometer (CPI Excel VR 1119). They were tested in the laboratory. External vibration was simulated in vitro by exposing the different pacemakers to a controlled sinusoidal vibration force generated by a Millar pressure vibration amplifier type MGM-30 (Millar Instruments, Inc., Houston, TX, USA). All pacemakers were programmed at standard settings. Two types of vibration forces were applied: (1) one with varying amplitude but with constant vibration frequency; and (2) one with varying frequency but with constant vibration amplitude. In this manner curves of pacing rate versus vibration forces versus vibration frequency were obtained. High vibration forces and low vibration frequencies were associated with the highest pacing rate response. In this experimental setting, the pacemaker based on the accelerometer principle apparently was the least sensitive to high frequency vibrations, which are known to be related to environmental interference. It also seemed more appropriately responsive in the lower frequency range, which is more appropriate for the detection of true physiological activity.
在五台起搏器中评估了起搏频率对外部振动干扰的变化情况,其中四台配备压电晶体(美敦力Activitrax 8403、西门子Sensolog 3、百多力Ergos 01和美敦力Legend 8417),一台配备加速度计(CPI Excel VR 1119)。这些起搏器在实验室中进行了测试。通过将不同的起搏器暴露于由美国德克萨斯州休斯顿的Millar Instruments公司生产的型号为MGM - 30的Millar压力振动放大器产生的受控正弦振动力下,在体外模拟外部振动。所有起搏器均设置为标准参数。施加了两种类型的振动力:(1)一种振幅变化但振动频率恒定;(2)一种频率变化但振动幅度恒定。通过这种方式获得了起搏频率与振动力以及振动频率之间的曲线。高振动力和低振动频率与最高的起搏频率响应相关。在该实验设置中,基于加速度计原理的起搏器显然对高频振动最不敏感,已知高频振动与环境干扰有关。它在较低频率范围内的响应似乎也更合适,这更适合检测真正的生理活动。