Department of Electrical Engineering, Stanford University, Stanford, CA 94305, USA.
IEEE Trans Biomed Eng. 2010 Mar;57(3):722-7. doi: 10.1109/TBME.2009.2018831. Epub 2009 Apr 7.
An adaptive noise canceller was used to reduce the effect of floor vibrations on ballistocardiogram (BCG) measurements from a modified electronic bathroom scale. A seismic sensor was placed next to the scale on the floor and used as the noise reference input to the noise canceller. BCG recordings were acquired from a healthy subject while another person stomped around the scale, thus causing increased floor vibrations. The noise canceller substantially eliminated the artifacts in the BCG signal due to these vibrations without distorting the morphology of the measured BCG. Additionally, recordings were obtained from another subject standing inside a parked bus while the engine was running. The artifacts due to the vibrations of the engine, and the other vehicles moving on the road next to the bus, were also effectively eliminated by the noise canceller. The system with automatic floor vibration cancellation could be used to increase BCG measurement robustness in home monitoring applications. Additionally, the noise cancellation approach may enable BCG recording in ambulances-or other transport vehicles-where noninvasive hemodynamic monitoring may otherwise not be feasible.
采用自适应噪声消除器来减少地板振动对改良电子浴室秤的心动描记图(BCG)测量的影响。将地震传感器放置在地板上的秤旁,并将其用作噪声消除器的噪声参考输入。当另一个人在秤周围跺脚时,从健康受试者身上获取 BCG 记录,从而导致地板振动增加。噪声消除器实质上消除了由于这些振动而导致的 BCG 信号中的伪影,而不会扭曲所测量的 BCG 的形态。此外,当发动机运转时,从站在停着的公共汽车内的另一位受试者身上获取记录。通过噪声消除器,还可以有效地消除发动机振动以及停在公共汽车旁边的道路上的其他车辆引起的伪影。具有自动地板振动消除功能的系统可用于提高家庭监测应用中 BCG 测量的稳健性。此外,噪声消除方法可使 BCG 记录在救护车或其他运输车辆中成为可能,否则在这些车辆中进行非侵入性血流动力学监测是不可行的。