Goovaerts H G, Rompelman O, van Geijn H P
Department of Medical Physics, Free University, Amsterdam, The Netherlands.
Clin Phys Physiol Meas. 1989;10 Suppl B:61-5. doi: 10.1088/0143-0815/10/4b/010.
Recording fetal breathing movements requires a transducer with a large dynamic range. The compliance of the transducer should be matched to the compliance of the maternal abdominal wall in order to pass the very weak acoustic signal caused by heart sounds and fetal breathing movements on to the transducer. The output signal is stored on the hard disc of a personal computer (PC) simultaneously with a control signal indicating the presence of breathing movements. Ultrasound imaging is exclusively used for verification of breathing movements. The images are stored on videotape simultaneously with control signals from the PC for synchronisation of data and image. Substantial digital filtering is necessary to discriminate between actual breathing movements and other fetal activities. It is shown that by optimal adjustment of the transducer's compliance to that of the maternal abdominal wall individual breathing movements can indeed be measured.
记录胎儿呼吸运动需要一个具有大动态范围的换能器。换能器的顺应性应与孕妇腹壁的顺应性相匹配,以便将由心音和胎儿呼吸运动产生的非常微弱的声学信号传递给换能器。输出信号与指示呼吸运动存在的控制信号同时存储在个人计算机(PC)的硬盘上。超声成像专门用于呼吸运动的验证。图像与来自PC的控制信号同时存储在录像带上,以便数据和图像同步。需要进行大量数字滤波以区分实际呼吸运动和其他胎儿活动。结果表明,通过将换能器的顺应性优化调整为与孕妇腹壁的顺应性相匹配,确实可以测量个体呼吸运动。