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Fetal heart rate recorder for long-duration use in active full-term pregnant women
We sought to assess the signal consistency and accuracy of a long-duration fetal heart rate (FHR) recorder (a 1-MHz ultrasonic Doppler transducer composed of six miniprobes and an autocorrelation technique) in active, full-term pregnant women. The FHR data of 15 normal full-term fetuses were obtained every 250 milliseconds in various maternal positions using the new Doppler system or a direct scalp electrocardiographic (ECG) transducer. Differences between simultaneous Doppler and ECG measures were small and within acceptable limits except for short-term variability. Signal loss, assessed in 15 subjects in various positions, was less than 10% except during sitting or walking. The mean (+/- standard deviation) percentages of FHR signals lost over 2 hours in bed, 1 hour out of bed, and 24 hours in and out of bed were 1.2 +/- 2.1, 12.9 +/- 16.2, and 3.8 +/- 4.4, respectively. This system for recording FHR is suitable for clinical research and routine FHR monitoring, and provides data comparable to Holter ECG monitoring in patients with heart disease.
We sought to assess the signal consistency and accuracy of a long-duration fetal heart rate (FHR) recorder (a 1-MHz ultrasonic Doppler transducer composed of six miniprobes and an autocorrelation technique) in active, full-term pregnant women. The FHR data of 15 normal full-term fetuses were obtained every 250 milliseconds in various maternal positions using the new Doppler system or a direct scalp electrocardiographic (ECG) transducer. Differences between simultaneous Doppler and ECG measures were small and within acceptable limits except for short-term variability. Signal loss, assessed in 15 subjects in various positions, was less than 10% except during sitting or walking. The mean (+/- standard deviation) percentages of FHR signals lost over 2 hours in bed, 1 hour out of bed, and 24 hours in and out of bed were 1.2 +/- 2.1, 12.9 +/- 16.2, and 3.8 +/- 4.4, respectively. This system for recording FHR is suitable for clinical research and routine FHR monitoring, and provides data comparable to Holter ECG monitoring in patients with heart disease.