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A novel autonomic activation measurement method for stress monitoring: non-contact measurement of heart rate variability using a compact microwave radar

机译:一种用于压力监测的新型自主激活测量方法:使用紧凑型微波雷达进行非接触式心率变异性测量

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摘要

We developed a novel method for non-contact monitoring of stress-induced autonomic activation through the back of a chair, using a compact 24 GHz microwave radar (8 × 5 × 3 cm), without large-scale equipment and placing a heavy burden on the monitored individual. Following a silent period of 120 s, audio stimuli using a composite tone of 2,120 and 2,130 Hz sine-waves at 95 dB were conducted for 120 s. From dorsal, LF/HF of HRV reflecting sympatho-vagal balance was determined by microwave radar with the maximum entropy method using eight volunteers (mean age 23 ± 1 years). Mean LF/HF measured by non-contact and contact (using electrocardiography for reference) methods during audio stimuli increased 34 and 37%, respectively, as compared with those of the silent period. Maximum cross-correlations between contact and non-contact measurements averaged 0.73 ± 0.10. Our method appears to be promising for future monitoring of stress-induced autonomic activation of operators and may reduce stress-induced accidents.
机译:我们开发了一种新颖的方法,该方法使用紧凑的24 GHz微波雷达(8×5×3 cm),无需使用大型设备,就可以通过椅背进行非接触式监测应力诱导的自主神经激活的方法。被监视的人。在120 s的静默期之后,使用2120和2130 Hz正弦波的复合音以95 dB进行音频刺激120 s。通过微波雷达,采用最大熵方法,由八名志愿者(平均年龄23±1岁)从背部测定HRV的LF / HF反映交感迷走平衡。与静默期相比,在音频刺激期间通过非接触和接触(使用心电图作为参考)方法测得的平均LF / HF分别增加了34%和37%。接触和非接触测量之间的最大互相关平均为0.73±0.10。我们的方法对于将来监控操作员因压力引起的自主神经活动似乎很有希望,并且可以减少因压力引起的事故。

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