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使用 Kubios HRV 软件,通过 Polar H10 或 Movesense 医疗 ECG 传感器在运动斜坡期间估算女性和男性的呼吸频率。

Estimation of Respiratory Frequency in Women and Men by Kubios HRV Software Using the Polar H10 or Movesense Medical ECG Sensor during an Exercise Ramp.

机构信息

College of Medicine, University of Central Florida, 6850 Lake Nona Boulevard, Orlando, FL 32827-7408, USA.

Interdisciplinary Institute of Exercise Science and Sports Medicine, MSH Medical School Hamburg, University of Applied Sciences and Medical University, Am Kaiserkai 1, 20457 Hamburg, Germany.

出版信息

Sensors (Basel). 2022 Sep 21;22(19):7156. doi: 10.3390/s22197156.

Abstract

Monitoring of the physiologic metric, respiratory frequency (RF), has been shown to be of value in health, disease, and exercise science. Both heart rate (HR) and variability (HRV), as represented by variation in RR interval timing, as well as analysis of ECG waveform variability, have shown potential in its measurement. Validation of RF accuracy using newer consumer hardware and software applications have been sparse. The intent of this report is to assess the precision of the RF derived using Kubios HRV Premium software version 3.5 with the Movesense Medical sensor single-channel ECG (MS ECG) and the Polar H10 (H10) HR monitor. Gas exchange data (GE), RR intervals (H10), and continuous ECG (MS ECG) were recorded from 21 participants performing an incremental cycling ramp to failure. Results showed high correlations between the reference GE and both the H10 (r = 0.85, SEE = 4.2) and MS ECG (r = 0.95, SEE = 2.6). Although median values were statistically different via Wilcoxon testing, adjusted median differences were clinically small for the H10 (RF about 1 breaths/min) and trivial for the MS ECG (RF about 0.1 breaths/min). ECG based measurement with the MS ECG showed reduced bias, limits of agreement (maximal bias, -2.0 breaths/min, maximal LoA, 6.1 to -10.0 breaths/min) compared to the H10 (maximal bias, -3.9 breaths/min, maximal LoA, 8.2 to -16.0 breaths/min). In conclusion, RF derived from the combination of the MS ECG sensor with Kubios HRV Premium software, tracked closely to the reference device through an exercise ramp, illustrates the potential for this system to be of practical usage during endurance exercise.

摘要

生理指标呼吸频率(RF)的监测在健康、疾病和运动科学中已被证明具有重要价值。心率(HR)和变异性(HRV),如 RR 间隔时间变化所代表的变异性,以及心电图波形变异性的分析,在其测量中都显示出了潜力。使用较新的消费类硬件和软件应用程序对 RF 准确性进行验证的研究很少。本报告的目的是评估 Kubios HRV Premium 软件版本 3.5 与 Movesense Medical 传感器单通道心电图(MS ECG)和 Polar H10(H10)心率监测器结合使用时,RF 精度的准确性。从 21 名参与者递增性自行车至力竭试验中,记录气体交换数据(GE)、RR 间隔(H10)和连续心电图(MS ECG)。结果表明,参考 GE 与 H10(r = 0.85,SEE = 4.2)和 MS ECG(r = 0.95,SEE = 2.6)之间高度相关。尽管通过 Wilcoxon 检验发现中位数有统计学差异,但通过调整后,H10 的中位数差异在临床上较小(RF 约为 1 次/分钟),而 MS ECG 的差异微不足道(RF 约为 0.1 次/分钟)。与 H10 相比,MS ECG 基于心电图的测量显示出较小的偏差和一致性区间(最大偏差,-2.0 次/分钟,最大一致性区间,8.2 至-16.0 次/分钟)。总之,MS ECG 传感器与 Kubios HRV Premium 软件相结合得出的 RF,在运动斜坡过程中与参考设备紧密跟踪,说明了该系统在耐力运动中具有实际应用的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8c9e/9573071/9479f2085b8f/sensors-22-07156-g001.jpg

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