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Regression plots for the comparison of respiratory frequency (RF) in breaths/min (b/min) for the ( A ) Movesense Medical sensor ECG (MS ECG) and the ( B ) Polar <t>H10</t> sensor chest belt device (H10) vs gas exchange data (GE) during the incremental exercise test. Coefficient of determination (R 2 ), Pearson’s r, standard error of estimate (SEE), and p value shown in the bottom right plot. Regression line in red, line of unity shown in dark grey.
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Polar Electro heart rate sensor polar m7 inclusive the chest belt
Regression plots for the comparison of respiratory frequency (RF) in breaths/min (b/min) for the ( A ) Movesense Medical sensor ECG (MS ECG) and the ( B ) Polar <t>H10</t> sensor chest belt device (H10) vs gas exchange data (GE) during the incremental exercise test. Coefficient of determination (R 2 ), Pearson’s r, standard error of estimate (SEE), and p value shown in the bottom right plot. Regression line in red, line of unity shown in dark grey.
Heart Rate Sensor Polar M7 Inclusive The Chest Belt, supplied by Polar Electro, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Image Search Results


Regression plots for the comparison of respiratory frequency (RF) in breaths/min (b/min) for the ( A ) Movesense Medical sensor ECG (MS ECG) and the ( B ) Polar H10 sensor chest belt device (H10) vs gas exchange data (GE) during the incremental exercise test. Coefficient of determination (R 2 ), Pearson’s r, standard error of estimate (SEE), and p value shown in the bottom right plot. Regression line in red, line of unity shown in dark grey.

Journal: Sensors (Basel, Switzerland)

Article Title: 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

doi: 10.3390/s22197156

Figure Lengend Snippet: Regression plots for the comparison of respiratory frequency (RF) in breaths/min (b/min) for the ( A ) Movesense Medical sensor ECG (MS ECG) and the ( B ) Polar H10 sensor chest belt device (H10) vs gas exchange data (GE) during the incremental exercise test. Coefficient of determination (R 2 ), Pearson’s r, standard error of estimate (SEE), and p value shown in the bottom right plot. Regression line in red, line of unity shown in dark grey.

Article Snippet: Recordings of RR intervals and ECG were taken continuously with two devices at the same time, the Movesense Medical sensor (firmware version 2.0.99) single-channel ECG with chest belt (Movesense, Vantaa, Finland; sampling rate: 512 Hz; app software: Movesense Showcase version 1.0.9), and the Polar H10 sensor chest belt device (Polar Electro Oy, Kempele, Finland; sampling rate: 1000 Hz; app software: Elite HRV App, Version 5.5.1).

Techniques: Comparison

Mean, standard deviation (SD), median, minimum, maximum, adjusted median difference (AMD) as breaths/min (b/min) for the respiratory frequency (RF) comparison of the gas exchange (GE), Polar H10  (H10)  and the Movesense Medical sensor ECG (MS ECG) data according to Hodges–Lehmann method (p-value estimated by Wilcoxon paired testing), Pearson’s r and standard error of estimate (SEE) calculated from paired RF data during the incremental exercise test until voluntary exhaustion.

Journal: Sensors (Basel, Switzerland)

Article Title: 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

doi: 10.3390/s22197156

Figure Lengend Snippet: Mean, standard deviation (SD), median, minimum, maximum, adjusted median difference (AMD) as breaths/min (b/min) for the respiratory frequency (RF) comparison of the gas exchange (GE), Polar H10 (H10) and the Movesense Medical sensor ECG (MS ECG) data according to Hodges–Lehmann method (p-value estimated by Wilcoxon paired testing), Pearson’s r and standard error of estimate (SEE) calculated from paired RF data during the incremental exercise test until voluntary exhaustion.

Article Snippet: Recordings of RR intervals and ECG were taken continuously with two devices at the same time, the Movesense Medical sensor (firmware version 2.0.99) single-channel ECG with chest belt (Movesense, Vantaa, Finland; sampling rate: 512 Hz; app software: Movesense Showcase version 1.0.9), and the Polar H10 sensor chest belt device (Polar Electro Oy, Kempele, Finland; sampling rate: 1000 Hz; app software: Elite HRV App, Version 5.5.1).

Techniques: Standard Deviation, Comparison

Bland–Altman analysis of respiratory frequency (RF) as breaths/min (b/min) for the ( A ) Movesense Medical sensor ECG (MS ECG) and the ( B ) Polar H10 sensor chest belt device (H10) vs the gas exchange data (GE) during the incremental exercise test until voluntary exhaustion. Center solid line in each plot represents the mean bias (difference) between each paired value as absolute values. The top and bottom dashed lines are LoA (1.96 standard deviations from the mean difference).

Journal: Sensors (Basel, Switzerland)

Article Title: 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

doi: 10.3390/s22197156

Figure Lengend Snippet: Bland–Altman analysis of respiratory frequency (RF) as breaths/min (b/min) for the ( A ) Movesense Medical sensor ECG (MS ECG) and the ( B ) Polar H10 sensor chest belt device (H10) vs the gas exchange data (GE) during the incremental exercise test until voluntary exhaustion. Center solid line in each plot represents the mean bias (difference) between each paired value as absolute values. The top and bottom dashed lines are LoA (1.96 standard deviations from the mean difference).

Article Snippet: Recordings of RR intervals and ECG were taken continuously with two devices at the same time, the Movesense Medical sensor (firmware version 2.0.99) single-channel ECG with chest belt (Movesense, Vantaa, Finland; sampling rate: 512 Hz; app software: Movesense Showcase version 1.0.9), and the Polar H10 sensor chest belt device (Polar Electro Oy, Kempele, Finland; sampling rate: 1000 Hz; app software: Elite HRV App, Version 5.5.1).

Techniques:

Respiratory frequency (RF) plotted over time for Movesense Medical sensor ECG (MS ECG), Polar H10 (H10) (Kubios window width: 30 s, grid interval: 1 s) and the gas exchange data (GE) in four representative participants. ( A ): 26-year-old female with a BMI of 30 kg/m², VO 2MAX of 38 mL/kg/min, Kubios artifact rate of 0.5%; ( B ): 27-year-old female with a BMI of 22 kg/m², VO 2MAX of 42 mL/kg/min, Kubios artifact rate of 0.0%; ( C ): 47-year-old male with a BMI of 38 kg/m², VO 2MAX of 31 mL/kg/min, Kubios artifact rate of 0.0%; ( D ): 25-year-old female with a BMI of 21 kg/m², VO 2MAX of 40 mL/kg/min, Kubios HRV artifact rate of 0.7%. MS ECG (red circle), H10 (blue circle), GE (black). Ramp termination corresponds with peak GE respiratory rate. Length of post ramp recovery determined by data recording cessation and artifacts below 3%.

Journal: Sensors (Basel, Switzerland)

Article Title: 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

doi: 10.3390/s22197156

Figure Lengend Snippet: Respiratory frequency (RF) plotted over time for Movesense Medical sensor ECG (MS ECG), Polar H10 (H10) (Kubios window width: 30 s, grid interval: 1 s) and the gas exchange data (GE) in four representative participants. ( A ): 26-year-old female with a BMI of 30 kg/m², VO 2MAX of 38 mL/kg/min, Kubios artifact rate of 0.5%; ( B ): 27-year-old female with a BMI of 22 kg/m², VO 2MAX of 42 mL/kg/min, Kubios artifact rate of 0.0%; ( C ): 47-year-old male with a BMI of 38 kg/m², VO 2MAX of 31 mL/kg/min, Kubios artifact rate of 0.0%; ( D ): 25-year-old female with a BMI of 21 kg/m², VO 2MAX of 40 mL/kg/min, Kubios HRV artifact rate of 0.7%. MS ECG (red circle), H10 (blue circle), GE (black). Ramp termination corresponds with peak GE respiratory rate. Length of post ramp recovery determined by data recording cessation and artifacts below 3%.

Article Snippet: Recordings of RR intervals and ECG were taken continuously with two devices at the same time, the Movesense Medical sensor (firmware version 2.0.99) single-channel ECG with chest belt (Movesense, Vantaa, Finland; sampling rate: 512 Hz; app software: Movesense Showcase version 1.0.9), and the Polar H10 sensor chest belt device (Polar Electro Oy, Kempele, Finland; sampling rate: 1000 Hz; app software: Elite HRV App, Version 5.5.1).

Techniques: