To determine the most accurate method based on spectral analysis of heart-rate variability (SA-HRV) during an incremental and continuous maximal test involving the upper body, the authors tested 4 different methods to obtain the heart rate (HR) at the second ventilatory threshold (VT2). Sixteen ski mountaineers (mean ± SD; age 25 ± 3 y, height 177 ± 8 cm, mass 69 ± 10 kg) performed a roller-ski test on a treadmill. Respiratory variables and HR were continuously recorded, and the 4 SA-HRV methods were compared with the gas-exchange method through Bland and Altman analyses. The best method was the one based on a time-varying spectral analysis with high frequency ranging from 0.15 Hz to a cutoff point relative to the individual's respiratory sinus arrhythmia. The HR values were significantly correlated (r2 = .903), with a mean HR difference with the respiratory method of 0.1 ± 3.0 beats/min and low limits of agreements (around -6 /+6 beats/min). The 3 other methods led to larger errors and lower agreements (up to 5 beats/min and around -23/+20 beats/min). It is possible to accurately determine VT2 with an HR monitor during an incremental test involving the upper body if the appropriate HRV method is used.

Second Ventilatory Threshold From Heart-Rate Variability: Valid When the Upper Body Is Involved? / Mourot, L., Fabre, N., Savoldelli, A., Schena, F.. - In: INTERNATIONAL JOURNAL OF SPORTS PHYSIOLOGY AND PERFORMANCE. - ISSN 1555-0265. - STAMPA. - 9:4(2014), pp. 695-701. [10.1123/IJSPP.2013-0286]

Second Ventilatory Threshold From Heart-Rate Variability: Valid When the Upper Body Is Involved?

SAVOLDELLI, Aldo;SCHENA, Federico
2014-01-01

Abstract

To determine the most accurate method based on spectral analysis of heart-rate variability (SA-HRV) during an incremental and continuous maximal test involving the upper body, the authors tested 4 different methods to obtain the heart rate (HR) at the second ventilatory threshold (VT2). Sixteen ski mountaineers (mean ± SD; age 25 ± 3 y, height 177 ± 8 cm, mass 69 ± 10 kg) performed a roller-ski test on a treadmill. Respiratory variables and HR were continuously recorded, and the 4 SA-HRV methods were compared with the gas-exchange method through Bland and Altman analyses. The best method was the one based on a time-varying spectral analysis with high frequency ranging from 0.15 Hz to a cutoff point relative to the individual's respiratory sinus arrhythmia. The HR values were significantly correlated (r2 = .903), with a mean HR difference with the respiratory method of 0.1 ± 3.0 beats/min and low limits of agreements (around -6 /+6 beats/min). The 3 other methods led to larger errors and lower agreements (up to 5 beats/min and around -23/+20 beats/min). It is possible to accurately determine VT2 with an HR monitor during an incremental test involving the upper body if the appropriate HRV method is used.
2014
4
Mourot, L.; Fabre, N.; Savoldelli, Aldo; Schena, Federico
Second Ventilatory Threshold From Heart-Rate Variability: Valid When the Upper Body Is Involved? / Mourot, L., Fabre, N., Savoldelli, A., Schena, F.. - In: INTERNATIONAL JOURNAL OF SPORTS PHYSIOLOGY AND PERFORMANCE. - ISSN 1555-0265. - STAMPA. - 9:4(2014), pp. 695-701. [10.1123/IJSPP.2013-0286]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11572/490093
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