The Influence of Baseline Metabolic Rate and Exercise Training on Cardio-Respiratory Dynamics
Speeding the VO2 kinetics results in a reduction of the O2 deficit. Two factors might determine VO2 kinetics: oxygen delivery to muscle (Tschakovsky and Hughson 1999) and a muscle 'metabolic inertia' (Grassi et al. 1996). Therefore, in study 1 we investigated VO2 kinetics and cardiovas...
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ndltd-unibo.it-oai-amsdottorato.cib.unibo.it-48732014-11-20T04:54:04Z The Influence of Baseline Metabolic Rate and Exercise Training on Cardio-Respiratory Dynamics Da Boit, Mariasole <1984> BIO/09 Fisiologia Speeding the VO2 kinetics results in a reduction of the O2 deficit. Two factors might determine VO2 kinetics: oxygen delivery to muscle (Tschakovsky and Hughson 1999) and a muscle 'metabolic inertia' (Grassi et al. 1996). Therefore, in study 1 we investigated VO2 kinetics and cardiovascular system adaptations during step exercise transitions in different regions of the moderate domain. In study 2 we investigated muscle oxygenation and cardio-pulmonary adaptations during step exercise tests before, after and over a period of training. Study 1 methods: Seven subjects (26 ± 8 yr; 176 ± 5 cm; 69 ± 6 kg) performed 4 types of step transition from rest (0-50W; 0-100W) or elevate baseline (25-75W; 25-125W). GET and VO2max were assessed before testing. O2 uptake and were measured during testing. Study 2 methods: 10 subjects (25 ± 4 yr; 175 ± 9 cm; 71 ± 12 kg) performed a step transition test (0 to 100 W) before, after and during 4 weeks of endurance training (ET). VO2max and GET were assessed before and after of ET (40 minutes, 3 times a week, 60% O2max). VO2 uptake, Q and deoxyheamoglobin were measured during testing. Study 1 results: VO2 τ and the functional gain were slower in the upper regions of the moderate domain. Q increased more abruptly during rest to work condition. Q τ was faster than VO2 τ for each exercise step. Study 2 results: VO2 τ became faster after ET (25%) and particularly after 1 training session (4%). Q kinetics changed after 4 training sessions nevertheless it was always faster than VO2 τ. An attenuation in ∆[HHb] /∆VO2 was detectible. Conclusion: these investigations suggest that muscle fibres recruitment exerts a influence on the VO2 response within the moderate domain either during different forms of step transition or following ET. Alma Mater Studiorum - Università di Bologna Squatrito, Salvatore 2012-05-03 Doctoral Thesis PeerReviewed application/pdf en http://amsdottorato.unibo.it/4873/ info:eu-repo/semantics/openAccess |
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BIO/09 Fisiologia |
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BIO/09 Fisiologia Da Boit, Mariasole <1984> The Influence of Baseline Metabolic Rate and Exercise Training on Cardio-Respiratory Dynamics |
description |
Speeding the VO2 kinetics results in a reduction of the O2 deficit.
Two factors might determine VO2 kinetics: oxygen delivery to muscle (Tschakovsky and Hughson 1999) and a muscle 'metabolic inertia' (Grassi et al. 1996).
Therefore, in study 1 we investigated VO2 kinetics and cardiovascular system adaptations during step exercise transitions in different regions of the moderate domain.
In study 2 we investigated muscle oxygenation and cardio-pulmonary adaptations during step exercise tests before, after and over a period of training.
Study 1 methods: Seven subjects (26 ± 8 yr; 176 ± 5 cm; 69 ± 6 kg) performed 4 types of step transition from rest (0-50W; 0-100W) or elevate baseline (25-75W; 25-125W). GET and VO2max were assessed before testing. O2 uptake and were measured during testing.
Study 2 methods: 10 subjects (25 ± 4 yr; 175 ± 9 cm; 71 ± 12 kg) performed a step transition test (0 to 100 W) before, after and during 4 weeks of endurance training (ET). VO2max and GET were assessed before and after of ET (40 minutes, 3 times a week, 60% O2max). VO2 uptake, Q and deoxyheamoglobin were measured during testing.
Study 1 results: VO2 τ and the functional gain were slower in the upper regions of the moderate domain. Q increased more abruptly during rest to work condition. Q τ was faster than VO2 τ for each exercise step.
Study 2 results: VO2 τ became faster after ET (25%) and particularly after 1 training session (4%). Q kinetics changed after 4 training sessions nevertheless it was always faster than VO2 τ. An attenuation in ∆[HHb] /∆VO2 was detectible.
Conclusion: these investigations suggest that muscle fibres recruitment exerts a influence on the VO2 response within the moderate domain either during different forms of step transition or following ET.
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author2 |
Squatrito, Salvatore |
author_facet |
Squatrito, Salvatore Da Boit, Mariasole <1984> |
author |
Da Boit, Mariasole <1984> |
author_sort |
Da Boit, Mariasole <1984> |
title |
The Influence of Baseline Metabolic Rate and Exercise Training on Cardio-Respiratory Dynamics |
title_short |
The Influence of Baseline Metabolic Rate and Exercise Training on Cardio-Respiratory Dynamics |
title_full |
The Influence of Baseline Metabolic Rate and Exercise Training on Cardio-Respiratory Dynamics |
title_fullStr |
The Influence of Baseline Metabolic Rate and Exercise Training on Cardio-Respiratory Dynamics |
title_full_unstemmed |
The Influence of Baseline Metabolic Rate and Exercise Training on Cardio-Respiratory Dynamics |
title_sort |
influence of baseline metabolic rate and exercise training on cardio-respiratory dynamics |
publisher |
Alma Mater Studiorum - Università di Bologna |
publishDate |
2012 |
url |
http://amsdottorato.unibo.it/4873/ |
work_keys_str_mv |
AT daboitmariasole1984 theinfluenceofbaselinemetabolicrateandexercisetrainingoncardiorespiratorydynamics AT daboitmariasole1984 influenceofbaselinemetabolicrateandexercisetrainingoncardiorespiratorydynamics |
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1716720137105571840 |