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High-frequency whole-body vibration activates tonic vibration reflex

OBJECTIVES: The aim of this research was to examine whether high-frequency whole-body vibration activates the tonic vibration reflex (TVR). PATIENTS AND METHODS: The experimental study was conducted with seven volunteers (mean age: 30.8±3.3 years; range, 26 to 35 years) between December 2021 and Jan...

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Autores principales: Kalaoğlu, Eser, Faruk Bucak, Ömer, Kökçe, Mustafa, Özkan, Mehmet, Çetin, Mert, Atasoy, Mücahit, Aytüre, Lütfiye, Karacan, İlhan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Bayçınar Medical Publishing 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10186020/
https://www.ncbi.nlm.nih.gov/pubmed/37201009
http://dx.doi.org/10.5606/tftrd.2023.10854
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author Kalaoğlu, Eser
Faruk Bucak, Ömer
Kökçe, Mustafa
Özkan, Mehmet
Çetin, Mert
Atasoy, Mücahit
Aytüre, Lütfiye
Karacan, İlhan
author_facet Kalaoğlu, Eser
Faruk Bucak, Ömer
Kökçe, Mustafa
Özkan, Mehmet
Çetin, Mert
Atasoy, Mücahit
Aytüre, Lütfiye
Karacan, İlhan
author_sort Kalaoğlu, Eser
collection PubMed
description OBJECTIVES: The aim of this research was to examine whether high-frequency whole-body vibration activates the tonic vibration reflex (TVR). PATIENTS AND METHODS: The experimental study was conducted with seven volunteers (mean age: 30.8±3.3 years; range, 26 to 35 years) between December 2021 and January 2022. To elicit soleus TVR, high-frequency (100-150 Hz) vibration was applied to the Achilles tendon. High-frequency (100-150 Hz) whole-body vibration and low-frequency (30-40 Hz) whole-body vibration were applied in quiet standing. Whole-body vibration-induced reflexes were recorded from the soleus muscle using surface electromyography. The cumulative average method was used to determine the reflex latencies. RESULTS: Soleus TVR latency was 35.6±5.9 msec, the latency of the reflex activated by high-frequency whole-body vibration was 34.8±6.2 msec, and the latency of the reflex activated by low-frequency whole-body vibration was 42.8±3.4 msec (F((2, 12))=40.07, p=0.0001, ƞ(2) =0.87). The low-frequency whole-body vibration-induced reflex latency was significantly longer than high-frequency whole-body vibration-induced reflex latency and TVR latency (p=0.002 and p=0.001, respectively). High-frequency whole-body vibration-induced reflex latency and TVR latency were found to be similar (p=0.526). CONCLUSION: This study showed that high-frequency whole-body vibration activates TVR.
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spelling pubmed-101860202023-05-17 High-frequency whole-body vibration activates tonic vibration reflex Kalaoğlu, Eser Faruk Bucak, Ömer Kökçe, Mustafa Özkan, Mehmet Çetin, Mert Atasoy, Mücahit Aytüre, Lütfiye Karacan, İlhan Turk J Phys Med Rehabil Original Article OBJECTIVES: The aim of this research was to examine whether high-frequency whole-body vibration activates the tonic vibration reflex (TVR). PATIENTS AND METHODS: The experimental study was conducted with seven volunteers (mean age: 30.8±3.3 years; range, 26 to 35 years) between December 2021 and January 2022. To elicit soleus TVR, high-frequency (100-150 Hz) vibration was applied to the Achilles tendon. High-frequency (100-150 Hz) whole-body vibration and low-frequency (30-40 Hz) whole-body vibration were applied in quiet standing. Whole-body vibration-induced reflexes were recorded from the soleus muscle using surface electromyography. The cumulative average method was used to determine the reflex latencies. RESULTS: Soleus TVR latency was 35.6±5.9 msec, the latency of the reflex activated by high-frequency whole-body vibration was 34.8±6.2 msec, and the latency of the reflex activated by low-frequency whole-body vibration was 42.8±3.4 msec (F((2, 12))=40.07, p=0.0001, ƞ(2) =0.87). The low-frequency whole-body vibration-induced reflex latency was significantly longer than high-frequency whole-body vibration-induced reflex latency and TVR latency (p=0.002 and p=0.001, respectively). High-frequency whole-body vibration-induced reflex latency and TVR latency were found to be similar (p=0.526). CONCLUSION: This study showed that high-frequency whole-body vibration activates TVR. Bayçınar Medical Publishing 2023-01-11 /pmc/articles/PMC10186020/ /pubmed/37201009 http://dx.doi.org/10.5606/tftrd.2023.10854 Text en Copyright © 2023, Turkish Society of Physical Medicine and Rehabilitation https://creativecommons.org/licenses/by-nc/4.0/This is an open access article under the terms of the Creative Commons Attribution-NonCommercial License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Original Article
Kalaoğlu, Eser
Faruk Bucak, Ömer
Kökçe, Mustafa
Özkan, Mehmet
Çetin, Mert
Atasoy, Mücahit
Aytüre, Lütfiye
Karacan, İlhan
High-frequency whole-body vibration activates tonic vibration reflex
title High-frequency whole-body vibration activates tonic vibration reflex
title_full High-frequency whole-body vibration activates tonic vibration reflex
title_fullStr High-frequency whole-body vibration activates tonic vibration reflex
title_full_unstemmed High-frequency whole-body vibration activates tonic vibration reflex
title_short High-frequency whole-body vibration activates tonic vibration reflex
title_sort high-frequency whole-body vibration activates tonic vibration reflex
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10186020/
https://www.ncbi.nlm.nih.gov/pubmed/37201009
http://dx.doi.org/10.5606/tftrd.2023.10854
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