Cargando…

Interobserver and intraobserver reliabilities of determining the ventilatory thresholds in subjects with a lower limb amputation and able-bodied subjects during a peak exercise test on the combined arm-leg (Cruiser) ergometer

The first (VT1) and second ventilator (VT2) (anaerobic) thresholds are used to individually prescribe exercise training programs. The purpose of this research was to analyze inter- and intraobserver reliabilities of determining VT1 and VT2 in subjects with lower limb amputation (LLA) and able-bodied...

Descripción completa

Detalles Bibliográficos
Autores principales: Simmelink, Elisabeth K., Dijkstra, Pieter U., de Bruijn, Matthijs C., Geertzen, Jan H.B., van der Woude, Lucas H.V, Wempe, Johan B., Dekker, Rienk
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Lippincott Williams & Wilkins 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9348818/
https://www.ncbi.nlm.nih.gov/pubmed/35763453
http://dx.doi.org/10.1097/MRR.0000000000000536
_version_ 1784761996450725888
author Simmelink, Elisabeth K.
Dijkstra, Pieter U.
de Bruijn, Matthijs C.
Geertzen, Jan H.B.
van der Woude, Lucas H.V
Wempe, Johan B.
Dekker, Rienk
author_facet Simmelink, Elisabeth K.
Dijkstra, Pieter U.
de Bruijn, Matthijs C.
Geertzen, Jan H.B.
van der Woude, Lucas H.V
Wempe, Johan B.
Dekker, Rienk
author_sort Simmelink, Elisabeth K.
collection PubMed
description The first (VT1) and second ventilator (VT2) (anaerobic) thresholds are used to individually prescribe exercise training programs. The purpose of this research was to analyze inter- and intraobserver reliabilities of determining VT1 and VT2 in subjects with lower limb amputation (LLA) and able-bodied (AB) subjects during a peak exercise test on the arm-leg (Cruiser) ergometer. Previously published data of exercise tests on the Cruiser ergometer of subjects with LLA (n = 17) and AB subjects (n = 30) were analyzed twice by two observers. The VT1 and VT2 were determined based on ventilation plots. Differences in determining the VT1 and VT2 between the observers for the first and second analyses were analyzed. To quantify variation in measurement a variance component analysis was performed. Bland–Altmann plots were made, and limits of agreement were calculated. The number of observations in which thresholds could not be determined differed significantly between observers and analysis. Variation in VT1 between and within observers was small (0–1.6%) compared with the total variation, for both the subjects with an LLA and AB subjects. The reliability coefficient for VT1 was more than 0.75, and the limits of agreement were good. In conclusion, based on the results of this study on a population level, VT1 can be used to prescribe exercise training programs after an LLA. In the current study, the determination of VT2 was less reliable than VT1. More research is needed into the clinical application of VT1 and VT2 during a peak exercise test on the Cruiser ergometer.
format Online
Article
Text
id pubmed-9348818
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Lippincott Williams & Wilkins
record_format MEDLINE/PubMed
spelling pubmed-93488182022-08-11 Interobserver and intraobserver reliabilities of determining the ventilatory thresholds in subjects with a lower limb amputation and able-bodied subjects during a peak exercise test on the combined arm-leg (Cruiser) ergometer Simmelink, Elisabeth K. Dijkstra, Pieter U. de Bruijn, Matthijs C. Geertzen, Jan H.B. van der Woude, Lucas H.V Wempe, Johan B. Dekker, Rienk Int J Rehabil Res Original Articles The first (VT1) and second ventilator (VT2) (anaerobic) thresholds are used to individually prescribe exercise training programs. The purpose of this research was to analyze inter- and intraobserver reliabilities of determining VT1 and VT2 in subjects with lower limb amputation (LLA) and able-bodied (AB) subjects during a peak exercise test on the arm-leg (Cruiser) ergometer. Previously published data of exercise tests on the Cruiser ergometer of subjects with LLA (n = 17) and AB subjects (n = 30) were analyzed twice by two observers. The VT1 and VT2 were determined based on ventilation plots. Differences in determining the VT1 and VT2 between the observers for the first and second analyses were analyzed. To quantify variation in measurement a variance component analysis was performed. Bland–Altmann plots were made, and limits of agreement were calculated. The number of observations in which thresholds could not be determined differed significantly between observers and analysis. Variation in VT1 between and within observers was small (0–1.6%) compared with the total variation, for both the subjects with an LLA and AB subjects. The reliability coefficient for VT1 was more than 0.75, and the limits of agreement were good. In conclusion, based on the results of this study on a population level, VT1 can be used to prescribe exercise training programs after an LLA. In the current study, the determination of VT2 was less reliable than VT1. More research is needed into the clinical application of VT1 and VT2 during a peak exercise test on the Cruiser ergometer. Lippincott Williams & Wilkins 2022-06-29 2022-09 /pmc/articles/PMC9348818/ /pubmed/35763453 http://dx.doi.org/10.1097/MRR.0000000000000536 Text en Copyright © 2022 The Author(s). Published by Wolters Kluwer Health, Inc. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License 4.0 (CCBY) (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Simmelink, Elisabeth K.
Dijkstra, Pieter U.
de Bruijn, Matthijs C.
Geertzen, Jan H.B.
van der Woude, Lucas H.V
Wempe, Johan B.
Dekker, Rienk
Interobserver and intraobserver reliabilities of determining the ventilatory thresholds in subjects with a lower limb amputation and able-bodied subjects during a peak exercise test on the combined arm-leg (Cruiser) ergometer
title Interobserver and intraobserver reliabilities of determining the ventilatory thresholds in subjects with a lower limb amputation and able-bodied subjects during a peak exercise test on the combined arm-leg (Cruiser) ergometer
title_full Interobserver and intraobserver reliabilities of determining the ventilatory thresholds in subjects with a lower limb amputation and able-bodied subjects during a peak exercise test on the combined arm-leg (Cruiser) ergometer
title_fullStr Interobserver and intraobserver reliabilities of determining the ventilatory thresholds in subjects with a lower limb amputation and able-bodied subjects during a peak exercise test on the combined arm-leg (Cruiser) ergometer
title_full_unstemmed Interobserver and intraobserver reliabilities of determining the ventilatory thresholds in subjects with a lower limb amputation and able-bodied subjects during a peak exercise test on the combined arm-leg (Cruiser) ergometer
title_short Interobserver and intraobserver reliabilities of determining the ventilatory thresholds in subjects with a lower limb amputation and able-bodied subjects during a peak exercise test on the combined arm-leg (Cruiser) ergometer
title_sort interobserver and intraobserver reliabilities of determining the ventilatory thresholds in subjects with a lower limb amputation and able-bodied subjects during a peak exercise test on the combined arm-leg (cruiser) ergometer
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9348818/
https://www.ncbi.nlm.nih.gov/pubmed/35763453
http://dx.doi.org/10.1097/MRR.0000000000000536
work_keys_str_mv AT simmelinkelisabethk interobserverandintraobserverreliabilitiesofdeterminingtheventilatorythresholdsinsubjectswithalowerlimbamputationandablebodiedsubjectsduringapeakexercisetestonthecombinedarmlegcruiserergometer
AT dijkstrapieteru interobserverandintraobserverreliabilitiesofdeterminingtheventilatorythresholdsinsubjectswithalowerlimbamputationandablebodiedsubjectsduringapeakexercisetestonthecombinedarmlegcruiserergometer
AT debruijnmatthijsc interobserverandintraobserverreliabilitiesofdeterminingtheventilatorythresholdsinsubjectswithalowerlimbamputationandablebodiedsubjectsduringapeakexercisetestonthecombinedarmlegcruiserergometer
AT geertzenjanhb interobserverandintraobserverreliabilitiesofdeterminingtheventilatorythresholdsinsubjectswithalowerlimbamputationandablebodiedsubjectsduringapeakexercisetestonthecombinedarmlegcruiserergometer
AT vanderwoudelucashv interobserverandintraobserverreliabilitiesofdeterminingtheventilatorythresholdsinsubjectswithalowerlimbamputationandablebodiedsubjectsduringapeakexercisetestonthecombinedarmlegcruiserergometer
AT wempejohanb interobserverandintraobserverreliabilitiesofdeterminingtheventilatorythresholdsinsubjectswithalowerlimbamputationandablebodiedsubjectsduringapeakexercisetestonthecombinedarmlegcruiserergometer
AT dekkerrienk interobserverandintraobserverreliabilitiesofdeterminingtheventilatorythresholdsinsubjectswithalowerlimbamputationandablebodiedsubjectsduringapeakexercisetestonthecombinedarmlegcruiserergometer