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A Custom-Made Lower Limb Dynamometer for Assessing Ankle Joint Torque in Humans: Calibration and Measurement Procedures

Custom-made dynamometry was shown to objectively analyze human muscle strength around the ankle joint with accuracy, easy portability and low costs. This paper describes the full method of calibration and measurement setup and the measurement procedure when capturing ankle torque for establishing re...

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Autores principales: Drăgoi, Iulia Iovanca, Popescu, Florina Georgeta, Petrița, Teodor, Tatu, Romulus Fabian, Bondor, Cosmina Ioana, Tatu, Carmen, Bowling, Frank L., Reeves, Neil D., Ionac, Mihai
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8747504/
https://www.ncbi.nlm.nih.gov/pubmed/35009678
http://dx.doi.org/10.3390/s22010135
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author Drăgoi, Iulia Iovanca
Popescu, Florina Georgeta
Petrița, Teodor
Tatu, Romulus Fabian
Bondor, Cosmina Ioana
Tatu, Carmen
Bowling, Frank L.
Reeves, Neil D.
Ionac, Mihai
author_facet Drăgoi, Iulia Iovanca
Popescu, Florina Georgeta
Petrița, Teodor
Tatu, Romulus Fabian
Bondor, Cosmina Ioana
Tatu, Carmen
Bowling, Frank L.
Reeves, Neil D.
Ionac, Mihai
author_sort Drăgoi, Iulia Iovanca
collection PubMed
description Custom-made dynamometry was shown to objectively analyze human muscle strength around the ankle joint with accuracy, easy portability and low costs. This paper describes the full method of calibration and measurement setup and the measurement procedure when capturing ankle torque for establishing reliability of a portable custom-built electronic dynamometer. After considering the load cell offset voltage, the pivotal position was determined, and calibration with loads followed. Linear regression was used for calculating the proportionality constant between torque and measured voltage. Digital means were used for data collection and processing. Four healthy consenting participants were enrolled in the study. Three consecutive maximum voluntary isometric contractions of five seconds each were registered for both feet during plantar flexion/dorsiflexion, and ankle torque was then calculated for three ankle inclinations. A calibration procedure resulted, comprising determination of the pivotal axis and pedal constant. Using the obtained data, a measurement procedure was proposed. Obtained contraction time graphs led to easier filtering of the results. When calculating the interclass correlation, the portable apparatus demonstrated to be reliable when measuring ankle torque. When a custom-made dynamometer was used for capturing ankle torque, accuracy of the method was assured by a rigorous calibration and measurement protocol elaboration.
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spelling pubmed-87475042022-01-11 A Custom-Made Lower Limb Dynamometer for Assessing Ankle Joint Torque in Humans: Calibration and Measurement Procedures Drăgoi, Iulia Iovanca Popescu, Florina Georgeta Petrița, Teodor Tatu, Romulus Fabian Bondor, Cosmina Ioana Tatu, Carmen Bowling, Frank L. Reeves, Neil D. Ionac, Mihai Sensors (Basel) Article Custom-made dynamometry was shown to objectively analyze human muscle strength around the ankle joint with accuracy, easy portability and low costs. This paper describes the full method of calibration and measurement setup and the measurement procedure when capturing ankle torque for establishing reliability of a portable custom-built electronic dynamometer. After considering the load cell offset voltage, the pivotal position was determined, and calibration with loads followed. Linear regression was used for calculating the proportionality constant between torque and measured voltage. Digital means were used for data collection and processing. Four healthy consenting participants were enrolled in the study. Three consecutive maximum voluntary isometric contractions of five seconds each were registered for both feet during plantar flexion/dorsiflexion, and ankle torque was then calculated for three ankle inclinations. A calibration procedure resulted, comprising determination of the pivotal axis and pedal constant. Using the obtained data, a measurement procedure was proposed. Obtained contraction time graphs led to easier filtering of the results. When calculating the interclass correlation, the portable apparatus demonstrated to be reliable when measuring ankle torque. When a custom-made dynamometer was used for capturing ankle torque, accuracy of the method was assured by a rigorous calibration and measurement protocol elaboration. MDPI 2021-12-25 /pmc/articles/PMC8747504/ /pubmed/35009678 http://dx.doi.org/10.3390/s22010135 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Drăgoi, Iulia Iovanca
Popescu, Florina Georgeta
Petrița, Teodor
Tatu, Romulus Fabian
Bondor, Cosmina Ioana
Tatu, Carmen
Bowling, Frank L.
Reeves, Neil D.
Ionac, Mihai
A Custom-Made Lower Limb Dynamometer for Assessing Ankle Joint Torque in Humans: Calibration and Measurement Procedures
title A Custom-Made Lower Limb Dynamometer for Assessing Ankle Joint Torque in Humans: Calibration and Measurement Procedures
title_full A Custom-Made Lower Limb Dynamometer for Assessing Ankle Joint Torque in Humans: Calibration and Measurement Procedures
title_fullStr A Custom-Made Lower Limb Dynamometer for Assessing Ankle Joint Torque in Humans: Calibration and Measurement Procedures
title_full_unstemmed A Custom-Made Lower Limb Dynamometer for Assessing Ankle Joint Torque in Humans: Calibration and Measurement Procedures
title_short A Custom-Made Lower Limb Dynamometer for Assessing Ankle Joint Torque in Humans: Calibration and Measurement Procedures
title_sort custom-made lower limb dynamometer for assessing ankle joint torque in humans: calibration and measurement procedures
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8747504/
https://www.ncbi.nlm.nih.gov/pubmed/35009678
http://dx.doi.org/10.3390/s22010135
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