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RunScribe Sacral Gait Lab™ Validation for Measuring Pelvic Kinematics during Human Locomotion at Different Speeds

Optoelectronic motion capture systems are considered the gold standard for measuring walking and running kinematics parameters. However, these systems prerequisites are not feasible for practitioners as they entail a laboratory environment and time to process and calculate the data. Therefore, this...

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Autores principales: Ruiz-Malagón, Emilio J., García-Pinillos, Felipe, Molina-Molina, Alejandro, Soto-Hermoso, Víctor M., Ruiz-Alias, Santiago A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10007442/
https://www.ncbi.nlm.nih.gov/pubmed/36904808
http://dx.doi.org/10.3390/s23052604
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author Ruiz-Malagón, Emilio J.
García-Pinillos, Felipe
Molina-Molina, Alejandro
Soto-Hermoso, Víctor M.
Ruiz-Alias, Santiago A.
author_facet Ruiz-Malagón, Emilio J.
García-Pinillos, Felipe
Molina-Molina, Alejandro
Soto-Hermoso, Víctor M.
Ruiz-Alias, Santiago A.
author_sort Ruiz-Malagón, Emilio J.
collection PubMed
description Optoelectronic motion capture systems are considered the gold standard for measuring walking and running kinematics parameters. However, these systems prerequisites are not feasible for practitioners as they entail a laboratory environment and time to process and calculate the data. Therefore, this study aims to evaluate the validity of the three-sensor RunScribe Sacral Gait Lab™ inertial measurement unit (IMU) in measuring pelvic kinematics in terms of vertical oscillation, tilt, obliquity, rotational range of motion, and the maximum angular rates during walking and running on a treadmill. Pelvic kinematic parameters were measured simultaneously using an eight-camera motion analysis system (Qualisys Medical AB, GÖTEBORG, Sweden) and the three-sensor RunScribe Sacral Gait Lab™ (Scribe Lab. Inc. San Francisco, CA, USA) in a sample of 16 healthy young adults. An acceptable level of agreement was considered if the following criteria were met: low bias and SEE (<0.2 times the between-subject differences SD), almost perfect (r > 0.90), and good reliability (ICC > 0.81). The results obtained reveal that the three-sensor RunScribe Sacral Gait Lab™ IMU did not reach the validity criteria established for any of the variables and velocities tested. The results obtained therefore show significant differences between the systems for the pelvic kinematic parameters measured during both walking and running.
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spelling pubmed-100074422023-03-12 RunScribe Sacral Gait Lab™ Validation for Measuring Pelvic Kinematics during Human Locomotion at Different Speeds Ruiz-Malagón, Emilio J. García-Pinillos, Felipe Molina-Molina, Alejandro Soto-Hermoso, Víctor M. Ruiz-Alias, Santiago A. Sensors (Basel) Article Optoelectronic motion capture systems are considered the gold standard for measuring walking and running kinematics parameters. However, these systems prerequisites are not feasible for practitioners as they entail a laboratory environment and time to process and calculate the data. Therefore, this study aims to evaluate the validity of the three-sensor RunScribe Sacral Gait Lab™ inertial measurement unit (IMU) in measuring pelvic kinematics in terms of vertical oscillation, tilt, obliquity, rotational range of motion, and the maximum angular rates during walking and running on a treadmill. Pelvic kinematic parameters were measured simultaneously using an eight-camera motion analysis system (Qualisys Medical AB, GÖTEBORG, Sweden) and the three-sensor RunScribe Sacral Gait Lab™ (Scribe Lab. Inc. San Francisco, CA, USA) in a sample of 16 healthy young adults. An acceptable level of agreement was considered if the following criteria were met: low bias and SEE (<0.2 times the between-subject differences SD), almost perfect (r > 0.90), and good reliability (ICC > 0.81). The results obtained reveal that the three-sensor RunScribe Sacral Gait Lab™ IMU did not reach the validity criteria established for any of the variables and velocities tested. The results obtained therefore show significant differences between the systems for the pelvic kinematic parameters measured during both walking and running. MDPI 2023-02-27 /pmc/articles/PMC10007442/ /pubmed/36904808 http://dx.doi.org/10.3390/s23052604 Text en © 2023 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
Ruiz-Malagón, Emilio J.
García-Pinillos, Felipe
Molina-Molina, Alejandro
Soto-Hermoso, Víctor M.
Ruiz-Alias, Santiago A.
RunScribe Sacral Gait Lab™ Validation for Measuring Pelvic Kinematics during Human Locomotion at Different Speeds
title RunScribe Sacral Gait Lab™ Validation for Measuring Pelvic Kinematics during Human Locomotion at Different Speeds
title_full RunScribe Sacral Gait Lab™ Validation for Measuring Pelvic Kinematics during Human Locomotion at Different Speeds
title_fullStr RunScribe Sacral Gait Lab™ Validation for Measuring Pelvic Kinematics during Human Locomotion at Different Speeds
title_full_unstemmed RunScribe Sacral Gait Lab™ Validation for Measuring Pelvic Kinematics during Human Locomotion at Different Speeds
title_short RunScribe Sacral Gait Lab™ Validation for Measuring Pelvic Kinematics during Human Locomotion at Different Speeds
title_sort runscribe sacral gait lab™ validation for measuring pelvic kinematics during human locomotion at different speeds
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10007442/
https://www.ncbi.nlm.nih.gov/pubmed/36904808
http://dx.doi.org/10.3390/s23052604
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