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Human Cervical Intervertebral Disc Pressure Response During Non-Injurious Quasistatic Motion: A Feasibility Study

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Date
2025-06-01
Author
Jiménez Octavio, Jesús Ramón
Carpintero Rubio, Carlos Javier
Sochor, Mark
Asensio Gil, Juan Manuel
Rodríguez-Morcillo García, Carlos
López Valdés, Francisco José
Estado
info:eu-repo/semantics/publishedVersion
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Abstract
 
 
The human neck is highly vulnerable in motor vehicle crashes, and cervical spine response data are essential to improve injury prediction tools (e.g., crash test dummies, human body models). This feasibility study aimed to implement the use of pressure sensors in whole-body post-mortem human subject (PMHS) cervical spine intervertebral discs (IVDs) to confirm the feasibility and repeatability of cervical IVD pressure response to biomechanic research. Two fresh frozen whole-body PMHSs were instrumented with miniature pressure sensors (Model 060S, Precision Measurement Company, Ann Arbor, MI, USA) at three cervical IVD levels (C3C4, C5C6, and C7T1) using minimally invasive surgical insertion techniques. Each PMHS underwent three quasistatic motion test trials, and each trial included multiple headneck motions (i.e., gentle traction, flexionextension, lateral bending, axial rotation, and forced tensioncompression). Results showed marked pressure differences between both the cervical level assessed and the motion undertaken as well as successful intra-subject repeatability between the three motion trials. This study demonstrates that changes in cervical IVD pressure are associated with motion events of the cervical spine. Cervical IVD response data could be utilized to assess and supplement the characterization of the headneck complex motion, and data could facilitate the continued improvement of injury prediction tools.
 
URI
https:doi.org10.3390app15116167
http://hdl.handle.net/11531/101285
Human Cervical Intervertebral Disc Pressure Response During Non-Injurious Quasistatic Motion: A Feasibility Study
Tipo de Actividad
Artículos en revistas
ISSN
2076-3417
Materias/ categorías / ODS
Instituto de Investigación Tecnológica (IIT)
Palabras Clave

biomechanics; cervical spine; neck; intervertebral disc; cadaver; whole body; PMHS; pressure; injury prevention; non-injurious
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