Comparison of biomechanical parameters of two Chinese cervical spine rotation manipulations based on motion capture and finite element analysis.

Front Bioeng Biotechnol

Guangdong Engineering Research Center for Translation of Medical 3D Printing Application, Guangdong Provincial Key Laboratory of Medical Biomechanics, National Key Discipline of Human Anatomy, School of Basic Medical Sciences, Southern Medical University, Guangzhou, China.

Published: July 2023

AI Article Synopsis

  • - The study aimed to compare the stress-strain responses of the cervical spine during two types of manipulations: oblique pulling and cervical rotation-traction, using motion capture and 3D finite element modeling.
  • - The simulation showed that oblique pulling manipulation resulted in greater stress on intervertebral discs and facet joints, while cervical rotation-traction caused higher stresses on the spinal cord and nerve roots, particularly at the C4/5 and C5/6 segments.
  • - The findings suggest that oblique pulling may be more beneficial for treating cervical spondylotic radiculopathy, while cervical rotation-traction is better suited for cervical spondylosis, indicating that clinicians should tailor manipulations based on patient-specific symptoms

Article Abstract

The purpose of this study was to obtain the stress-strain of the cervical spine structure during the simulated manipulation of the oblique pulling manipulation and the cervical rotation-traction manipulation in order to compare the mechanical mechanism of the two manipulations. A motion capture system was used to record the key kinematic parameters of operating the two manipulations. At the same time, a three-dimensional finite element model of the C0-T1 full healthy cervical spine was established, and the key kinematic parameters were loaded onto the finite element model in steps to analyze and simulate the detailed process of the operation of the two manipulations. A detailed finite element model of the whole cervical spine including spinal nerve roots was established, and the validity of this 3D finite element model was verified. During the stepwise simulation of the two cervical spine rotation manipulations to the right, the disc (including the annulus fibrosus and nucleus pulposus) and facet joints stresses and displacements were greater in the oblique pulling manipulation group than in the cervical rotation-traction manipulation group, while the spinal cord and nerve root stresses were greater in the cervical rotation-traction manipulation group than in the oblique pulling manipulation group. The spinal cord and nerve root stresses in the cervical rotation-traction manipulation group were mainly concentrated in the C4/5 and C5/6 segments. The oblique pulling manipulation may be more appropriate for the treatment of cervical spondylotic radiculopathy, while cervical rotation-traction manipulation is more appropriate for the treatment of cervical spondylosis of cervical type. Clinicians should select cervical rotation manipulations for different types of cervical spondylosis according to the patient's symptoms and needs.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10415076PMC
http://dx.doi.org/10.3389/fbioe.2023.1195583DOI Listing

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