Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Numerical Investigation of Spinal Cord Injury After Flexion-Distraction Injuries at the Cervical Spine

View through CrossRef
AbstractFlexion-distraction injuries frequently cause traumatic cervical spinal cord injury (SCI). Post-traumatic instability can cause aggravation of the secondary SCI during patient care. However, there is little information on how the pattern of disco-ligamentous injury affects the SCI severity and mechanism. This study objective was to analyze how posterior disco-ligamentous injuries affect spinal cord compression and stress and strain patterns in the spinal cord during post-traumatic flexion and extension. A cervical spine finite element model including the spinal cord was used and different combinations of partial or complete intervertebral disc (IVD) rupture and disruption of various posterior ligaments were modeled at C4–C5, C5–C6, or C6–C7. In flexion, complete IVD rupture combined with posterior ligamentous complex rupture was the most severe injury leading to the highest von Mises stress (47–66 kPa), principal strains p1 (0.32–0.41 in white matter) and p3 (−0.78 to −0.96 in white matter) in the spinal cord and the highest spinal cord compression (35–48%). The main post-trauma SCI mechanism was identified as the compression of the anterior white matter at the injured level combined with distraction of the posterior spinal cord during flexion. There was also a concentration of the maximum stresses in the gray matter during post-traumatic flexion. Finally, in extension, the injuries tested had little impact on the spinal cord. The capsular ligament was the most important structure to protect the spinal cord. Its status should be carefully examined during the patient's management.
Title: Numerical Investigation of Spinal Cord Injury After Flexion-Distraction Injuries at the Cervical Spine
Description:
AbstractFlexion-distraction injuries frequently cause traumatic cervical spinal cord injury (SCI).
Post-traumatic instability can cause aggravation of the secondary SCI during patient care.
However, there is little information on how the pattern of disco-ligamentous injury affects the SCI severity and mechanism.
This study objective was to analyze how posterior disco-ligamentous injuries affect spinal cord compression and stress and strain patterns in the spinal cord during post-traumatic flexion and extension.
A cervical spine finite element model including the spinal cord was used and different combinations of partial or complete intervertebral disc (IVD) rupture and disruption of various posterior ligaments were modeled at C4–C5, C5–C6, or C6–C7.
In flexion, complete IVD rupture combined with posterior ligamentous complex rupture was the most severe injury leading to the highest von Mises stress (47–66 kPa), principal strains p1 (0.
32–0.
41 in white matter) and p3 (−0.
78 to −0.
96 in white matter) in the spinal cord and the highest spinal cord compression (35–48%).
The main post-trauma SCI mechanism was identified as the compression of the anterior white matter at the injured level combined with distraction of the posterior spinal cord during flexion.
There was also a concentration of the maximum stresses in the gray matter during post-traumatic flexion.
Finally, in extension, the injuries tested had little impact on the spinal cord.
The capsular ligament was the most important structure to protect the spinal cord.
Its status should be carefully examined during the patient's management.

Related Results

Spinal Cord Injury Rehabilitation: Basics and Beyond
Spinal Cord Injury Rehabilitation: Basics and Beyond
This special issue is dedicated to the Borneo International Spinal Cord Injury (SCI) Rehabilitation Conference (BISCIR) which was held on 30th July – 1st August 2021 through a virt...
Spinal Cord Injury Rehabilitation: Basics and Beyond
Spinal Cord Injury Rehabilitation: Basics and Beyond
This special issue is dedicated to the Borneo International Spinal Cord Injury (SCI) Rehabilitation Conference (BISCIR) which was held on 30th July – 1st August 2021 through a virt...
Spinal cord injury as a component of polytrauma in road accident victims
Spinal cord injury as a component of polytrauma in road accident victims
Background. Road traffic injury remains one of the most serious and complex types of human injury both in Ukraine and around the world. The purpose of the research: to determine th...
GABAergic Signaling during Spinal Cord Stimulation Reduces Cardiac Arrhythmias in a Porcine Model
GABAergic Signaling during Spinal Cord Stimulation Reduces Cardiac Arrhythmias in a Porcine Model
Background Neuraxial modulation, including spinal cord stimulation, reduces cardiac sympathoexcitation and ventricular arrhythmogenesis. There is an incomplete understa...
Role of Magnetic Resonance Imaging in Evaluation of Compressive Myelopathy
Role of Magnetic Resonance Imaging in Evaluation of Compressive Myelopathy
Introduction: Myelopathy describes any neurologic deficit related to the spinal cord. Myelopathy is usually due to compression of the spinal cord by osteophyte or extruded disk mat...
Comparison between upper thoracic spine mobilization and the Ergon technique in the treatment of mechanical neck pain
Comparison between upper thoracic spine mobilization and the Ergon technique in the treatment of mechanical neck pain
Upper thoracic spine mobilization and the Ergon technique are used to treat mechanical neck pain in order to speed recovery, promote tissue healing and improve range of motion. The...
Early decompression promotes motor recovery after cervical spinal cord injury in rats with chronic cervical spinal cord compression
Early decompression promotes motor recovery after cervical spinal cord injury in rats with chronic cervical spinal cord compression
Abstract BackgroundThe number of elderly patients with spinal cord injury without radiographic abnormalities (SCIWORA) has been increasing in recent years and is true of mo...
Early decompression promotes motor recovery after cervical spinal cord injury in rats with chronic cervical spinal cord compression
Early decompression promotes motor recovery after cervical spinal cord injury in rats with chronic cervical spinal cord compression
AbstractThe number of elderly patients with spinal cord injury without radiographic abnormalities (SCIWORA) has been increasing in recent years and common of most cervical spinal c...

Back to Top