Tensile mechanical analysis of anisotropy and velocity dependence of the spinal cord white matter: a biomechanical study.
anisotropy dependence
external force
mechanistic analysis
spinal cord injury
straining rate
stress
velocity dependence
white matter
Journal
Neural regeneration research
ISSN: 1673-5374
Titre abrégé: Neural Regen Res
Pays: India
ID NLM: 101316351
Informations de publication
Date de publication:
Dec 2021
Dec 2021
Historique:
entrez:
28
4
2021
pubmed:
29
4
2021
medline:
29
4
2021
Statut:
ppublish
Résumé
In spinal cord injuries, external forces from various directions occur at various velocities. Therefore, it is important to physically evaluate whether the spinal cord is susceptible to damage and an increase in internal stress for external forces. We hypothesized that the spinal cord has mechanical features that vary under stress depending on the direction and velocity of injury. However, it is difficult to perform experiment because the spinal cord is very soft. There are no reports on the effects of multiple external forces. In this study, we used bovine spinal cord white matter to test and analyze the anisotropy and velocity dependence of the spinal cord. Tensile-vertical, tensile-parallel, shear-vertical, and shear-parallel tests were performed on the white matter in the fibrous direction (cranial to caudal). Strain rate in the experiment was 0.1, 1, 10, and 100/s. We calculated the Young's modulus of the spinal cord. Results of the tensile and shear tests revealed that stress tended to increase when external forces were applied parallel to the direction of axon fibers, such as in tensile-vertical and shear-vertical tests. However, external forces those tear against the fibrous direction and vertically, such as in tensile-parallel and shear-parallel tests, were less likely to increase stress even with increased velocity. We found that the spinal cord was prone to external forces, especially in the direction of the fibers, and to be under increased stress levels when the velocity of external forces increased. From these results, we confirmed that the spinal cord has velocity dependence and anisotropy. The Institutional Animal Care and Use Committee of Yamaguchi University waived the requirement for ethical approval.
Identifiants
pubmed: 33907048
pii: NeuralRegenRes_2021_16_12_2557_313059
doi: 10.4103/1673-5374.313059
pmc: PMC8374559
doi:
Types de publication
Journal Article
Langues
eng
Pagination
2557-2562Déclaration de conflit d'intérêts
None
Références
Med Biol Eng Comput. 1979 Mar;17(2):170-6
pubmed: 312393
Ann Biomed Eng. 1998 May-Jun;26(3):381-90
pubmed: 9570221
Exp Ther Med. 2018 Mar;15(3):2824-2829
pubmed: 29599828
Surg Clin North Am. 2017 Oct;97(5):1031-1045
pubmed: 28958356
J Neurol. 1997 Apr;244(4):222-9
pubmed: 9112590
Biophys J. 2015 May 5;108(9):2137-47
pubmed: 25954872
J Spinal Disord Tech. 2004 Apr;17(2):154-7
pubmed: 15260100
Neurosurgery. 2005 May;56(5):1101-13; discussion 1101-13
pubmed: 15854260
Acta Biomater. 2018 Jul 1;74:260-269
pubmed: 29729417
J Korean Neurosurg Soc. 2020 Jan;63(1):89-98
pubmed: 31079447
Am J Med. 2018 Nov;131(11):1293-1297
pubmed: 29605415
Clin Spine Surg. 2016 Dec;29(10):408-414
pubmed: 27352369
Neural Regen Res. 2020 Jul;15(7):1344-1349
pubmed: 31960823
Neurosurg Rev. 2019 Jun;42(2):371-388
pubmed: 29455369
J Biomech. 1990;23(8):823-36
pubmed: 2384494
J Spinal Cord Med. 2017 Jan;40(1):93-99
pubmed: 26788904
J Biomech Eng. 1983 May;105(2):194-5
pubmed: 6865363
Clin Neurol Neurosurg. 2017 Nov;162:108-114
pubmed: 29017106
Neural Regen Res. 2015 Nov;10(11):1869-73
pubmed: 26807127
J Neurosurg. 2001 Oct;95(2 Suppl):221-4
pubmed: 11599840
Orthopade. 2018 Jun;47(6):474-482
pubmed: 29651521
J Neurosurg Spine. 2018 Aug;29(2):150-156
pubmed: 29726802
Int Orthop. 2019 Apr;43(4):797-805
pubmed: 30116867
Lancet. 2002 Feb 2;359(9304):417-25
pubmed: 11844532
J Neurosurg. 2003 Oct;99(3 Suppl):278-85
pubmed: 14563145
J Neurosurg. 1991 Jul;75(1):15-26
pubmed: 2045903
Biorheology. 1973 Sep;10(3):469-79
pubmed: 4772019
Medicine (Baltimore). 2018 Jul;97(29):e11542
pubmed: 30024545
Spine (Phila Pa 1976). 2017 Apr 1;42 Suppl 7:S22
pubmed: 28296701