Modeling of Cerebrospinal Fluid for Impact Biomechanics
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Publisher
Springer Nature Switzerland
Link
https://link.springer.com/content/pdf/10.1007/978-3-031-55315-8_27
Reference17 articles.
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2. Bailly, N., Diotalevi, L., Beauséjour, M.-H., Wagnac, É., Mac-Thiong, J.-M., Petit, Y.: Numerical investigation of the relative effect of disc bulging and ligamentum flavum hypertrophy on the mechanism of central cord syndrome. Clin. Biomech. 74, 58–65 (2020)
3. Beauséjour, M.-H., Wagnac, E., Arnoux, P.-J., Thiong, J.-M.M., Petit, Y.: Numerical investigation of spinal cord injury after flexion-distraction injuries at the cervical spine. J. Biomech. Eng. 144 (2022)
4. Jones, C.F., Kroeker, S.G., Cripton, P.A., Hall, R.M.: The effect of cerebrospinal fluid on the biomechanics of spinal cord: an: ex vivo: bovine model using bovine and physical surrogate spinal cord. Spine 33, E580–E588 (2008)
5. Persson, C., McLure, S.W.D., Summers, J., Hall, R.M.: The effect of bone fragment size and cerebrospinal fluid on spinal cord deformation during trauma: an ex vivo study: laboratory investigation. J. Neurosurg. Spine 10, 315–323 (2009)
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