Characterisation of the mechanical behaviour of brain tissue in compression and shear.
Hrapko M, van Dommelen JA, Peters GW, Wismans JS.
Biorheology. 2008;45(6):663-76.
PMID:19065013
Frequency and time dependent viscoelastic characterization of pediatric porcine brain tissue in compression.
Li W, Shepherd DET, Espino DM.
Biomech Model Mechanobiol. 2024 Aug;23(4):1197-1207. doi: 10.1007/s10237-024-01833-7. Epub 2024 Mar 14.
PMID:38483696
A theoretically based index of consciousness independent of sensory processing and behavior.
Casali AG, Gosseries O, Rosanova M, Boly M, Sarasso S, Casali KR, Casarotto S, Bruno MA, Laureys S, Tononi G, Massimini M.
Sci Transl Med. 2013 Aug 14;5(198):198ra105. doi: 10.1126/scitranslmed.3006294.
PMID:23946194
Elucidating the role of compression waves and impact duration for generating mild traumatic brain injury in rats.
Lucke-Wold BP, Phillips M, Turner RC, Logsdon AF, Smith KE, Huber JD, Rosen CL, Regele JD.
Brain Inj. 2017;31(1):98-105. doi: 10.1080/02699052.2016.1218547. Epub 2016 Nov 23.
PMID:27880054
A comprehensive study on the mechanical properties of different regions of 8-week-old pediatric porcine brain under tension, shear, and compression at various strain rates.
Li Z, Ji C, Li D, Luo R, Wang G, Jiang J.
J Biomech. 2020 Jan 2;98:109380. doi: 10.1016/j.jbiomech.2019.109380. Epub 2019 Oct 10.
PMID:31630775
Mechanisms of mechanical load transfer through brain tissue.
Reiter N, Paulsen F, Budday S.
Sci Rep. 2023 May 29;13(1):8703. doi: 10.1038/s41598-023-35768-3.