Multi-scale mechanics of traumatic brain injury: predicting axonal strains from head loads.
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Traumatic Axonal Injury: Mechanisms and Translational OpportunitiesNeuroimaging assessment of early and late neurobiological sequelae of traumatic brain injury: implications for CTEMechanics of the brain: perspectives, challenges, and opportunitiesCellular biomechanics of central nervous system injurySystems Biology, Neuroimaging, Neuropsychology, Neuroconnectivity and Traumatic Brain Injury.Viscoelasticity of tau proteins leads to strain rate-dependent breaking of microtubules during axonal stretch injury: predictions from a mathematical model.A modified controlled cortical impact technique to model mild traumatic brain injury mechanics in mice.The importance of structural anisotropy in computational models of traumatic brain injuryGroup-wise evaluation and comparison of white matter fiber strain and maximum principal strain in sports-related concussionNeurite, a finite difference large scale parallel program for the simulation of electrical signal propagation in neurites under mechanical loadingWhite matter tract-oriented deformation predicts traumatic axonal brain injury and reveals rotational direction-specific vulnerabilities.Mechanical Effects of Dynamic Binding between Tau Proteins on Microtubules during Axonal InjuryWhite Matter Injury Susceptibility via Fiber Strain Evaluation Using Whole-Brain Tractography.Application of FTIR spectroscopy for traumatic axonal injury: a possible tool for estimating injury intervalConnecting fractional anisotropy from medical images with mechanical anisotropy of a hyperviscoelastic fibre-reinforced constitutive model for brain tissue.A computational model coupling mechanics and electrophysiology in spinal cord injury.Postconcussional disorder and PTSD symptoms of military-related traumatic brain injury associated with compromised neurocircuitry.Coupled Simulation of Heart Valves: Applications to Clinical Practice.Viscoelastic computational modeling of the human head-neck system: Eigenfrequencies and time-dependent analysis.Utilizing multiple scale models to improve predictions of extra-axial hemorrhage in the immature piglet.The Dynamics of Concussion: Mapping Pathophysiology, Persistence, and Recovery With Causal-Loop Diagramming.Physical Biology of Axonal Damage.
P2860
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P2860
Multi-scale mechanics of traumatic brain injury: predicting axonal strains from head loads.
description
2012 nî lūn-bûn
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2012年の論文
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2012年学术文章
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Multi-scale mechanics of traum ...... xonal strains from head loads.
@en
Multi-scale mechanics of traum ...... xonal strains from head loads.
@nl
type
label
Multi-scale mechanics of traum ...... xonal strains from head loads.
@en
Multi-scale mechanics of traum ...... xonal strains from head loads.
@nl
prefLabel
Multi-scale mechanics of traum ...... xonal strains from head loads.
@en
Multi-scale mechanics of traum ...... xonal strains from head loads.
@nl
P2093
P2860
P1476
Multi-scale mechanics of traum ...... xonal strains from head loads.
@en
P2093
J A W van Dommelen
M G D Geers
R J H Cloots
P2860
P2888
P304
P356
10.1007/S10237-012-0387-6
P577
2012-03-21T00:00:00Z