A comparison of the elasticity of live, dead, and fixed brain tissue.
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The mechanics of traumatic brain injury: a review of what we know and what we need to know for reducing its societal burdenMagnetic resonance elastography of the brain.On the characterization of the heterogeneous mechanical response of human brain tissue.Deformative stress associated with an abnormal clivo-axial angle: A finite element analysis.Effects of white, grey, and pia mater properties on tissue level stresses and strains in the compressed spinal cordEffects of polycaprolactone-based scaffolds on the blood-brain barrier and cerebral inflammationOptically based-indentation technique for acute rat brain tissue slices and thin biomaterials.Effect of needle insertion speed on tissue injury, stress, and backflow distribution for convection-enhanced delivery in the rat brain.Mechanical properties of gray and white matter brain tissue by indentation.A Wireless Intracranial Brain Deformation Sensing System for Blast-Induced Traumatic Brain InjuryStretchy proteins on stretchy substrates: the important elements of integrin-mediated rigidity sensing.Biophysics of substrate interaction: influence on neural motility, differentiation, and repair.Building biocompatible hydrogels for tissue engineering of the brain and spinal cordBiomechanical properties of the spinal cord: implications for tissue engineering and clinical translation.A compressible scaffold for minimally invasive delivery of large intact neuronal networks.A comparison of polymer substrates for photolithographic processing of flexible bioelectronics.Is the Donnan effect sufficient to explain swelling in brain tissue slices?An anthropomorphic polyvinyl alcohol brain phantom based on Colin27 for use in multimodal imaging.Effect of in vitro storage duration on measured mechanical properties of brain tissue.Focal delivery during direct infusion to brain: role of flow rate, catheter diameter, and tissue mechanics.Finite element analysis of an elastic model of the brain: distortion due to acute epidural hematoma--the role of the intra-ventricular pressure gradient.The effect of perfusion on soft tissue mechanical properties: a computational model.Shear properties of human brain tissue.
P2860
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P2860
A comparison of the elasticity of live, dead, and fixed brain tissue.
description
1970 nî lūn-bûn
@nan
1970年の論文
@ja
1970年学术文章
@wuu
1970年学术文章
@zh
1970年学术文章
@zh-cn
1970年学术文章
@zh-hans
1970年学术文章
@zh-my
1970年学术文章
@zh-sg
1970年學術文章
@yue
1970年學術文章
@zh-hant
name
A comparison of the elasticity of live, dead, and fixed brain tissue.
@en
A comparison of the elasticity of live, dead, and fixed brain tissue.
@nl
type
label
A comparison of the elasticity of live, dead, and fixed brain tissue.
@en
A comparison of the elasticity of live, dead, and fixed brain tissue.
@nl
prefLabel
A comparison of the elasticity of live, dead, and fixed brain tissue.
@en
A comparison of the elasticity of live, dead, and fixed brain tissue.
@nl
P2093
P1476
A comparison of the elasticity of live, dead, and fixed brain tissue.
@en
P2093
P304
P356
10.1016/0021-9290(70)90017-5
P577
1970-07-01T00:00:00Z