A strain rate-dependent constitutive model for Göttingen Minipig cerebral arteries

N Pearson, GM Boiczyk, VB Kote… - Journal of …, 2022 - asmedigitalcollection.asme.org
Computational simulations of traumatic brain injury (TBI) are commonly used to advance
understanding of the injury–pathology relationship, tissue damage thresholds, and design of …

[PDF][PDF] A Strain Rate-Dependent Constitutive Model for Göttingen Minipig Cerebral Arteries

N Pearson, GM Boiczyk, VB Kote - bhsai.org
Traumatic brain injury (TBI) is a condition affecting both civilian and military populations.
Both human and animal models of TBI have been used for years to improve understanding …

A Strain Rate-Dependent Constitutive Model for Göttingen Minipig Cerebral Arteries

N Pearson, GM Boiczyk, VB Kote… - Journal of …, 2022 - par.nsf.gov
Computational simulations of traumatic brain injury (TBI) are commonly used to advance
understanding of the injury–pathology relationship, tissue damage thresholds, and design of …

A Strain Rate-Dependent Constitutive Model for Göttingen Minipig Cerebral Arteries.

N Pearson, GM Boiczyk, VB Kote… - Journal of …, 2022 - europepmc.org
Computational simulations of traumatic brain injury (TBI) are commonly used to advance
understanding of the injury-pathology relationship, tissue damage thresholds, and design of …

A Strain Rate-Dependent Constitutive Model for Göttingen Minipig Cerebral Arteries

N Pearson, GM Boiczyk, VB Kote… - Journal of …, 2022 - pubmed.ncbi.nlm.nih.gov
Computational simulations of traumatic brain injury (TBI) are commonly used to advance
understanding of the injury-pathology relationship, tissue damage thresholds, and design of …

[引用][C] A Strain Rate-Dependent Constitutive Model for Göttingen Minipig Cerebral Arteries

N Pearson, GM Boiczyk, VB Kote… - 2022 - The American Society of Mechanical …