Cerebral vasculature is a complex network that circulates blood through the brain. However, the role of this networking effect in brain dynamics has seldom been inspected. This work is to study the effects of blood vessel networks on dynamic responses of the brain under blast loading. Voronoi tessellations were implemented to represent the network of blood vessels in the brain. The brain dynamics in terms of maximum principal strain (MPS), shear strain (SS), and intracranial pressure (ICP) were monitored and compared. Results show that blood vessel networks significantly affected brain responses. The increased MPS and SS were observed within the brain embedded with vessel networks, which did not exist in the case without blood vessel networ...
International audienceThe amazing topological and geometrical complexity of micro-vascular networks ...
Blast waves generated by improvised explosive devices can cause mild, moderate to severe traumatic b...
It is established in traumatic brain injury (TBI) animal models that the vasculature undergoes loss ...
Cerebral vasculature is a complex network that circulates blood through the brain. However, the role...
Multiple finite-element (FE) models to predict the biomechanical responses in the human brain result...
The role of the cerebrovascular network and its acute response to TBI is poorly defined and emerging...
Mild traumatic brain injury (TBI) is a significant public health concern worldwide and has attracted...
An estimated 19.5% of all U.S. troops deployed to Iraq/Afghanistan have symptoms related to blast-in...
Abstract Neurovascular injury is often observed in traumatic brain injury (TBI). However, the relati...
Military personnel often experience mild traumatic brain injury (mTBI) from exposure to improvised e...
Due to complex injurious environment where multiple blast effects interact with the body, parallel b...
The critical role of the vasculature and its repair in neurological disease states is beginning to e...
Human exposure to blast waves without any fragment impacts can still result in primary blast-induced...
Mild traumatic brain injury (TBI) is a significant public health concern worldwide and has attracted...
Traumatic brain injury can lead to the neurodegenerative disease chronic traumatic encephalopathy. T...
International audienceThe amazing topological and geometrical complexity of micro-vascular networks ...
Blast waves generated by improvised explosive devices can cause mild, moderate to severe traumatic b...
It is established in traumatic brain injury (TBI) animal models that the vasculature undergoes loss ...
Cerebral vasculature is a complex network that circulates blood through the brain. However, the role...
Multiple finite-element (FE) models to predict the biomechanical responses in the human brain result...
The role of the cerebrovascular network and its acute response to TBI is poorly defined and emerging...
Mild traumatic brain injury (TBI) is a significant public health concern worldwide and has attracted...
An estimated 19.5% of all U.S. troops deployed to Iraq/Afghanistan have symptoms related to blast-in...
Abstract Neurovascular injury is often observed in traumatic brain injury (TBI). However, the relati...
Military personnel often experience mild traumatic brain injury (mTBI) from exposure to improvised e...
Due to complex injurious environment where multiple blast effects interact with the body, parallel b...
The critical role of the vasculature and its repair in neurological disease states is beginning to e...
Human exposure to blast waves without any fragment impacts can still result in primary blast-induced...
Mild traumatic brain injury (TBI) is a significant public health concern worldwide and has attracted...
Traumatic brain injury can lead to the neurodegenerative disease chronic traumatic encephalopathy. T...
International audienceThe amazing topological and geometrical complexity of micro-vascular networks ...
Blast waves generated by improvised explosive devices can cause mild, moderate to severe traumatic b...
It is established in traumatic brain injury (TBI) animal models that the vasculature undergoes loss ...