[go: up one dir, main page]
More Web Proxy on the site http://driver.im/

Lockhart, 2010 - Google Patents

Primary blast injury of the head: numerical prediction and evaluation of protection

Lockhart, 2010

View PDF
Document ID
12963643654096382542
Author
Lockhart P
Publication year

External Links

Snippet

The prevalence of injuries sustained from blast have been increasing over the past few decades due to the increasing use of Improvised Explosive Devices in areas where peacekeepers are deployed, as well as terrorist bombing incidents. The scope of this project …
Continue reading at uwspace.uwaterloo.ca (PDF) (other versions)

Similar Documents

Publication Publication Date Title
Huang et al. Study on craniocerebral dynamics response and helmet protective performance under the blast waves
Kulkarni et al. Ballistic helmets–their design, materials, and performance against traumatic brain injury
Rodríguez-Millán et al. Effect of full helmet systems on human head responses under blast loading
Young et al. Biophysical mechanisms of traumatic brain injuries
Tan et al. Impact of complex blast waves on the human head: a computational study
Sundar et al. Biomechanical analysis of head subjected to blast waves and the role of combat protective headgear under blast loading: a review
Grujicic et al. Material‐modeling and structural‐mechanics aspects of the traumatic brain injury problem
Cai et al. Study on Behind Helmet Blunt Trauma Caused by High‐Speed Bullet
Lockhart Primary blast injury of the head: numerical prediction and evaluation of protection
Lockhart et al. Helmet liner evaluation to mitigate head response from primary blast exposure
Cai et al. A study on protective performance of bullet-proof helmet under impact loading
Ganpule Mechanics of blast loading on post-mortem human and surrogate heads in the study of Traumatic Brain Injury (TBI) using experimental and computational approaches
Salimi Jazi et al. Biomechanical parameters of the brain under blast loads with and without helmets
Sarvghad-Moghaddam Computational biomechanics of blast-induced traumatic brain injury: role of loading directionality, head protection, and blast flow mechanics
Burkacki et al. Finite element head model for the crew injury assessment in a light armoured vehicle
Sarvghad-Moghaddam et al. Mechanical response of the brain under blast: the effect of blast direction and the head protection
Alley Explosive blast loading experiments for TBI scenarios: characterization and mitigation
Jenson et al. Multiscale simulation of ballistic composites for blast induced traumatic brain injury mitigation
Wang et al. Biomechanical assessment of the bridging vein rupture of blast-induced traumatic brain injury using the finite element human head model
Haladuick et al. Head kinematics resulting from simulated blast loading scenarios
Ganpule et al. The effect of shock wave on a human head
Grujicic et al. Experimental and computational investigations of the potential improvement in helmet blast-protection through the use of a polyurea-based external coating
Grujicic et al. Improvement in head blast-protection via the use of polyurea-augmented advanced combat helmet: experimental investigation and computational analysis
Sharma Biomechanical analysis of blast induced traumatic brain injury—A finite element modeling and validation study of blast effects on human brain
Singh Investigation of primary blast injury and protection using sagittal and transverse finite element head models