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Primary blast exposure reduces brain tolerance to subsequent blast

Publication ,  Conference
Effgen, GB; Ong, T; Nammalwar, S; Ortuno, AI; Bass, CRD; Meaney, DF; Morrison, B
Published in: 2015 IRCOBI Conference Proceedings - International Research Council on the Biomechanics of Injury
January 1, 2015

Duke Scholars

Published In

2015 IRCOBI Conference Proceedings - International Research Council on the Biomechanics of Injury

Publication Date

January 1, 2015

Start / End Page

724 / 726
 

Citation

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Effgen, G. B., Ong, T., Nammalwar, S., Ortuno, A. I., Bass, C. R. D., Meaney, D. F., & Morrison, B. (2015). Primary blast exposure reduces brain tolerance to subsequent blast. In 2015 IRCOBI Conference Proceedings - International Research Council on the Biomechanics of Injury (pp. 724–726).
Effgen, G. B., T. Ong, S. Nammalwar, A. I. Ortuno, C. R. D. Bass, D. F. Meaney, and B. Morrison. “Primary blast exposure reduces brain tolerance to subsequent blast.” In 2015 IRCOBI Conference Proceedings - International Research Council on the Biomechanics of Injury, 724–26, 2015.
Effgen GB, Ong T, Nammalwar S, Ortuno AI, Bass CRD, Meaney DF, et al. Primary blast exposure reduces brain tolerance to subsequent blast. In: 2015 IRCOBI Conference Proceedings - International Research Council on the Biomechanics of Injury. 2015. p. 724–6.
Effgen, G. B., et al. “Primary blast exposure reduces brain tolerance to subsequent blast.” 2015 IRCOBI Conference Proceedings - International Research Council on the Biomechanics of Injury, 2015, pp. 724–26.
Effgen GB, Ong T, Nammalwar S, Ortuno AI, Bass CRD, Meaney DF, Morrison B. Primary blast exposure reduces brain tolerance to subsequent blast. 2015 IRCOBI Conference Proceedings - International Research Council on the Biomechanics of Injury. 2015. p. 724–726.

Published In

2015 IRCOBI Conference Proceedings - International Research Council on the Biomechanics of Injury

Publication Date

January 1, 2015

Start / End Page

724 / 726