Literature DB >> 7861450

Lateral cortical impact injury in rats: pathologic effects of varying cortical compression and impact velocity.

J C Goodman1, L Cherian, R M Bryan, C S Robertson.   

Abstract

Direct lateral cortical impact through the intact leptomeninges using a pneumatically driven piston produces increasingly severe pathophysiologic derangements with increasing cortical deformation. We studied the histopathologic correlates of cortical impact injury produced by 2 mm, 2.5 mm, and 3 mm deformation in the rat at 5 m/sec. Additionally, the effect of impact velocity at a 2.5 mm deformation was assessed at 1 m/sec, 3 m/sec, and 5 m/sec. The brains were examined 14 days after injury. Cortical contusion maximum cross-sectional area, volume, and the percentage CA1 and CA3 hippocampal neuronal loss correlate with cortical deformation and impactor velocity. Contusion volume increased with increasing cortical deformation. Deformations of 2, 2.5, and 3 mm at 5 m/sec produced contusion volumes of 4.59, 8.9, and 21.68 mm3, respectively. At a fixed cortical deformation of 2.5 mm, contusion volume increased with increasing impact velocity. Impact velocities of 1, 3, and 5 m/sec produced contusion volumes of 5.79, 7.42, and 8.9 mm3, respectively. Hippocampal CA3 neuronal loss increased with increasing cortical deformation. Deformations of 2, 2.5, and 3 mm at 5 m/sec produced neuronal loss of 29%, 48.3%, and 79.5%, respectively. At a fixed cortical deformation of 2.5 mm, hippocampal CA3 neuronal loss increased with increasing impact velocity. Impact velocities of 1, 3, and 5 m/sec produced neuronal loss of 18.25%, 33.75%, and 48.3%, respectively. Hippocampal CA1 neuronal loss was also seen and paralleled cortical deformation and impact velocity. Cortical deformation and impact velocity are critical parameters in producing cortical contusion and must be considered when comparing results using this model.

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Year:  1994        PMID: 7861450     DOI: 10.1089/neu.1994.11.587

Source DB:  PubMed          Journal:  J Neurotrauma        ISSN: 0897-7151            Impact factor:   5.269


  23 in total

1.  Differential effects of injury severity on cognition and cellular pathology after contusive brain trauma in the immature rat.

Authors:  Jimmy W Huh; Ashley G Widing; Ramesh Raghupathi
Journal:  J Neurotrauma       Date:  2011-01-27       Impact factor: 5.269

2.  Animal Models of Posttraumatic Seizures and Epilepsy.

Authors:  Alexander V Glushakov; Olena Y Glushakova; Sylvain Doré; Paul R Carney; Ronald L Hayes
Journal:  Methods Mol Biol       Date:  2016

3.  Rate of neurodegeneration in the mouse controlled cortical impact model is influenced by impactor tip shape: implications for mechanistic and therapeutic studies.

Authors:  Jennifer M Pleasant; Shaun W Carlson; Haojie Mao; Stephen W Scheff; King H Yang; Kathryn E Saatman
Journal:  J Neurotrauma       Date:  2011-04-21       Impact factor: 5.269

4.  Abnormal Motor Response Associated With Concussive Injuries: Biomechanical Comparison Between Impact Seizures and Loss of Consciousness.

Authors:  Janie Cournoyer; T Blaine Hoshizaki
Journal:  J Athl Train       Date:  2019-07-25       Impact factor: 2.860

5.  Posttraumatic mossy fiber sprouting is related to the degree of cortical damage in three mouse strains.

Authors:  Robert F Hunt; Laura A Haselhorst; Kathleen M Schoch; Eva C Bach; Jennifer Rios-Pilier; Stephen W Scheff; Kathryn E Saatman; Bret N Smith
Journal:  Epilepsy Res       Date:  2011-11-01       Impact factor: 3.045

Review 6.  Animal models of traumatic brain injury.

Authors:  Ye Xiong; Asim Mahmood; Michael Chopp
Journal:  Nat Rev Neurosci       Date:  2013-02       Impact factor: 34.870

Review 7.  Found in translation: Understanding the biology and behavior of experimental traumatic brain injury.

Authors:  Corina O Bondi; Bridgette D Semple; Linda J Noble-Haeusslein; Nicole D Osier; Shaun W Carlson; C Edward Dixon; Christopher C Giza; Anthony E Kline
Journal:  Neurosci Biobehav Rev       Date:  2014-12-10       Impact factor: 8.989

8.  Neuroprotective effect of ginseng total saponins in experimental traumatic brain injury.

Authors:  Yong Cheol Ji; Young Baeg Kim; Seung Won Park; Sung Nam Hwang; Byung Kook Min; Hyun Jong Hong; Jeong Taik Kwon; Jong Sik Suk
Journal:  J Korean Med Sci       Date:  2005-04       Impact factor: 2.153

Review 9.  Mild traumatic brain injury in translation.

Authors:  Harvey S Levin; Claudia S Robertson
Journal:  J Neurotrauma       Date:  2013-03-14       Impact factor: 5.269

10.  Immunoblot analyses of the relative contributions of cysteine and aspartic proteases to neurofilament breakdown products following experimental brain injury in rats.

Authors:  R M Posmantur; X Zhao; A Kampfl; G L Clifton; R L Hayes
Journal:  Neurochem Res       Date:  1998-10       Impact factor: 3.996

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