Literature DB >> 17439350

Behavioral, histological, and ex vivo magnetic resonance imaging assessment of graded contusion spinal cord injury in mice.

Rebecca A Nishi1, Hongli Liu, Yong Chu, Mark Hamamura, Min-Ying Su, Orhan Nalcioglu, Aileen J Anderson.   

Abstract

This study characterized the Infinite Horizon (IH) Impactor for use in mouse models of contusion spinal cord injury (SCI), and investigated the feasibility and reliability of using magnetic resonance imaging (MRI) as a method to accurately measure lesion volume after mouse contusion SCI. Eight-week-old female C57Bl/6 mice received a mild (30 kilodyne), moderate (50 kilodyne), or severe (70 kilodyne) contusion injury at the T9 vertebral level. Uninjured control mice received a T9 laminectomy only. Functional recovery was assessed using the Basso, Beattie, Bresnahan (BBB) and Basso Mouse Scale (BMS) open-field locomotor rating scales. Next, 4% paraformaldehyde-perfused spinal cords were collected between the T6 and T12 spinal roots, and stored in phosphate-buffered saline (PBS) at 4 degrees C until MRI analysis. MRI lesion volumes were determined using T1-weighted images on a 7-Tesla MRI. Histology was performed on 20-microm polyester wax-embedded sections processed from the same spinal cords for stereological determination of fibronectin lesion volume and myelin basic protein spared white matter volume. Area of spared white matter at the epicenter was also analyzed. The results demonstrated that the IH Impactor produced precise, graded contusion SCI in mice. Lesion volumes were positively correlated with force of impact, and negatively correlated with spared white matter and functional recovery. Additionally, similar lesion volumes were detected using fibronectin staining and MRI analysis, although MRI may be more sensitive for milder injuries. These results give researchers more options in how to analyze spinal cord injuries in animal models.

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Year:  2007        PMID: 17439350     DOI: 10.1089/neu.2006.0204

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


  36 in total

1.  Characterization of a graded cervical hemicontusion spinal cord injury model in adult male rats.

Authors:  Kelly A Dunham; Akkradate Siriphorn; Supin Chompoopong; Candace L Floyd
Journal:  J Neurotrauma       Date:  2010-11       Impact factor: 5.269

2.  Preferential and bidirectional labeling of the rubrospinal tract with adenovirus-GFP for monitoring normal and injured axons.

Authors:  Xiaofei Wang; George M Smith; Xiao-Ming Xu
Journal:  J Neurotrauma       Date:  2011-03-24       Impact factor: 5.269

3.  TrkB.T1 contributes to neuropathic pain after spinal cord injury through regulation of cell cycle pathways.

Authors:  Junfang Wu; Cynthia L Renn; Alan I Faden; Susan G Dorsey
Journal:  J Neurosci       Date:  2013-07-24       Impact factor: 6.167

4.  A combined scoring method to assess behavioral recovery after mouse spinal cord injury.

Authors:  Ahdeah Pajoohesh-Ganji; Kimberly R Byrnes; Gita Fatemi; Alan I Faden
Journal:  Neurosci Res       Date:  2010-02-25       Impact factor: 3.304

5.  Diffusion tensor imaging as a predictor of locomotor function after experimental spinal cord injury and recovery.

Authors:  Brian J Kelley; Noam Y Harel; Chang-Yeon Kim; Xenophon Papademetris; Daniel Coman; Xingxing Wang; Omar Hasan; Adam Kaufman; Ronen Globinsky; Lawrence H Staib; William B J Cafferty; Fahmeed Hyder; Stephen M Strittmatter
Journal:  J Neurotrauma       Date:  2014-07-08       Impact factor: 5.269

6.  Diffusion tensor imaging at 3 hours after traumatic spinal cord injury predicts long-term locomotor recovery.

Authors:  Joong H Kim; David N Loy; Qing Wang; Matthew D Budde; Robert E Schmidt; Kathryn Trinkaus; Sheng-Kwei Song
Journal:  J Neurotrauma       Date:  2010-03       Impact factor: 5.269

7.  Quantitative analysis of cellular inflammation after traumatic spinal cord injury: evidence for a multiphasic inflammatory response in the acute to chronic environment.

Authors:  Kevin D Beck; Hal X Nguyen; Manuel D Galvan; Desirée L Salazar; Trent M Woodruff; Aileen J Anderson
Journal:  Brain       Date:  2010-01-19       Impact factor: 13.501

8.  Comparison of immunopathology and locomotor recovery in C57BL/6, BUB/BnJ, and NOD-SCID mice after contusion spinal cord injury.

Authors:  Sabina Luchetti; Kevin D Beck; Manuel D Galvan; Richard Silva; Brian J Cummings; Aileen J Anderson
Journal:  J Neurotrauma       Date:  2010-02       Impact factor: 5.269

9.  Serial Diffusion Tensor Imaging In Vivo Predicts Long-Term Functional Recovery and Histopathology in Rats following Different Severities of Spinal Cord Injury.

Authors:  Samir P Patel; Taylor D Smith; Jenna L VanRooyen; David Powell; David H Cox; Patrick G Sullivan; Alexander G Rabchevsky
Journal:  J Neurotrauma       Date:  2016-02-11       Impact factor: 5.269

10.  Traumatic brain injury during development reduces minimal clonic seizure thresholds at maturity.

Authors:  Kimberly D Statler; Seth Swank; Tracy Abildskov; Erin D Bigler; H Steve White
Journal:  Epilepsy Res       Date:  2008-05-19       Impact factor: 3.045

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