Literature DB >> 18474737

Diffusion tensor tractography of traumatic diffuse axonal injury.

Jun Yi Wang1, Khamid Bakhadirov, Michael D Devous, Hervé Abdi, Roddy McColl, Carol Moore, Carlos D Marquez de la Plata, Kan Ding, Anthony Whittemore, Evelyn Babcock, Tiffany Rickbeil, Julia Dobervich, David Kroll, Bao Dao, Nisha Mohindra, Christopher J Madden, Ramon Diaz-Arrastia.   

Abstract

BACKGROUND: Diffuse axonal injury is a common consequence of traumatic brain injury that frequently involves the parasagittal white matter, corpus callosum, and brainstem.
OBJECTIVE: To examine the potential of diffusion tensor tractography in detecting diffuse axonal injury at the acute stage of injury and predicting long-term functional outcome.
DESIGN: Tract-derived fiber variables were analyzed to distinguish patients from control subjects and to determine their relationship to outcome.
SETTING: Inpatient traumatic brain injury unit. PATIENTS: From 2005 to 2006, magnetic resonance images were acquired in 12 patients approximately 7 days after injury and in 12 age- and sex-matched controls. MAIN OUTCOME MEASURES: Six fiber variables of the corpus callosum, fornix, and peduncular projections were obtained. Glasgow Outcome Scale-Extended scores were assessed approximately 9 months after injury in 11 of the 12 patients.
RESULTS: At least 1 fiber variable of each region showed diffuse axonal injury-associated alterations. At least 1 fiber variable of the anterior body and splenium of the corpus callosum correlated significantly with the Glasgow Outcome Scale-Extended scores. The predicted outcome scores correlated significantly with actual scores in a mixed-effects model.
CONCLUSION: Diffusion tensor tractography-based quantitative analysis at the acute stage of injury has the potential to serve as a valuable biomarker of diffuse axonal injury and predict long-term outcome.

Entities:  

Mesh:

Year:  2008        PMID: 18474737     DOI: 10.1001/archneur.65.5.619

Source DB:  PubMed          Journal:  Arch Neurol        ISSN: 0003-9942


  64 in total

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4.  Verbal memory impairment in severe closed head injury: the role of encoding and consolidation.

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6.  Assessing spatial relationships between axonal integrity, regional brain volumes, and neuropsychological outcomes after traumatic axonal injury.

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7.  Cerebral atrophy after traumatic white matter injury: correlation with acute neuroimaging and outcome.

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8.  Degeneration of white matter and gray matter revealed by diffusion tensor imaging and pathological mechanism after spinal cord injury in canine.

Authors:  Chang-Bin Liu; De-Gang Yang; Xin Zhang; Wen-Hao Zhang; Da-Peng Li; Chao Zhang; Chuan Qin; Liang-Jie Du; Jun Li; Feng Gao; Jie Zhang; Zhen-Tao Zuo; Ming-Liang Yang; Jian-Jun Li
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9.  Diffusion tensor tractography quantification of the human corpus callosum fiber pathways across the lifespan.

Authors:  Khader M Hasan; Arash Kamali; Amal Iftikhar; Larry A Kramer; Andrew C Papanicolaou; Jack M Fletcher; Linda Ewing-Cobbs
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10.  Novel diffusion tensor imaging methodology to detect and quantify injured regions and affected brain pathways in traumatic brain injury.

Authors:  Manbir Singh; Jeongwon Jeong; Darryl Hwang; Witaya Sungkarat; Peter Gruen
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