Multimodal imaging of mild traumatic brain injury and persistent postconcussion syndrome

被引:43
作者
Dean, Philip J. A. [1 ]
Sato, Joao R. [2 ,3 ]
Vieira, Gilson [3 ]
McNamara, Adam [1 ]
Sterr, Annette [1 ]
机构
[1] Univ Surrey, Sch Psychol, Guildford GU2 7XH, Surrey, England
[2] Univ Fed ABC, Ctr Math Computat & Cognit, Sao Paulo, Brazil
[3] Univ Sao Paulo, Fac Med, Dept Radiol, NIF LIM44, Sao Paulo, Brazil
来源
BRAIN AND BEHAVIOR | 2015年 / 5卷 / 01期
关键词
Cognitive tasks; mild traumatic brain injury; neuroimaging; DEFAULT MODE NETWORK; POST-CONCUSSION SYMPTOMS; DIFFUSE AXONAL INJURY; WORKING-MEMORY; HEAD-INJURY; UNITED-STATES; FUNCTIONAL NETWORKS; PERFORMANCE; ACTIVATION; CONNECTIVITY;
D O I
10.1002/brb3.292
中图分类号
B84 [心理学]; C [社会科学总论]; Q98 [人类学];
学科分类号
03 ; 0303 ; 030303 ; 04 ; 0402 ;
摘要
Background: Persistent postconcussion syndrome (PCS) occurs in around 5-10% of individuals after mild traumatic brain injury (mTBI), but research into the underlying biology of these ongoing symptoms is limited and inconsistent. One reason for this could be the heterogeneity inherent to mTBI, with individualized injury mechanisms and psychological factors. A multimodal imaging study may be able to characterize the injury better. Aim: To look at the relationship between functional (fMRI), structural (diffusion tensor imaging), and metabolic (magnetic resonance spectroscopy) data in the same participants in the long term (>1year) after injury. It was hypothesized that only those mTBI participants with persistent PCS would show functional changes, and that these changes would be related to reduced structural integrity and altered metabolite concentrations. Methods: Functional changes associated with persistent PCS after mTBI (>1year postinjury) were investigated in participants with and without PCS (both n=8) and non-head injured participants (n=9) during performance of working memory and attention/processing speed tasks. Correlation analyses were performed to look at the relationship between the functional data and structural and metabolic alterations in the same participants. Results: There were no behavioral differences between the groups, but participants with greater PCS symptoms exhibited greater activation in attention-related areas (anterior cingulate), along with reduced activation in temporal, default mode network, and working memory areas (left prefrontal) as cognitive load was increased from the easiest to the most difficult task. Functional changes in these areas correlated with reduced structural integrity in corpus callosum and anterior white matter, and reduced creatine concentration in right dorsolateral prefrontal cortex. Conclusion: These data suggest that the top-down attentional regulation and deactivation of task-irrelevant areas may be compensating for the reduction in working memory capacity and variation in white matter transmission caused by the structural and metabolic changes after injury. This may in turn be contributing to secondary PCS symptoms such as fatigue and headache. Further research is required using multimodal data to investigate the mechanisms of injury after mTBI, but also to aid individualized diagnosis and prognosis.
引用
收藏
页码:45 / 61
页数:17
相关论文
共 90 条
[21]  
Fos L A, 2000, Appl Neuropsychol, V7, P140, DOI 10.1207/S15324826AN0703_4
[22]   The predictive brain state: Timing deficiency in traumatic brain injury? [J].
Ghajar, Jamshid ;
Ivry, Richard B. .
NEUROREHABILITATION AND NEURAL REPAIR, 2008, 22 (03) :217-227
[23]   Imaging Modalities in Mild Traumatic Brain Injury and Sports Concussion [J].
Gonzalez, Peter G. ;
Walker, Matthew T. .
PM&R, 2011, 3 (10) :S413-S424
[25]   MMPI-2 profiles 23 years after paediatric mild traumatic brain injury [J].
Hessen, Erik ;
Anderson, Vicki ;
Nestvold, Knut .
BRAIN INJURY, 2008, 22 (01) :39-50
[26]   Examining working memory task acquisition in a disrupted neural network [J].
Hillary, Frank G. ;
Medaglia, John D. ;
Gates, Kathleen ;
Molenaar, Peter C. ;
Slocomb, Julia ;
Peechatka, Alyssa ;
Good, David C. .
BRAIN, 2011, 134 :1555-1570
[27]   The Nature of Processing Speed Deficits in Traumatic Brain Injury: is Less Brain More? [J].
Hillary, Frank G. ;
Genova, Helen M. ;
Medaglia, John D. ;
Fitzpatrick, Neal M. ;
Chiou, Kathy S. ;
Wardecker, Britney M. ;
Franklin, Robert G., Jr. ;
Wang, Jianli ;
DeLuca, John .
BRAIN IMAGING AND BEHAVIOR, 2010, 4 (02) :141-154
[28]   Emerging Imaging Tools for Use with Traumatic Brain Injury Research [J].
Hunter, Jill V. ;
Wilde, Elisabeth A. ;
Tong, Karen A. ;
Holshouser, Barbara A. .
JOURNAL OF NEUROTRAUMA, 2012, 29 (04) :654-671
[29]   Neuroimaging of structural pathology and connectomics in traumatic brain injury: Toward personalized outcome prediction [J].
Irimia, Andrei ;
Wang, Bo ;
Aylward, Stephen R. ;
Prastawa, Marcel W. ;
Pace, Danielle F. ;
Gerig, Guido ;
Hovda, David A. ;
Kikinis, Ron ;
Vespa, Paul M. ;
Van Horn, John D. .
NEUROIMAGE-CLINICAL, 2012, 1 (01) :1-17
[30]   Outcome from mild traumatic brain injury [J].
Iverson, GL .
CURRENT OPINION IN PSYCHIATRY, 2005, 18 (03) :301-317