Use of advanced neuroimaging techniques in the evaluation of pediatric traumatic brain injury

被引:65
作者
Ashwal, Stephen
Holshouser, Barbara A.
Tong, Karen A.
机构
[1] Loma Linda Univ, Sch Med, Dept Pediat, Div Child Neurol, Loma Linda, CA 92350 USA
[2] Loma Linda Univ, Sch Med, Dept Radiol, Loma Linda, CA 92350 USA
关键词
diffusion tensor imaging; diffusion weighted imaging; neuroimaging techniques; traumatic brain injury;
D O I
10.1159/000094157
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Advanced neuroimaging techniques are now used to expand our knowledge of traumatic brain injury, and increasingly, they are being applied to children. This review will examine four of these methods as they apply to children who present acutely after injury. (1) Susceptibility weighted imaging is a 3-dimensional high-resolution magnetic resonance imaging technique that is more sensitive than conventional imaging in detecting hemorrhagic lesions that are often associated with diffuse axonal injury. (2) Magnetic resonance spectroscopy acquires metabolite information reflecting neuronal integrity and function from multiple brain regions and provides sensitive, noninvasive assessment of neurochemical alterations that offers early prognostic information regarding the outcome. (3) Diffusion weighted imaging is based on differences in diffusion of water molecules within the brain and has been shown to be very sensitive in the early detection of ischemic injury. It is now being used to study the direct effects of traumatic injury as well as those due to secondary ischemia. (4) Diffusion tensor imaging is a form of diffusion weighted imaging and allows better evaluation of white matter fiber tracts by taking advantage of the intrinsic directionality (anisotropy) of water diffusion in human brain. It has been shown to be useful in identifying white matter abnormalities after diffuse axonal injury when conventional imaging appears normal. An important aspect of these advanced methods is that they demonstrate that 'normal-appearing' brain in many instances is not normal, i.e. there is evidence of significant undetected injury that may underlie a child's clinical status. Availability and integration of these advanced imaging methods will lead to better treatment and change the standard of care for use of neuroimaging to evaluate children with traumatic brain injury. Copyright (c) 2006 S. Karger AG, Basel.
引用
收藏
页码:309 / 326
页数:18
相关论文
共 103 条
[1]  
Adams A, 2001, BCS CONF SERIES, P49
[2]   DIFFUSE AXONAL INJURY DUE TO NONMISSILE HEAD-INJURY IN HUMANS - AN ANALYSIS OF 45 CASES [J].
ADAMS, JH ;
GRAHAM, DI ;
MURRAY, LS ;
SCOTT, G .
ANNALS OF NEUROLOGY, 1982, 12 (06) :557-563
[3]   Diffusion and high resolution MRI of traumatic brain injury in rats: Time course and correlation with histology [J].
Albensi, BC ;
Knoblach, SM ;
Chew, BGM ;
O'Reilly, MP ;
Faden, AI ;
Pekar, JJ .
EXPERIMENTAL NEUROLOGY, 2000, 162 (01) :61-72
[4]  
Alessandri B, 2000, NEUROL RES, V22, P705
[5]  
Arfanakis K, 2002, AM J NEURORADIOL, V23, P794
[6]   Proton spectroscopy detected myoinositol in children with traumatic brain injury [J].
Ashwal, S ;
Holshouser, B ;
Tong, K ;
Serna, T ;
Osterdock, R ;
Gross, M ;
Kido, D .
PEDIATRIC RESEARCH, 2004, 56 (04) :630-638
[7]   Predictive value of proton magnetic resonance spectroscopy in pediatric closed head injury [J].
Ashwal, S ;
Holshouser, BA ;
Shu, SK ;
Simmons, PL ;
Perkin, RM ;
Tomasi, LG ;
Knierim, DS ;
Sheridan, C ;
Craig, K ;
Andrews, GH ;
Hinshaw, DB .
PEDIATRIC NEUROLOGY, 2000, 23 (02) :114-125
[8]   Proton MR spectroscopy detected glutamate/glutamine is increased in children with traumatic brain injury [J].
Ashwal, S ;
Holshouser, B ;
Tong, K ;
Serna, T ;
Osterdock, R ;
Gross, M ;
Kido, D .
JOURNAL OF NEUROTRAUMA, 2004, 21 (11) :1539-1552
[9]  
ASHWAL S, IN PRESS ARCH PHYS M
[10]   Diffusion- and T-2-weighted MRI of closed-head injury in rats: A time course study and correlation with histology [J].
Assaf, Y ;
BeitYannai, E ;
Shohami, E ;
Berman, E ;
Cohen, Y .
MAGNETIC RESONANCE IMAGING, 1997, 15 (01) :77-85