In vivo tracing of neural tracts in the intact and injured spinal cord of marmosets by diffusion tensor tractography

被引:81
作者
Fujiyoshi, Kanehiro
Yamada, Masayuki
Nakamura, Masaya
Yamane, Junichi
Katoh, Hiroyuki
Kitamura, Kazuya
Kawai, Kenji
Okada, Seiji
Momoshima, Suketaka
Toyama, Yoshiaki
Okano, Hideyuki
机构
[1] Keio Univ, Sch Med, Dept Orthopaed Surg, Shinjuku Ku, Tokyo 1608582, Japan
[2] Keio Univ, Sch Med, Dept Physiol, Shinjuku Ku, Tokyo 1608582, Japan
[3] Keio Univ, Sch Med, Dept Radiol, Shinjuku Ku, Tokyo 1608582, Japan
[4] Keio Univ, Sch Med, Ctr Integrated Med Res, Shinjuku Ku, Tokyo 1608582, Japan
[5] Cent Inst Expt Anim, Miyamae Ku, Kanagawa 2160001, Japan
[6] Kyushu Univ, Grad Sch Med Sci, Dept Res Superstar Program Stem Cell Unit, Fukuoka 8128582, Japan
关键词
spinal cord injury; corticospinal tract; diffusion tensor tractography; magnetic resonance imaging; common marmoset; calmodulin-dependent protein kinase II-alpha; pathway-specific DTT; in vivo tracing;
D O I
10.1523/JNEUROSCI.3354-07.2007
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
In spinal cord injury, axonal disruption results in motor and sensory function impairment. The evaluation of axonal fibers is essential to assess the severity of injury and efficacy of any treatment protocol, but conventional methods such as tracer injection in brain parenchyma are highly invasive and require histological evaluation, precluding clinical applications. Previous advances in magnetic resonance imaging technology have led to the development of diffusion tensor tractography (DTT) as a potential modality to perform in vivo tracing of axonal fibers. The properties and clinical applications of DTT in the brain have been reported, but technical difficulties have limited DTT studies of the spinal cord. In this study, we report the effective use of DTT to visualize both intact and surgically disrupted spinal long tracts in adult common marmosets. To verify the feasibility of spinal cord DTT, we first performed DTT of postmortem marmosets. DTT clearly illustrated spinal projections such as the corticospinal tract and afferent fibers in control animals, and depicted the severed long tracts in the injured animals. Histology of the spinal cords in both control and injured groups were consistent with DTT findings, verifying the accuracy of DTT. We also conducted DTT in live marmosets and demonstrated that DTT can be performed in live animals to reveal in vivo nerve fiber tracing images, providing an essential tool to evaluate axonal conditions in the injured spinal cord. Taken together, these findings demonstrate the feasibility of applying DTT to preclinical and clinical studies of spinal cord injury.
引用
收藏
页码:11991 / 11998
页数:8
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