HEAD INJURY CLINICAL RESEARCH CENTER
头部损伤临床研究中心
基本信息
- 批准号:3099308
- 负责人:
- 金额:$ 73.91万
- 依托单位:
- 依托单位国家:美国
- 项目类别:
- 财政年份:1976
- 资助国家:美国
- 起止时间:1976-08-01 至 1994-03-31
- 项目状态:已结题
- 来源:
- 关键词:
项目摘要
Because of widespread axonal damage in most cases of prolonged traumatic
coma, we have termed this clinical-pathological condition diffuse axonal
injury (DAI). DAI comprises 44% of sever head injuries, is responsible for
one-third of all head injury deaths, and is the greatest cause of
vegetative and severely impaired survivors. In addition, axonal damage
occurs to a lesser degree each year in several million Americans who
sustain concussion and focal brain injuries. There is no known therapy
specific for axonal injury or DAI. In our previous work, we have
determined that axonal damage occurs principally at the node of Ranvier and
that many axons are not severed at the time of injury, but undergo a
progressive degeneration that leads to secondary axotomy after several
days. We have held that a better understanding of the events leading the
secondary axotomy may allow therapeutic intervention to prevent it from
occurring, thereby permitting axonal repair and restitution of function to
occur. In this proposal, we will extend these observations on the theme of
diffuse Axonal Injury and test the hypothesis that secondary axotomy and
traumatic neuronal dysfunction is a product of two factors: calcium
mediated damage at the site of injury and the effects of receptor mediated
events. The latter can be produced either as a result of axonal damage or
by direct damage to dendritic or perikaryal elements. To address this
hypothesis, our goals are 1) to define the relationship of histologic
patterns of axonal damage and neurotransmitter receptor abnormality in
human and experimental head injury, 2) to determine the role of calcium in
cytoskeletal degradation by electron microscopic immunohistochemistry and
to assess the effect on calcium mediated damage by voltage dependent
calcium channel blockade, inhibition of calcium activated proteases and
mitigation of the calcium activated phospholipase cascade, 3) to determine,
by unit recordings, microiontophoretic application receptor agonists and
antagonists and in-situ hybridization of heat shock proteins, the
mechanisms of perikaryal overexcitation after injury and the influence of
perikaryal changes on axonal damage, 4) to assess the degree that receptor
mediated mechanisms affect axonal and neuronal survival by treatment with
low threshold calcium channel, NMDA or non-NMDA antagonists, 5) to develop
animate and inanimate models of axonal injury and DAI that are clinically
realistic, and 6) to define the effects of neuroprotective agents that can
lead to clinical treatment trials.
由于广泛的轴索损伤在大多数情况下延长创伤
项目成果
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THOMAS A GENNARELLI其他文献
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