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56Fe辐射暴露引起的认知缺陷。

Cognitive deficits induced by 56Fe radiation exposure.

作者信息

Shukitt-Hale B, Casadesus G, Cantuti-Castelvetri I, Rabin B M, Joseph J A

机构信息

USDA-ARS, Human Nutrition Research Center on Aging at Tufts University, Boston, MA 02111, USA.

出版信息

Adv Space Res. 2003;31(1):119-26. doi: 10.1016/s0273-1177(02)00878-5.

Abstract

Exposing rats to particles of high energy and charge (e.g., 56Fe) disrupts neuronal systems and the behaviors mediated by them; these adverse behavioral and neuronal effects are similar to those seen in aged animals. Because cognition declines with age, and our previous study showed that radiation disrupted Morris water maze spatial learning and memory performance, the present study used an 8-arm radial maze (RAM) to further test the cognitive behavioral consequences of radiation exposure. Control rats or rats exposed to whole-body irradiation with 1.0 Gy of 1 GeV/n high-energy 56Fe particles (delivered at the alternating gradient synchrotron at Brookhaven National Laboratory) were tested nine months following exposure. Radiation adversely affected RAM performance, and the changes seen parallel those of aging. Irradiated animals entered baited arms during the first 4 choices significantly less than did controls, produced their first error sooner, and also tended to make more errors as measured by re-entries into non-baited arms. These results show that irradiation with high-energy particles produces age-like decrements in cognitive behavior that may impair the ability of astronauts to perform critical tasks during long-term space travel beyond the magnetosphere.

摘要

将大鼠暴露于高能带电粒子(例如56Fe)会破坏神经元系统及其介导的行为;这些不良的行为和神经元效应与在老龄动物中观察到的相似。由于认知能力会随着年龄增长而下降,且我们之前的研究表明辐射会破坏莫里斯水迷宫的空间学习和记忆表现,因此本研究使用八臂辐射状迷宫(RAM)进一步测试辐射暴露对认知行为的影响。对对照组大鼠或接受1.0 Gy的1 GeV/n高能56Fe粒子全身照射的大鼠(在布鲁克海文国家实验室的交变梯度同步加速器上进行照射)在暴露九个月后进行测试。辐射对RAM表现产生了不利影响,观察到的变化与衰老的变化相似。受辐照动物在前4次选择中进入有诱饵臂的次数明显少于对照组,更早出现首次错误,并且从重新进入无诱饵臂的次数衡量,也往往会出现更多错误。这些结果表明,高能粒子辐照会导致类似衰老的认知行为衰退,这可能会损害宇航员在磁层外长期太空旅行期间执行关键任务的能力。

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