...
首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Spaceflight alters the fiber composition of the aortic nerve in the developing rat.
【24h】

Spaceflight alters the fiber composition of the aortic nerve in the developing rat.

机译:太空飞行会改变发育中大鼠的主动脉神经纤维成分。

获取原文
获取原文并翻译 | 示例

摘要

Hydrostatic pressure gradients due to the gravitational force in blood vessels disappear under conditions of microgravity during spaceflight, and the ability of the baroreceptor reflex to control arterial pressure and blood distribution may be altered. We hypothesized, on the basis of the results obtained in our previous experiments using the head-down tilt method in rats and rabbits, that the range of increase in arterial pressure caused by animal behavior narrows under conditions of microgravity, affecting the development of high-threshold unmyelinated fibers in the rat aortic nerve which sends signals from baroreceptors located in the aortic wall to the reflex center. We verified this hypothesis using 9-day-old rat neonates housed with their dams for 16 days on the space shuttle Columbia in outer space (STS-90, Neurolab Mission). Age-matched neonatal rats with the dams remained on the ground as controls. After breeding was carried out in the three experimental groups (FLT, spaceflight; AGC, asynchronous ground control; VIV, vivarium ground control), specimens of the 25-day-old rats were excised and five left aortic nerves in each group were examined by electron microscopy. The number of aortic unmyelinated fibers was significantly less in the FLT group than in each ground control (mean+/-S.D.; 139+/-37 in the FLT, 207+/-36 in the AGC, 283+/-121 in the VIV; P<0.05), which may be related to the weakness of the baroreceptor reflex under conditions of microgravity in space. This result may contribute to understanding of the several cardiovascular issues which occur under microgravity and after reexposure to gravity in human.
机译:在航天过程中,在微重力条件下,由于血管中的重力引起的静水压力梯度消失,并且压力感受器反射控制动脉压和血液分布的能力可能会改变。根据我们先前在大鼠和兔子中使用头部向下倾斜方法获得的实验结果,我们假设在微重力条件下,动物行为引起的动脉压升高范围变窄,从而影响了高重力运动的发展。阈值是大鼠主动脉神经中的无髓纤维阈值,该信号将信号从位于主动脉壁的压力感受器发送至反射中心。我们使用在外层空间哥伦比亚号航天飞机(STS-90,Neurolab Mission)上放置9天大的新生婴儿和他们的大坝住了16天,验证了这一假设。与年龄匹配的新生大坝大鼠作为对照留在地面上。在三个实验组(FLT,航天,AGC,异步地面控制,VIV,活体地面控制)中进行繁殖后,切除了25日龄大鼠的标本,并通过每组检查了五只左主动脉神经电子显微镜。与每个地面对照相比,FLT组的主动脉非髓鞘纤维数量明显减少(平均值+/- SD; FLT 139 +/- 37; AGC 207 +/- 36; VIV 283 +/- 121) ; P <0.05),这可能与空间微重力条件下压力感受器反射的弱点有关。该结果可能有助于理解在微重力作用下以及重暴露于人体内后发生的几个心血管问题。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号