Pattern of blood circulation in the brain during rest and functional tests by Salyut-4 space crewmen.

I I Kas'yan, G B Vainshtein, V I Semernya, K A Gorokhov, V P Tikhonov, S I Ponomarev, K K Asanov
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Abstract

Changes in the rheoencephalogram (REG) obtained for cosmonauts on the first and second expeditions during their time aboard the orbiting station, Salyut-4, are described. REGs were recorded by a small apparatus, Levkoi-3, with subsequent transmittal of the information to Earth stations. It was established that during flight under conditions of negative pressure on the lower half of the body (NPLHB), there was a decrease, in all cases, in pulse filling of brain blood vessels and an improvement in venous outflow from the cranial cavity. This indicates the efficiency of the compensation-adaptation reaction of the system studied to the state of weightlessness and the positive effect of prophylactic measures taken during flight. REG changes in indices affected by negative pressure were mainly such as were observed in preflight investigations, but there were individual differences. It was discovered that in all cosmonauts during performance of functional tests on a veloergometer, there was a significant increase in indices of pulse filling of brain blood vessels in response to muscle load in comparison with preflight studies. Normalization of basic REG indices took 3-7 min after the work was concluded. Planimetric analysis with REGs registered under conditions of long flight disclosed a variety of reactions of different sections of the vascular channels in the brain. Data obtained indicated the value of the REG method for making observations on crew members of space ships during orbital flights.

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礼炮4号宇航员在休息和功能测试期间大脑血液循环的模式。
描述了第一次和第二次宇航员在轨道空间站“礼炮-4”期间获得的脑流变图(REG)的变化。规则是由一个小仪器,记录Levkoi-3,随后的地球站的传输信息。结果表明,在下半身负压(NPLHB)条件下飞行时,所有情况下脑血管脉搏充盈减少,颅腔静脉流出量改善。这表明所研究的系统对失重状态的补偿-适应反应是有效的,飞行中采取的预防措施是有效的。受负压影响的各指标REG变化主要与飞行前调查结果一致,但存在个体差异。研究发现,与飞行前的研究相比,所有宇航员在速度计上进行功能测试时,对肌肉负荷作出反应的脑血管脉搏充盈指数显著增加。基本REG指标归一化时间为工作结束后3-7 min。在长时间飞行条件下记录的REGs平面分析揭示了大脑血管通道不同部分的各种反应。所获得的数据表明了REG方法在轨道飞行期间对宇宙飞船乘员进行观测的价值。
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