Gerstenbrand F, Muigg A
Universitätsklinik für Neurologie, Innsbruck.
Wien Med Wochenschr. 1993;143(23-24):582-4.
The examination of pathophysiological disturbances and the process of adaptation in man during space flight is not for optimizing of the biological systems during the training of cosmonauts and astronauts for their stay in space only. These results are also important for medical application on patients. In real microgravity disturbances of motor performances, coordination of movements, accuracy of movements, muscle function as well as structural changes in muscles is found in real microgravity. Spinal reflexes and the control of vestibular system on eye movements are also afflicted. Higher brain functions, especially associative reactions, critical abilities, memory, as well as high brain function like space orientation, body scheme control, geometric and arithmetic analysis and its reproduction, at last speech production, writing and reading are decreased. Vegetative disorders, bone decalcification, primary muscular atrophy occur as well as changes in sleep--wake regulation and diminishing of vigility. Disturbances of blood and body fluid circulation and biologic radiation damage are further effects of man space flight. Several problems of space adaptation can be studied with the methods of the simulated microgravity using the dry water immersion, examination and the bed rest model in special laboratories. The routine medicine is learning from the scientific results of the research in real and simulated microgravity.
对人类在太空飞行期间病理生理紊乱及适应过程的研究,并非仅为在训练宇航员适应太空环境时优化生物系统。这些研究结果对患者的医学应用也很重要。在实际微重力环境下,会出现运动表现紊乱、运动协调性和准确性下降、肌肉功能以及肌肉结构变化。脊髓反射和前庭系统对眼球运动的控制也会受到影响。高级脑功能,尤其是联想反应、批判性思维能力、记忆力,以及诸如空间定向、身体图式控制、几何和算术分析及其再现等高级脑功能,最后还有言语产生、书写和阅读能力都会下降。还会出现植物神经紊乱、骨质脱钙、原发性肌肉萎缩,以及睡眠 - 觉醒调节变化和活力降低。血液和体液循环紊乱以及生物辐射损伤是人类太空飞行的进一步影响。可以利用特殊实验室中的干水浸没法、检查法和卧床休息模型等模拟微重力方法来研究若干太空适应问题。常规医学正从实际和模拟微重力研究的科学成果中汲取经验。