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Effects of Transcranial Micro-electric Current Physiological Training on Polysonograme Under Altitude Hypoxia

机译:高原缺氧时经颅微电流生理训练对超声检查的影响

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Objective To investigate the effects of transcranial micro-electric current physiological training (TMCPT) on polysomnograme (PSG) in order to provide technology and methods for maintaining and training cerebral function (CF) under altitude hypoxia. Methods Forty healthy volunteers served as subjects, who trained by TMCPT in the condition of altitude hypoxia (3700 m above sea level). Current intensity of TMCPT was limited within safety physiological band. Subjects were trained 1 times per day (before going to bed) and lasted 5 min. PSG were observed in resident phase (time lasted 3 month at least) Pittsburgh sleep quality index were investigated to evaluate the sleep quality. Results Compare to the results of pre-TMCPT, actual sleep time of PSG increased, sleep latency decreased, sleep efficiency improved significantly (F = 15.43-34.75, P < 0.05). S_(2%), S_(3+4%) and REM% of sleep construction in PSG increased but S_(1%) decreased (F = 12.59-14.57, P < 0.05). Subjects' sleep quality indexes had significant reduction as compared with those in pre-resident phase. Conclusions TMCPT can improve sleep quality under altitude hypoxia.
机译:目的探讨经颅微电流生理训练(TMCPT)对多导睡眠图(PSG)的影响,以提供在低氧状态下维持和训练脑功能(CF)的技术和方法。方法40名健康志愿者作为受试者,在海拔低氧(海拔3700 m)条件下接受TMCPT训练。 TMCPT的当前强度被限制在安全生理范围内。每天对受试者进行1次训练(睡前),持续5分钟。在驻留阶段(至少持续3个月)观察PSG,调查匹兹堡睡眠质量指数以评估睡眠质量。结果与TMCPT之前的结果相比,PSG的实际睡眠时间增加,睡眠潜伏期缩短,睡眠效率显着改善(F = 15.43-34.75,P <0.05)。 PSG中睡眠建设的S_(2%),S_(3 + 4%)和REM%升高,但S_(1%)降低(F = 12.59-14.57,P <0.05)。与住院前阶段相比,受试者的睡眠质量指数显着降低。结论TMCPT可以改善高原缺氧条件下的睡眠质量。

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