期刊论文详细信息
Environmental Health and Preventive Medicine
Dynamic cerebral autoregulation after confinement in an isolated environment for 14 days
Takuya Kurazumi1  Yojiro Ogawa1  Ken-ichi Iwasaki1  Ryo Yanagida1  Tomokazu Kato1  Chiharu Takko1  Satoshi Furukawa2  Go Suzuki2  Natsuhiko Inoue2 
[1] Division of Hygiene, Department of Social Medicine, Nihon University School of Medicine;Japan Aerospace Exploration Agency;
关键词: Cerebral circulation;    Space medicine;    Transcranial Doppler;    Transfer function analysis;    Isolated and confined environment;    Isolation;   
DOI  :  10.1186/s12199-018-0751-y
来源: DOAJ
【 摘 要 】

Abstract Background To develop human space exploration, it is necessary to study the effects of an isolated and confined environment, as well as a microgravity environment, on cerebral circulation. However, no studies on cerebral circulation in an isolated and confined environment have been reported. Therefore, we investigated the effects of a 14-day period of confinement in an isolated environment on dynamic cerebral autoregulation. Methods We participated in an isolation and confinement experiment conducted by the Japan Aerospace Exploration Agency in 2016. Eight healthy males were isolated and confined in a facility for 14 days. Data were collected on the days immediately before and after confinement. Arterial blood pressure waveforms were obtained using a finger blood pressure monitor, and cerebral blood flow velocity waveforms in the middle cerebral artery were obtained using transcranial Doppler ultrasonography for 6 min during quiet rest in a supine position. Dynamic cerebral autoregulation was evaluated by transfer function analysis between spontaneous variability of beat-to-beat mean arterial blood pressure and mean cerebral blood flow velocity. Results Transfer function gain in the low- and high-frequency ranges increased significantly (0.54 ± 0.07 to 0.69 ± 0.09 cm/s/mmHg and 0.80 ± 0.05 to 0.92 ± 0.09 cm/s/mmHg, respectively) after the confinement. Conclusion The increases observed in transfer function gain may be interpreted as indicating less suppressive capability against transmission from arterial blood pressure oscillation to cerebral blood flow velocity fluctuation. These results suggest that confinement in an isolated environment for 14 days may impair dynamic cerebral autoregulation. Trial registration UMIN000020703, Registered 2016/01/22.

【 授权许可】

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