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时间生物学

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This is the webpage of Chronobiology International.

这是《国际时间生物学》杂志的网页。

Chronobiology is a newly rising science studying the biologic rhythm, time structure and application of organism and monoplast.

时间生物学是研究机体乃至单细胞活动的生物节律及其时间结构和应用的科学。

According to the development of the present study, its application in manned space flight and clinical medical treatment was proposed. the topic of "space chronobiology" and its research principles were put forward. treatment of cardiovascular diseases, metabolic system diseases, cancer and regulation of sleep were advanced.

根据时间生物学研究发展的现状,提出了其未来在载人航天研究领域和临床应用方面发展的前景和趋势,提出了建立"空间时间生物学"学科及学科研究的基本内容;在临床应用方面,提出了时间治疗学在治疗心血管疾病、内分泌系统疾病、肿瘤和睡眠调节等方面的应用前景。

Basing on introducing biological rhythms, especially the space biological rhythms, the paper gives an idea to develop the space chronobiology according to the needs of manned space flight in the future, and discusses the research direction and the contents, thus laying a foundation for developing the subject of space chronobiology and its system.

本文介绍了国内外生物节律,特别是航天飞行生物节律的研究进展,在此基础上,根据人类未来载人航天发展的需要,提出了开展空间时间生物学研究的问题;同时对空间时间生物学的基本概念、主要研究内容和基本模型进行了描述。根据空间时间生物学的基本模型,提出了今后重点研究的方向和内容,从而为空间时间生物学学科及体系的发展奠定基础。

The bi-monthly journal is official publication of the International Society for Chronobiology, American Association for Medical Chronobiology and Chronotherapeutics, and the Society for Light Treatment of Biological Rhythms, and was supported by Marcel Dekker, Inc.

该双月刊为国际时间生物学会、美国医学时间生物学和时间疗学协会和生物节律光处理学会的官方刊物,由Marcel Dekker公司出版。

The journal, started in 1963, publishes full papers, notes and reviews in cell biology, molecular biology, genetic engineering, endocrinology, reproductive biology, immunology, developmental biology, comparative physiology, radiation biology, chronobiology, microbiology, pharmacology, toxicology and other biological fields including instrumentation and methodology.

杂志创刊于1963年,刊载论文全文,札记和评论,内容涉及细胞生物学,分子生物学,遗传工程,内分泌学,生殖生物学,免疫学,发育生物学,比较生理学,放射生物学,时间生物学,微生物学,药理学,毒理学和其他生物学领域包括仪器和方法学。

Areas of its research include Applied Exercise Science, Cell Physiology, Comparative Physiology of Exercise, Developmental Neurobiology, Ecophysiology, Environmental and Comparative Endocrinology, Exercise Biochemistry, Human Cardiovascular, Integrative Vascular Biology, Locomotion, Motor Behavior, Neural Control of Movement, Neuroimmunophysiology, Reproductive Endocrinology, Sleep and Chronobiology.

其研究领域包括应用锻炼科学、细胞生理学、比较锻炼生理学、发育神经生物学、生态生理学、环境和比较内分泌学、锻炼生物化学、人类心血管学、综合血管生物学、运动、运动行为、运动的神经控制、神经免疫生理学、生殖内分泌学、睡眠以及时间生物学等。

The Center is housed in the Department of Integrative Physiology. Areas of its research include applied exercise science, cell physiology, comparative physiology of exercise, developmental neurobiology, ecophysiology, environmental and comparative endocrinology, exercise biochemistry, human cardiovascular, integrative vascular biology, locomotion, neural control of movement, neuroimmunophysiology, reproductive endocrinology, sleep and chronobiology.

该中心位于综合生理学系内,其研究领域包括应用锻炼科学,细胞生理学,锻炼比较生理学,发育神经生物学,生态生理学,环境和比较内分泌学,锻炼生物化学,人类心血管学,综合血管生物学,运动,运动神经控制,神经免疫生理学,生殖内分泌学,睡眠以及时间生物学等。

Methods Exerting backwards force on rats mandible and measuring concentration of rats' blood cAMP in three groups with radio-immunity. Drawing the time-concentration curve and making cosine analysis.

给大鼠下颌戴向后上牵引的矫形器,用放射免疫法测定不同加力组大鼠血中环磷腺苷含量,绘制时间-浓度曲线,并进行时间生物学的余弦统计分析。

The scope includes: Bioluminescence, chronobiology, DNA repair, environmental photobiology, photocarcinogenesis, photochemistry of biomolecules, photomedicine, photomorphogenesis, photomovement, photoreception, photosensitization, photosynthesis, phototechnology, spectroscopy of biological systems, UV and visible radiation effects and vision.

该杂志出版的范围涵盖:生物发光、时间生物学、DNA修复、环境光生物学、光致癌过程、生物分子光化学、光医学、光形态发生、光运动、感光、光敏作用、光合作用、光学技术、生物系统光谱学、紫外线和可见光效应及其显示等。

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This one mode pays close attention to network credence foundation of the businessman very much.

这一模式非常关注商人的网络信用基础。

Cell morphology of bacterial ghost of Pasteurella multocida was observed by scanning electron microscopy and inactivation ratio was estimated by CFU analysi.

扫描电镜观察多杀性巴氏杆菌细菌幽灵和菌落形成单位评价遗传灭活率。

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双标记神经干细胞的增殖、分化活力与未标记神经干细胞相比无改变。