该仪器可广泛用于研究旋转磁场的生物效应。
This instrument may be used to research and study on biological effects of RMF widely.
介绍了生物电磁学的主要研究内容,综述了电磁场的生物效应。
The main content ofbioelectromagnetics and the biomedical effects of EM fields are illustrated in this paper.
没有任何可用的队列研究,以测试长时间暴露在电磁场中的后果,他们不得不依赖实验室研究,目前未找到任何明确或可复制的生物效应。
Without any available cohort studies to test exposure over a long period of time, though, they have had to rely on lab studies, which failed to find any clear or reproducible biological effects.
电磁场产生的生物效应已引起极大的关注。
The biological effects induced by electromagnetic fields have attracted great attention.
激光的生物学效应主要是光效应、热效应、电磁场效应、压力与冲击波效应。
The biology effect of the laser is a light hot, electromagnetism an effect, pressure primarily with wash' shot an effect.
极低频电磁场(ELFEMF)与人类的生存环境及健康密切相关,其生物学效应也倍受关注。
The extremely low frequency electromagnetic fields (ELFEMF) were very related to humans health and living environment and its biological effects were more and more interested to scientists.
本文介绍和研究了一种新型的脑电反馈方法,该方法将脑电生物反馈和电磁场生物效应有机结合。
A new EEG feedback method is introduced. This method makes use of biofeedback and the biological effects of electromagnetic field.
低频脉冲磁场的生物学效应已经在医学领域有了广泛应用,许多研究者开始关注脉冲磁场对心脏的生物学效应。
Due to the biological effects of low frequency pulsed magnetic field, many researchers have begun to pay attention to the biological effects of pulsed magnetic field on the heart.
磁场参数包括磁场类型,场强大小,作用时间等,这些参数是影响磁场生物学效应的主要因素。
Magnetic field parameters include magnetic field style, field intensity size, time of operation and so on, these parameters are major factors on infection of magnetic field biology.
结论载顺铂磁性纳米药物在体外磁场的引导下能聚集于肿瘤组织,发挥良好的抗肿瘤生物学效应。
ConclusionUnder the introduction of the outer magnetic field, the modified magnetic nanoparticles loaded CDDP could be collected within the targeting tumor and efficiently exert its antitumor effect.
结论载顺铂磁性纳米药物在体外磁场的引导下能聚集于肿瘤组织,发挥良好的抗肿瘤生物学效应。
ConclusionUnder the introduction of the outer magnetic field, the modified magnetic nanoparticles loaded CDDP could be collected within the targeting tumor and efficiently exert its antitumor effect.
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