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Method to Identify the Material of a Single Grain Based on Its Magnetization and Anisotropy Measured in a Chamber Type μG Drop Shaft
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作者 UYEDA Chiaki HISAYOSHI Keiji +1 位作者 MAMIYA Mikio NAGAI Yasuo 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2012年第S2期1081-1084,共4页
Free translation caused by attractive field-gradient force was observed for Ni and ferrite(CuFe_2O_4) grains that were released in a diffuse area.In order to exclude the effect of terrestrial gravity,translation was o... Free translation caused by attractive field-gradient force was observed for Ni and ferrite(CuFe_2O_4) grains that were released in a diffuse area.In order to exclude the effect of terrestrial gravity,translation was observed in micro-gravity(μG) condition produced by a compact drop-shaft installed in a ordinary laboratory room.Magnetization Ms per unit mass of the grain is obtained by analyzing the above-mentioned translations in terms of a energy conservation rule;here conservation of the sum of field-induced potential mMsH and kinetic energy 1/2/mv^2 is considered for a particle with mass m.The present method of obtaining Ms is free of measuring the mass of sample;this is because the field-gradient force is a volume force that is proportional to m.The method is also free of an interfering signal emitted from the sample holder.Accordingly,Ms is detectable irrespective of sample size,provided that the field-induced translation is observable.The above-mentioned procedure to estimate Ms from filed-induced translation is a step to obtain a reliable magnetic data from a single nano-sized grain.The efficiency of material identification was recently confirmed on various solid grains,which was based on diamagnetic magnetization data obtained from its translations caused by field-gradient repulsive force.A diamagnetic material generally possesses an intrinsic value of magnetic susceptibility and its anisotropy.The present results on nickel grains indicate that the principle of material identification based on its magnetization data is applicable for the three major category of magnetic materials,namely ferro-(or ferri-) magnetic, paramagnetic and diamagnetic material. 展开更多
关键词 chamber type μG drop-shaft saturated magnetization field-gradient force magnetic ejection diamagnetic anisotropy magnetic orientation magnetic alignment
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稳态磁场对真核生物细胞骨架的影响 被引量:2
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作者 张磊 李志元 张欣 《科学通报》 EI CAS CSCD 北大核心 2019年第8期748-760,共13页
细胞骨架是一种重要的细胞器,主要包括微管、微丝和中间纤维,在维持细胞形态、调控胞内物质运输、调节细胞分裂和细胞迁移等方面起着重要的作用,参与生殖发育和肿瘤发生等多个生理和病理过程,是细胞生物学以及肿瘤生物学领域的重要研究... 细胞骨架是一种重要的细胞器,主要包括微管、微丝和中间纤维,在维持细胞形态、调控胞内物质运输、调节细胞分裂和细胞迁移等方面起着重要的作用,参与生殖发育和肿瘤发生等多个生理和病理过程,是细胞生物学以及肿瘤生物学领域的重要研究对象.从二十世纪七八十年代起,关于稳态磁场对真核生物细胞骨架影响的研究在理论解释和实验观测方面都取得了一系列进展.在理论解释方面,研究者不仅计算了肽键的微弱抗磁各向异性,而且进一步计算了微管多聚体较强的抗磁各向异性.在实验观测方面,研究者发现不仅体外纯化的微管或微丝能够沿着强磁场方向排列,并且细胞内由微管或微丝构成的相关结构也会受到稳态磁场的影响,例如纺锤体、精子和草履虫纤毛等.相比之下,磁场对中间纤维的影响研究较少.随着高场磁共振成像(magneticresonanceimaging,MRI)的研发与应用,以及稳态磁场在肿瘤治疗领域的潜在应用的逐步开发,进一步研究不同参数稳态磁场与体内细胞骨架之间的关系对研究和解释磁场对肿瘤发生和生殖发育等的影响至关重要. 展开更多
关键词 稳态磁场 细胞骨架 微管 微丝 抗磁各向异性 有丝分裂纺锤体 细胞分裂
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