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红细胞衰老过程中微观流变学行为的研究 被引量:6
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作者 宋立川 马维原 +4 位作者 吕智红 孙大公 施岩 杨跃平 文宗曜 《生物物理学报》 CAS CSCD 北大核心 1997年第1期113-117,共5页
作者在用抗体诱发动物急性溶血的方法建立的红细胞在体同步衰老模型的基础上,对红细胞衰老过程中的微观流变学行为进行了研究。用激光衍射法对高粘悬浮介质(PVP)和低粘悬浮介质(PBS)流场中的微观流变学指标DI、IDI、(... 作者在用抗体诱发动物急性溶血的方法建立的红细胞在体同步衰老模型的基础上,对红细胞衰老过程中的微观流变学行为进行了研究。用激光衍射法对高粘悬浮介质(PVP)和低粘悬浮介质(PBS)流场中的微观流变学指标DI、IDI、(DI)d、(DI)or进行测量,结果显示四项指标随红细胞年龄的增加均呈下降趋势,但并不呈线性关系。表现为在生命周期中的前期变化较小,后期变化较大。提示老化过程中红细胞的流变学行为的变化主要发生在其生命过程的后半期。但各指标变化的规律不尽相同。与本室以往的研究结果进行比较,这些结果提示,在红细胞生命的初期,其膜的力学性质基本不变。而整个红细胞生命过程中红细胞力学性质的变化,可能来自红细胞的形状。 展开更多
关键词 红细胞 衰老 变形性 微观流变学行为
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Microstructure, morphology, crystallization and rheological behavior of impact polypropylene copolymer 被引量:4
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作者 SHANG-GUAN YongGang CHEN Feng ZHENG Qiang 《Science China Chemistry》 SCIE EI CAS 2012年第5期698-712,共15页
Impact polypropylene copolymer (IPC), named polypropylene catalloy, not only possesses excellent impact property, but also presents good rigidity. Its superior performances result from the complicated composition and ... Impact polypropylene copolymer (IPC), named polypropylene catalloy, not only possesses excellent impact property, but also presents good rigidity. Its superior performances result from the complicated composition and microstructure. In the present article, recent progress in the studies on microstructure, morphology, crystallization and rheological behavior of IPC is summarized, and findings of the authors and their collaborators are reported. In general, IPC is divided into three components, i.e., ethylene-propylene random copolymer (EPR), a series of different segment lengths ethylene-propylene copolymer (EbP) and propylene homopolymer. The reasonable macromolecular structures of EbP and a multilayered core-shell model of dispersed phase structure in IPC were proposed, in which the dispersed phase consists of an outer EbP shell, an inner EPR layer and an EbP core. It is found that the annealing at melt-state may lead to an abnormal phase inversion, and the phase inversion disappears when temperature cools down to room temperature. The cause of phase inversion is ascribed to the existence of EbP component, which results in the stronger activity of the dispersed phase. The crystalline structure and morphologic results confirm the formation of β-iPP in IPC. Furthermore, it is found that the ethylene content in IPC and cooling rate of the samples have an important influence on the formation of β-iPP. Based on the crystallization kinetics analyzed by Lauritzen-Hoffman theory, crystallization behavior of different IPC samples is discussed and it is proposed that the dilution effect of ethylene propylene copolymer has a more remarkable influence on surface nucleation than on crystal growth. In addition, annealing at high temperature can result in the changes of chain structure for IPC, and this instability is ascribed to the oxidative degradation and crosslink reaction mainly in iPP component. 展开更多
关键词 MICROSTRUCTURE MORPHOLOGY crystallization behavior rheological property impact polypropylene copolymer
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