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生物流变学中的电现象。

Electrical phenomena in biorheology.

作者信息

Fukada E

出版信息

Biorheology. 1982;19(1/2):15-27. doi: 10.3233/bir-1982-191-205.

Abstract

Electric polarization is important in various subjects in biorheology. Piezoelectricity, that is, stress-induced polarization and electric field-induced strain, is demonstrated in a variety of biological materials including polysaccharides, proteins and deoxyribonucleic acid. Complex piezoelectric constant depends on measuring frequency, temperature and water content. Piezoelectric relaxation is related to microscopic internal strain. Stress-induced potential in bone is produced by shear piezoelectricity in collagen fibers and/or streaming potential in conaliculae. The growth of bone is regulated to best resist external force. The controlling signal seems to be the electric potential. Application of small d.c. current or piezoelectric polymer film stimulates the formation of bone in femur of animals. Various techniques of electrical stimulation are clinically used for healing bone fracture. Pulsing electromagnetic field enhances the proliferation of cell culture.

摘要

电极化在生物流变学的各个领域都很重要。压电性,即应力诱导极化和电场诱导应变,在包括多糖、蛋白质和脱氧核糖核酸在内的多种生物材料中都有体现。复压电常数取决于测量频率、温度和含水量。压电弛豫与微观内部应变有关。骨中的应力诱导电位是由胶原纤维中的剪切压电性和/或骨小管中的流动电位产生的。骨骼的生长受到调节以最佳地抵抗外力。控制信号似乎是电位。施加小直流电流或压电聚合物薄膜可刺激动物股骨中骨的形成。各种电刺激技术在临床上用于治疗骨折。脉冲电磁场可增强细胞培养的增殖。

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