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骨四点弯曲应力产生电位的微电极研究

Microelectrode studies of stress-generated potentials in four-point bending of bone.

作者信息

Starkebaum W, Pollack S R, Korostoff E

出版信息

J Biomed Mater Res. 1979 Sep;13(5):729-51. doi: 10.1002/jbm.820130506.

Abstract

A microelectrode technique has been developed to enable the study of stress-generated potentials (SGP) in bone to a spatial resolution of 5 micrometers. The technique has been used to measure the electrical potentials as a function of bone micromorphology in four-point bending. Electric fields ranging from 30 to 10(3) times greater than is measured by conventional macroscopic methods have been discovered at the Haversian canals for human and bovine cortical bone. The amplitude and direction of the electric field in the osteons depend specifically upon the amplitude and the sign (i.e., compression or tension) of the stress. The implications of this finding with regard to the origin of SGP and their possible physiological significance are considered.

摘要

一种微电极技术已被开发出来,以便能够在空间分辨率达到5微米的情况下研究骨骼中应力产生的电位(SGP)。该技术已被用于测量四点弯曲时作为骨微观形态函数的电位。在人类和牛的皮质骨哈弗斯管中,发现电场比传统宏观方法测量的电场大30到10³倍。骨单位中电场的幅度和方向具体取决于应力的幅度和符号(即压缩或拉伸)。本文考虑了这一发现对于SGP起源及其可能的生理意义的影响。

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