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用于可植入无线胶囊的电磁定位的改进建模

Improved modeling of electromagnetic localization for implantable wireless capsules.

作者信息

Guo Xudong, Yan Guozheng, He Wenhui, Jiang Pingping

机构信息

Institute of Medical Device Engineering, School of Medical Instrument and Food Engineering, University of Shanghai for Science and Technology, Shanghai, China.

出版信息

Biomed Instrum Technol. 2010 Jul-Aug;44(4):354-9. doi: 10.2345/0899-8205-44.4.354.

Abstract

An electromagnetic localization method for implantable wireless capsules has been developed that employs a three-axial magnetic sensor embedded in the capsules and three energized coils attached on the abdomen. In order to further improve the localization accuracy, a novel localization model has been derived based on the Biot-Savart Law. For simplicity of the calculation without increasing the position error, the method of truncated series expansion has been used in modeling. The experiment showed that the improved model had higher precision than the original dipole model. Using the improved model, the localization error can be greatly reduced. The improved model is an elementary math function and suitable for resolving some inverse magnetic problems in engineering.

摘要

一种用于可植入无线胶囊的电磁定位方法已经被开发出来,该方法采用嵌入胶囊中的三轴磁传感器和附着在腹部的三个通电线圈。为了进一步提高定位精度,基于毕奥-萨伐尔定律推导了一种新型定位模型。为了在不增加位置误差的情况下简化计算,在建模中使用了截断级数展开法。实验表明,改进后的模型比原始偶极子模型具有更高的精度。使用改进后的模型,可以大大降低定位误差。改进后的模型是一个基本数学函数,适用于解决工程中的一些逆磁问题。

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