会议论文详细信息
International Conference on Physical Instrumentation and Advanced Materials
Dual frequency electrical impedance tomography to obtain functional image
物理学;材料科学
Sapuan, Imam^1 ; Ain, Khusnul^1 ; Suryanto, Alif^1
Department of Physics, Faculty of Sciences and Technology, Universitas Airlangga, Indonesia^1
关键词: Current injections;    Electrical impedance tomography;    Electrical potential;    Electrode current;    Functional images;    Low and high frequencies;    Single frequency;    Voltage controlled current sources;   
Others  :  https://iopscience.iop.org/article/10.1088/1742-6596/853/1/012002/pdf
DOI  :  10.1088/1742-6596/853/1/012002
学科分类:材料科学(综合)
来源: IOP
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【 摘 要 】

Electric Impedance Tomography with two frequencies is a system to detect the anomalies. This system is expected to detect the presence of a cancer in the breast. In this study, the objects are modelled in a circle phantom within 13 cm diameter. Those objects are equipped with 16 electrodes of copperplate. The objects, carrots, are functioned as a cancer and water as a medium of the normal breast. This electrode works to inject the current and to measure the voltage at a certain point. The position of the electrode current injection is controlled by a de-multiplexer, whereas the measurement of voltage at the electrodes is controlled by a multiplexer. The electric current source utilized has two frequencies; 10 kHz and 100 kHz. This electric current is generated from a circuit of Voltage Controlled Current Source using an oscillator XR2206. The microcontroller is utilized to control the current injection through a de-multiplexer and the measurement of output voltage through a multiplexer. This research has produced three images. Two images are obtained from both frequencies of 10 kHz and 100 kHz. Those two images cannot be achieved in the reality. The object condition of normal breast cannot be measured, since the normal breast of a person is different from others. In this study, the two images can be obtained when the potential background of the phantom can be measured. The third image is obtained from the reconstruction of the electrical potential difference between the low and high frequencies. This image is called as a functional image. This functional image makes the EIT system can be implemented, since it can be obtained without measuring the potential background. This functional image reveals that the anomalies are more obvious than the single frequency image.

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