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2017 | OriginalPaper | Buchkapitel

Study of Eddy Current Density Distribution in a Contactless Breast Cancer Detection Mechanism Using Magnetic Induction Spectroscopy

verfasst von : Gowry Balasena, Shahriman Abu Bakar, Zulkarnay Zakaria, Ryojun Ikeura, Zuradzman Mohamad Razlan, Hazry Desa, Wan Khairunizam Wan Ahmad, Cheng Ee Meng, Mohd Afendi Rojan

Erschienen in: 9th International Conference on Robotic, Vision, Signal Processing and Power Applications

Verlag: Springer Singapore

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Abstract

Breast cancer is a throbbing disease that no longer needs an introduction. This is especially true among women due to their unique breast structure that naturally has more breast tissues compared to that of man’s. It is been forecasted that in 2015, a minimum of 60290 new cases of breast cancer will be reported. The goal of this study is to analytically evaluate the changes in the induced Eddy current densities as a function of di-electrical properties of the breast tissue with respect to tumor positioning as well as its size. This is achieved by running numerical simulations on the proposed mechanism of magnetic induction to detect tumors among healthy breast tissue via a 2D breast model configuration. The analytical results presented in this article, proved that the multi frequency magnetic induction principle is viable in detecting the breast lesions as small as 0.2 cm non-invasively through the distributions of the induced Eddy current density. While important pattern of the induced current were reflected when the tumors are located at the far ends of the breast diameter. The minimum results computational time with the proposed system is 10 s.

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Literatur
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Zurück zum Zitat Israyelyan AH (2003) The development of molecular diagnostics for breast cancer. PhD. Louisiana State University Israyelyan AH (2003) The development of molecular diagnostics for breast cancer. PhD. Louisiana State University
2.
Zurück zum Zitat Gonzalez CA, Lozano LM, Uscanga MC, Silva JG, Polo SM (2013) Theoretical and experimental estimations of volumetric inductive phase shift in breast cancer tissue. J Phys: Conf Ser 434:012004 Gonzalez CA, Lozano LM, Uscanga MC, Silva JG, Polo SM (2013) Theoretical and experimental estimations of volumetric inductive phase shift in breast cancer tissue. J Phys: Conf Ser 434:012004
3.
Zurück zum Zitat González CA (2012) simulation of multi-frequency induced currents in biophysical models and agar phantoms of breast cancer. J. Electromagn. Anal. Appl. 04(08):317–325 González CA (2012) simulation of multi-frequency induced currents in biophysical models and agar phantoms of breast cancer. J. Electromagn. Anal. Appl. 04(08):317–325
4.
Zurück zum Zitat Zakaria Z, Rahim RA, Mansor MSB, Yaacob S, Ayob NMN, Muji SZM, Rahiman MHF, Aman SMKS (2012) Advancements in transmitters and sensors for biological tissue imaging in magnetic induction tomography. Sensors (Switzerland) 12(6):7126–7156CrossRef Zakaria Z, Rahim RA, Mansor MSB, Yaacob S, Ayob NMN, Muji SZM, Rahiman MHF, Aman SMKS (2012) Advancements in transmitters and sensors for biological tissue imaging in magnetic induction tomography. Sensors (Switzerland) 12(6):7126–7156CrossRef
Metadaten
Titel
Study of Eddy Current Density Distribution in a Contactless Breast Cancer Detection Mechanism Using Magnetic Induction Spectroscopy
verfasst von
Gowry Balasena
Shahriman Abu Bakar
Zulkarnay Zakaria
Ryojun Ikeura
Zuradzman Mohamad Razlan
Hazry Desa
Wan Khairunizam Wan Ahmad
Cheng Ee Meng
Mohd Afendi Rojan
Copyright-Jahr
2017
Verlag
Springer Singapore
DOI
https://doi.org/10.1007/978-981-10-1721-6_10

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