Human Brain Modeling Tumor Detection in 2D and 3D Representation Using Microwave Signal Analysis

The paper discussed on the development of a simulated brain model, microwave signal acquisition, signal processing, 2D and 3D representation. Phantom model is the main component in the research. A human-like brain model was simulated based on the real human brain relative permittivity, ∊ r . The sim...

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Bibliographic Details
Main Authors: Chew, Kim Mey, Yong, Ching Yee, Rubita, Sudirman, Syvester Tan, Chiang Wei
Format: Proceeding
Language:English
Published: 2018
Subjects:
Online Access:http://ir.unimas.my/id/eprint/45890/1/P17.%20Human%20Brain%20Modeling%20Tumor%20Detection%20in%202D%20and%203D%20Representation%20Using%20Microwave%20Signal%20Analysis.pdf
http://ir.unimas.my/id/eprint/45890/
https://ieeexplore.ieee.org/document/8405490
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Summary:The paper discussed on the development of a simulated brain model, microwave signal acquisition, signal processing, 2D and 3D representation. Phantom model is the main component in the research. A human-like brain model was simulated based on the real human brain relative permittivity, ∊ r . The simulated model covered the greymatter and whitematter layers with the representative ∊ r = 38 and ∊ r = 28 at frequency 10 GHz. In microwave signal data acquisition process, the data were obtained based on the simulated brain model. Envelope detection, subtraction, window functions and proposed superposition technique function are applied to extract the information from the microwave signal. The subtracted microwave signals are represented in 2D and 3D representation for tumor location and size defining.