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Ibrahim Akduman
ORCID
Publication Activity (10 Years)
Years Active: 2005-2023
Publications (10 Years): 9
Top Topics
Deep Learning
Top Venues
Sensors
IEEE Access
IEEE Trans. Instrum. Meas.
IEEE Trans. Geosci. Remote. Sens.
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Publications
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Gulsah Yildiz
,
Iman Farhat
,
Lourdes Farrugia
,
Julian Bonello
,
Kristian Zarb-Adami
,
Charles V. Sammut
,
Tuba Yilmaz
,
Ibrahim Akduman
Comparison of Microwave Hyperthermia Applicator Designs with Fora Dipole and Connected Array.
Sensors
23 (14) (2023)
Semih Dogu
,
Hulusi Önal
,
Tuba Yilmaz
,
Ibrahim Akduman
,
Mehmet Nuri Akinci
Continuous Monitoring of Hyperthermia Treatment of Breast Tumors With Singular Sources Method.
IEEE Access
11 (2023)
Ismail Dilman
,
Egemen Bilgin
,
Mehmet Nuri Akinci
,
Sema Cosgun
,
Semih Dogu
,
Mehmet Çayören
,
Ibrahim Akduman
Monitoring of intracerebral hemorrhage with a linear microwave imaging algorithm.
Medical Biol. Eng. Comput.
61 (1) (2023)
Cemanur Aydinalp
,
Sulayman Joof
,
Ismail Dilman
,
Ibrahim Akduman
,
Tuba Yilmaz
Characterization of Open-Ended Coaxial Probe Sensing Depth with Respect to Aperture Size for Dielectric Property Measurement of Heterogeneous Tissues.
Sensors
22 (3) (2022)
Ismail Dilman
,
Mehmet Nuri Akinci
,
Tuba Yilmaz
,
Mehmet Çayören
,
Ibrahim Akduman
A Method to Measure Complex Dielectric Permittivity With Open-Ended Coaxial Probes.
IEEE Trans. Instrum. Meas.
71 (2022)
Cemanur Aydinalp
,
Sulayman Joof
,
Mehmet Nuri Akinci
,
Ibrahim Akduman
,
Tuba Yilmaz
Microwave Dielectric Property Retrieval From Open-Ended Coaxial Probe Response With Deep Learning.
IEEE Access
10 (2022)
Gulsah Yildiz
,
Halimcan Yasar
,
Ibrahim Enes Uslu
,
Yusuf Demirel
,
Mehmet Nuri Akinci
,
Tuba Yilmaz
,
Ibrahim Akduman
Antenna Excitation Optimization with Deep Learning for Microwave Breast Cancer Hyperthermia.
Sensors
22 (17) (2022)
Banu Saçli
,
Cemanur Aydinalp
,
Gökhan Cansiz
,
Sulayman Joof
,
Tuba Yilmaz
,
Mehmet Çayören
,
Bülent Önal
,
Ibrahim Akduman
Microwave dielectric property based classification of renal calculi: Application of a kNN algorithm.
Comput. Biol. Medicine
112 (2019)
Ahmet Hakan Tuncay
,
Ibrahim Akduman
Realistic Microwave Breast Models Through T1-Weighted 3-D MRI Data.
IEEE Trans. Biomed. Eng.
62 (2) (2015)
Tolga Ulas Gurbuz
,
Birol Aslanyurek
,
E. Pinar Karabulut
,
Ibrahim Akduman
An Efficient Nonlinear Imaging Approach for Dielectric Objects Buried Under a Rough Surface.
IEEE Trans. Geosci. Remote. Sens.
52 (5) (2014)
Ibrahim Akduman
,
Lorenzo Crocco
,
Francesco Soldovieri
Experimental Validation of a Simple System for Through-the-Wall Inverse Scattering.
IEEE Geosci. Remote. Sens. Lett.
8 (2) (2011)
Mehmet Çayören
,
Ibrahim Akduman
,
Ali Yapar
,
Lorenzo Crocco
Shape Reconstruction of Perfectly Conducting Targets From Single-Frequency Multiview Data.
IEEE Geosci. Remote. Sens. Lett.
5 (3) (2008)
Selda Yildiz
,
Yasemin Altuncu
,
Ali Yapar
,
Ibrahim Akduman
On the Scattering of Electromagnetic Waves by Periodic Rough Dielectric Surfaces: A BOA Solution.
IEEE Trans. Geosci. Remote. Sens.
46 (9) (2008)
Onur Mudanyali
,
Selda Yildiz
,
Oguz Semerci
,
Ali Yapar
,
Ibrahim Akduman
A Microwave Tomographic Approach for Nondestructive Testing of Dielectric Coated Metallic Surfaces.
IEEE Geosci. Remote. Sens. Lett.
5 (2) (2008)
Yasemin Altuncu
,
Ibrahim Akduman
,
Ali Yapar
Detecting and Locating Dielectric Objects Buried Under a Rough Interface.
IEEE Geosci. Remote. Sens. Lett.
4 (2) (2007)
Özgür Özdemir
,
Ibrahim Akduman
,
Ali Yapar
,
Lorenzo Crocco
Higher Order Inhomogeneous Impedance Boundary Conditions for Perfectly Conducting Objects.
IEEE Trans. Geosci. Remote. Sens.
45 (5-1) (2007)
Yasemin Altuncu
,
Ali Yapar
,
Ibrahim Akduman
On the scattering of electromagnetic waves by bodies buried in a half-space with locally rough interface.
IEEE Trans. Geosci. Remote. Sens.
44 (6) (2006)
Ali Yapar
,
Hülya Sahintürk
,
Ibrahim Akduman
,
Rainer Kress
One-dimensional profile inversion of a cylindrical Layer with inhomogeneous impedance boundary: a Newton-type iterative solution.
IEEE Trans. Geosci. Remote. Sens.
43 (10) (2005)