Skip to main content

2020 | OriginalPaper | Buchkapitel

Ultra Wide Band (UWB) Based Early Breast Cancer Detection Using Artificial Intelligence

verfasst von : Bifta Sama Bari, Sabira Khatun, Kamarul Hawari Ghazali, Md. Moslemuddin Fakir, Wan Nur Azhani W. Samsudin, Mohd Falfazli Mat Jusof, Mamunur Rashid, Minarul Islam, Mohd Zamri Ibrahim

Erschienen in: InECCE2019

Verlag: Springer Singapore

Aktivieren Sie unsere intelligente Suche, um passende Fachinhalte oder Patente zu finden.

search-config
loading …

Abstract

Breast cancer is a silent killer malady among women community all over the world. The death rate is increased as it has no syndrome at an early stage. There is no remedy; hence, detection at the early stage is crucial. Usually, women do not go to clinic/hospital for regular breast health checkup unless they are sick. This is due to the long queue and waiting time in the hospital, high cost, people’s busy schedule, and so on. Recently, several research works have been done on early breast cancer detection using Ultra Wide Band (UWB) technology because of its non-invasive and health-friendly nature. Each proposed UWB system has its limitation including system complexity, expensive, expert operable in the clinic. To overcome these problems, a system is required which should be simple, cost-effective and user-friendly. This chapter presents the development of a user friendly and affordable UWB system for early breast cancer detection utilizing Artificial Neural Network (ANN). A feed-forward back propagation Neural Network (NN) with ‘feedforwardnet’ function is utilized to detect the cancer existence, size as well as the location in 3-dimension (3D). The hardware incorporates UWB transceiver and a pair of pyramidal shaped patch antenna to transmit and receive the UWB signals. The extracted features from the received signals were fed into the NN module to train, validate, and test. The average system’s performance efficiency in terms of tumor/cancer existence, size and location is approximately 100%, 92.43%, and 91.31% respectively. Here, in our system, use of ‘feedforwardnet’ function; detection-combination of tumor/cancer existence, size and location in 3D along with improved performance is a new addition compared to other related researches and/or existing systems. This may become a promising user-friendly system in the near future for early breast cancer detection in a domestic environment with low cost and to save precious human life.

Sie haben noch keine Lizenz? Dann Informieren Sie sich jetzt über unsere Produkte:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literatur
1.
Zurück zum Zitat Hadjiiski L, Sahiner B, Helvie MA, Chan HP, Roubidoux MA, Paramagul C, Blane C, Petrick N, Bailey J, Klein K, Foster M, Patterson SK, Adler D, Nees AV, Shen J (2006) Breast masses: computer-aided diagnosis with serial mammograms. Radiol Cancer Center 240(2):343–356 Hadjiiski L, Sahiner B, Helvie MA, Chan HP, Roubidoux MA, Paramagul C, Blane C, Petrick N, Bailey J, Klein K, Foster M, Patterson SK, Adler D, Nees AV, Shen J (2006) Breast masses: computer-aided diagnosis with serial mammograms. Radiol Cancer Center 240(2):343–356
4.
Zurück zum Zitat Migowski A (2015) Early detection of breast cancer and interpretation of the results of survival studies. Sci Collective Health 20(4) Migowski A (2015) Early detection of breast cancer and interpretation of the results of survival studies. Sci Collective Health 20(4)
5.
Zurück zum Zitat Seidman H, Stellman SD, Mushinski MH (1982) A different perspective on breast cancer risk factors: some implications of the non-attributable risk. CA Cancer J Clin 32:301–313CrossRef Seidman H, Stellman SD, Mushinski MH (1982) A different perspective on breast cancer risk factors: some implications of the non-attributable risk. CA Cancer J Clin 32:301–313CrossRef
6.
Zurück zum Zitat Park EH, Min SY, Kim Z, Yoon CS, Jung KW, Nam SJ, Oh SJ, Lee S, Park BW, Lim W, Hur MH (2017) Korean breast cancer society: basic facts of breast cancer in Korea in 2014: the 10-year overall survival progress. J Breast Cancer 20:1–11CrossRef Park EH, Min SY, Kim Z, Yoon CS, Jung KW, Nam SJ, Oh SJ, Lee S, Park BW, Lim W, Hur MH (2017) Korean breast cancer society: basic facts of breast cancer in Korea in 2014: the 10-year overall survival progress. J Breast Cancer 20:1–11CrossRef
7.
Zurück zum Zitat Kwon S, Lee S (2016) Recent advances in microwave imaging for breast cancer detection. Int J Biomed Imaging 2016:1–26 Kwon S, Lee S (2016) Recent advances in microwave imaging for breast cancer detection. Int J Biomed Imaging 2016:1–26
8.
Zurück zum Zitat Hang JA, Sim L, Zakar Z (2017) Non-invasive breast cancer assessment using magnetic induction spectroscopy technique. Int J Integr Eng 9(2):54–60 Hang JA, Sim L, Zakar Z (2017) Non-invasive breast cancer assessment using magnetic induction spectroscopy technique. Int J Integr Eng 9(2):54–60
9.
Zurück zum Zitat Griebsch I, Brown J, Boggis C, Dixon A, Dixon M, Easton D, Eeles R, Evans DG, Gilbert FJ, Hawnaur J, Kessar P, Lakhani SR, Moss SM, Nerurkar A, Padhani AR, Pointon LJ, Potterton J, Thompson D, Turnbull LW, Walker LG, Warren R, Leach MO (2006) Cost-effectiveness of screening with contrast enhanced magnetic resonance imaging vs x-ray mammography of women at a high familial risk of breast cancer. Br J Cancer 95:801–810CrossRef Griebsch I, Brown J, Boggis C, Dixon A, Dixon M, Easton D, Eeles R, Evans DG, Gilbert FJ, Hawnaur J, Kessar P, Lakhani SR, Moss SM, Nerurkar A, Padhani AR, Pointon LJ, Potterton J, Thompson D, Turnbull LW, Walker LG, Warren R, Leach MO (2006) Cost-effectiveness of screening with contrast enhanced magnetic resonance imaging vs x-ray mammography of women at a high familial risk of breast cancer. Br J Cancer 95:801–810CrossRef
10.
Zurück zum Zitat Force UPST (2009) Screening for breast cancer: U.S. preventive services task force recommendation statement. Ann Intern Med 151:716 Force UPST (2009) Screening for breast cancer: U.S. preventive services task force recommendation statement. Ann Intern Med 151:716
11.
Zurück zum Zitat Alshehri SA, Khatun S, Jantan AB, Raja Abdullah RSA, Mahmud R, Awang Z (2011) Experimental breast tumor detection using NN-based UWB imaging. Prog Electromagnet Res 111:447–465CrossRef Alshehri SA, Khatun S, Jantan AB, Raja Abdullah RSA, Mahmud R, Awang Z (2011) Experimental breast tumor detection using NN-based UWB imaging. Prog Electromagnet Res 111:447–465CrossRef
12.
Zurück zum Zitat Alshehri SA, Khatun S (2011) UWB imaging for breast cancer detection using neural network. Prog Electromagnet Res C 7:79–93CrossRef Alshehri SA, Khatun S (2011) UWB imaging for breast cancer detection using neural network. Prog Electromagnet Res C 7:79–93CrossRef
13.
Zurück zum Zitat Alshehri SA, Khatun S, Jantan AB, Raja Abdullah RSA, Mahmud R, Awang Z (2011) 3D experimental detection and discrimination of malignant and benign breast tumor using NN-based UWB imaging system. Progr Electromagnet Res 116:221–237CrossRef Alshehri SA, Khatun S, Jantan AB, Raja Abdullah RSA, Mahmud R, Awang Z (2011) 3D experimental detection and discrimination of malignant and benign breast tumor using NN-based UWB imaging system. Progr Electromagnet Res 116:221–237CrossRef
14.
Zurück zum Zitat Alshehri SA, Jantan A, Raja Abdullah RSA, Mahmud R, Khatun S, Awang Z (2011) A UWB imaging system to detect early breast cancer in heterogeneous breast phantom. In: Proceedings of the international conference on electrical, control and computer engineering (InECCE’11), 21–22 June 2011, Pahang, Malaysia, pp 238–242 Alshehri SA, Jantan A, Raja Abdullah RSA, Mahmud R, Khatun S, Awang Z (2011) A UWB imaging system to detect early breast cancer in heterogeneous breast phantom. In: Proceedings of the international conference on electrical, control and computer engineering (InECCE’11), 21–22 June 2011, Pahang, Malaysia, pp 238–242
15.
Zurück zum Zitat Alshehri SA, Khatun S, Awang Z (2011) Homogeneous and heterogeneous breast phantoms for UWB imaging. In: Proceedings of the 4th international symposium on applied sciences in biomedical & communication technologies (ISABEL’11), 26–29 October 2011, Barcelona, Spain, pp 1–5 Alshehri SA, Khatun S, Awang Z (2011) Homogeneous and heterogeneous breast phantoms for UWB imaging. In: Proceedings of the 4th international symposium on applied sciences in biomedical & communication technologies (ISABEL’11), 26–29 October 2011, Barcelona, Spain, pp 1–5
16.
Zurück zum Zitat Reza KJ, Khatun S, Jamlos MF, Fakir MM, Morshed MN (2015) Performance enhancement of UWB breast cancer imaging system: proficient feature extraction and biomedical antenna approach. J Med Imaging Health Inform 5(6):1246–1250CrossRef Reza KJ, Khatun S, Jamlos MF, Fakir MM, Morshed MN (2015) Performance enhancement of UWB breast cancer imaging system: proficient feature extraction and biomedical antenna approach. J Med Imaging Health Inform 5(6):1246–1250CrossRef
17.
Zurück zum Zitat Vijayasarveswari V, Khatun S, Fakir MM, Jusoh M, Ali S (2017) UWB based low-cost and non-invasive practical breast cancer early detection. In: Proceedings of the 11th asian conference on chemical sensors, AIP conference proceedings, 16–18 November 2015, Penang, Malaysia, vol 1808 (1), pp 1–5 Vijayasarveswari V, Khatun S, Fakir MM, Jusoh M, Ali S (2017) UWB based low-cost and non-invasive practical breast cancer early detection. In: Proceedings of the 11th asian conference on chemical sensors, AIP conference proceedings, 16–18 November 2015, Penang, Malaysia, vol 1808 (1), pp 1–5
18.
Zurück zum Zitat Vijayasarveswari V, Khatun S, Jusoh M, Fakir MM (2016) Ultra-wideband (UWB) based classification of benign and malignant tumor. Int J Appl Eng Res 11(14):8345–8349 Vijayasarveswari V, Khatun S, Jusoh M, Fakir MM (2016) Ultra-wideband (UWB) based classification of benign and malignant tumor. Int J Appl Eng Res 11(14):8345–8349
19.
Zurück zum Zitat Vijayasarveswari V, Jusoh M, Khatun S (2017) Experimental UWB based efficient breast cancer early detection. Indian J Sci Technol 10(12):1–6CrossRef Vijayasarveswari V, Jusoh M, Khatun S (2017) Experimental UWB based efficient breast cancer early detection. Indian J Sci Technol 10(12):1–6CrossRef
20.
Zurück zum Zitat Vijayasarveswari V, Jusoh M, Sabapathy T, Aliana1 R, Khatun S, Ahmad ZA, Osman MN (2017) Performance verification on UWB antennas for breast cancer detection. In: Proceedings of the international conference on emerging electronic solutions for IoT (ICEESI’17), MATEC Web of Conferences, 9–10 October 2017, vol 140 (01004), pp 1–4 Vijayasarveswari V, Jusoh M, Sabapathy T, Aliana1 R, Khatun S, Ahmad ZA, Osman MN (2017) Performance verification on UWB antennas for breast cancer detection. In: Proceedings of the international conference on emerging electronic solutions for IoT (ICEESI’17), MATEC Web of Conferences, 9–10 October 2017, vol 140 (01004), pp 1–4
21.
Zurück zum Zitat Meaney PM, Paulsen KD, Hartov A, Crane RK (1995) An active microwave imaging system for reconstruction of 2-D electrical property distributions. IEEE Trans Biomed Eng 42(10):1017–1026CrossRef Meaney PM, Paulsen KD, Hartov A, Crane RK (1995) An active microwave imaging system for reconstruction of 2-D electrical property distributions. IEEE Trans Biomed Eng 42(10):1017–1026CrossRef
22.
Zurück zum Zitat Fear EC, Sill JM (2003) Preliminary investigations of tissue sensing adaptive radar for breast tumor detection. In: Proceedings of the 25th annual international conference of the IEEE engineering in medicine and biology society, 17–21 September 2003, Cancun-Mexico, vol 4, pp 3787–3790 Fear EC, Sill JM (2003) Preliminary investigations of tissue sensing adaptive radar for breast tumor detection. In: Proceedings of the 25th annual international conference of the IEEE engineering in medicine and biology society, 17–21 September 2003, Cancun-Mexico, vol 4, pp 3787–3790
23.
Zurück zum Zitat Abu Bakar A, Ireland D, Abbosh AM, Wang Y (2012) Experimental assessment of microwave diagnostic tool for ultra-wideband breast cancer detection. Prog Electromagnet Res M 23:109–121CrossRef Abu Bakar A, Ireland D, Abbosh AM, Wang Y (2012) Experimental assessment of microwave diagnostic tool for ultra-wideband breast cancer detection. Prog Electromagnet Res M 23:109–121CrossRef
24.
Zurück zum Zitat Shahzad A, O’Halloran M, Jones E, Glavin M (2016) A multistage selective weighting method for improved microwave breast tomography. Comput Med Imaging Graph 54:6–15CrossRef Shahzad A, O’Halloran M, Jones E, Glavin M (2016) A multistage selective weighting method for improved microwave breast tomography. Comput Med Imaging Graph 54:6–15CrossRef
25.
Zurück zum Zitat Salleh SHM, Othman MA, Ali N, Sulaiman HA, Misran MH, Aziz A, Abidin MZA (2015) Microwave imaging technique using UWB signal for breast cancer detection. ARPN J Eng App Sci 10(2):723–727 Salleh SHM, Othman MA, Ali N, Sulaiman HA, Misran MH, Aziz A, Abidin MZA (2015) Microwave imaging technique using UWB signal for breast cancer detection. ARPN J Eng App Sci 10(2):723–727
26.
Zurück zum Zitat RCM Pulse-On UWB Devices (2017) Time Domain Corporation, Comings Research Park, 330 Wynn Drive, Suite 300, Hantsville, Al 35805, USA RCM Pulse-On UWB Devices (2017) Time Domain Corporation, Comings Research Park, 330 Wynn Drive, Suite 300, Hantsville, Al 35805, USA
27.
Zurück zum Zitat Lazebnik M, Madsen EL, Frank GR, Hagness SC (2005) Tissue-mimicking phantom materials for narrowband and ultrawideband microwave applications. Phys Med Biol 50:4245–4258 Lazebnik M, Madsen EL, Frank GR, Hagness SC (2005) Tissue-mimicking phantom materials for narrowband and ultrawideband microwave applications. Phys Med Biol 50:4245–4258
28.
Zurück zum Zitat Porter E, Fakhoury J, Oprisor R, Coates M, Popović M (2010) Improved tissue phantoms for experimental validation of microwave breast cancer detection. In: Proceedings of the 4th european conference on antennas and propagation, 12–16 April 2010, Barcelona, Spain, pp 1–5 Porter E, Fakhoury J, Oprisor R, Coates M, Popović M (2010) Improved tissue phantoms for experimental validation of microwave breast cancer detection. In: Proceedings of the 4th european conference on antennas and propagation, 12–16 April 2010, Barcelona, Spain, pp 1–5
29.
Zurück zum Zitat Khondker Jahid R, Sabira K, Faizal M, Ikram E, Ishwar Z, Khalib A (2013) Proficient feature extraction strategy for performance enhancement of NN based early breast tumor detection. Int J Eng Technol 5(6) Khondker Jahid R, Sabira K, Faizal M, Ikram E, Ishwar Z, Khalib A (2013) Proficient feature extraction strategy for performance enhancement of NN based early breast tumor detection. Int J Eng Technol 5(6)
30.
Zurück zum Zitat Conceicao RC, O’Halloran M, Jones E, Glavinz M (2010) Investigation of classifiers for early-stage breast cancer based on radar target signatures. Prog Electromagnet Res 105:295–311CrossRef Conceicao RC, O’Halloran M, Jones E, Glavinz M (2010) Investigation of classifiers for early-stage breast cancer based on radar target signatures. Prog Electromagnet Res 105:295–311CrossRef
31.
Zurück zum Zitat Santorelli A, Porter E, Kirshin E, Liu YJ, Popović M (2014) Investigation of classifiers for tumor detection with an experimental time-domain breast screening system. Prog Electromagnet Res 144:45–57 Santorelli A, Porter E, Kirshin E, Liu YJ, Popović M (2014) Investigation of classifiers for tumor detection with an experimental time-domain breast screening system. Prog Electromagnet Res 144:45–57
Metadaten
Titel
Ultra Wide Band (UWB) Based Early Breast Cancer Detection Using Artificial Intelligence
verfasst von
Bifta Sama Bari
Sabira Khatun
Kamarul Hawari Ghazali
Md. Moslemuddin Fakir
Wan Nur Azhani W. Samsudin
Mohd Falfazli Mat Jusof
Mamunur Rashid
Minarul Islam
Mohd Zamri Ibrahim
Copyright-Jahr
2020
Verlag
Springer Singapore
DOI
https://doi.org/10.1007/978-981-15-2317-5_43