Comptes Rendus
Electromagnetic fields: from dosimetry to human health
Investigation on an RFID planar coil for a wireless communicative aortic stent
Comptes Rendus. Physique, Volume 14 (2013) no. 5, pp. 438-446.

This paper presents an investigation on a potential biomedical RFID planar coil operating at 13.56 MHz for measuring the blood pressure level, mounted inside an abdominal aortic aneurysm. The results show that a wireless communication is achieved in a perimeter of 60 cm, while respecting the ISO 15693 standard for vicinity contactless cards. Measurement and electromagnetic simulation results show that the inductive coupling is deteriorating if the planar coil is in direct contact with water without correctly encapsulating this coil. An electric model is given for our proposed RFID planar coil immersed in water.

Publié le :
DOI : 10.1016/j.crhy.2013.02.006
Mots clés : RFID, Telemetric, Biomedical
Hakeim Talleb 1 ; Salim Faci 2 ; David Lautru 1 ; Victor Fouad Hanna 1 ; Joe Wiart 3

1 UPMC Univ. Paris 06, UR2, L2E, F-75005, Paris, France
2 ESYCOM Labs., CNAM, 292, rue Saint-Martin, 75141 Paris cedex 03, France
3 Orange Labs., France Télécom Division R&D, RESA/WASA, 38–40, rue du Général-Leclerc, 92794 Issy-les-Moulineaux, France
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Hakeim Talleb; Salim Faci; David Lautru; Victor Fouad Hanna; Joe Wiart. Investigation on an RFID planar coil for a wireless communicative aortic stent. Comptes Rendus. Physique, Volume 14 (2013) no. 5, pp. 438-446. doi : 10.1016/j.crhy.2013.02.006. https://comptes-rendus.academie-sciences.fr/physique/articles/10.1016/j.crhy.2013.02.006/

[1] J.T. Farrar; V.K. Zworykin; J. Baum Pressure-sensitive telemetering capsule for study of gastrointestinal motility, Science, Volume 126 ( Nov. 1957 ), pp. 975-976

[2] C. Browning; R. Valori; D.L. Wingate; D. MacLachlan A new pressure-sensitive ingestible radio-telemetric capsule, Lancet, Volume 318 ( Sep. 1981 ), pp. 504-505

[3] M. Soma; C.D. Galbraith; R. White Radio-frequency coils in implantable devices: misalignment analysis and design procedure, IEEE Trans. Biomed. Eng., Volume 34 ( Apr. 1987 ) no. 4, pp. 276-282

[4] W.J. Heetderks RF powering of millimeter and submillimeter sized neural prosthetic implants, IEEE Trans. Biomed. Eng., Volume 35 ( May 1988 ) no. 5, pp. 323-327

[5] W. Liu; K. Vichienchom; M. Clements; S.C. DeMarco; C. Hughes; E. McGucken; M.S. Humayun; E. De Juan; J.D. Weiland; R. Greenberg A neuro-stimulus chip with telemetry unit for retinal prosthetic device, IEEE J. Solid-State Circuits, Volume 35 ( Oct. 2000 ) no. 10, pp. 1487-1497

[6] L. Ho, M. Melody, Z. Walker, T. Hamada, C.-F. Su, A prototype on RFID and sensor networks for elder healthcare: progress report, in: Proceedings of the 2005 ACM SIGCOMM Workshop on Experimental Approaches to Wireless Network Design and Analysis, Series E-WIND ʼ05, Philadelphia, PA, USA, 2005, pp. 70–75.

[7] S. Wi Wanga, W.H. Chenb, C.S. Onga, L. Liuc, Y.W. Chuangb, RFID applications in hospitals: a case study on a demonstration RFID project in a Taiwan hospital, in: Proc. of the 39th Hawaii International Conference on System Sciences, Hawai, 2006.

[8] A. Lahtela; M. Hassinen Requirements for radio frequency identification in healthcare, Medical Informatics in a United and Healthy Europe, IOS Press, 2009, pp. 720-724

[9] M.A. Fonseca, M.G. Allen, J. Kroh, J. White, Flexible wireless passive pressure sensors for biomedical applications, in: Solid-State Sensors, Actuators, and Microsystems Workshop, Hilton Head Island, SC, June 2006.

[10] U. Schnakenberga; P. Walterb; G. Vom Bogelc; C. Krugera; H.C. Ludtke-Handjeryd; H.A. Richterd; W. Spechta; P. Ruokonenb; W. Mokwaa Initial investigations on systems for measuring intraocular pressure, Sens. Actuators A Phys., Volume 85 ( Aug. 2000 ) no. 1, pp. 287-291

[11] W. Mokwa Medical implants based on microsystems, Meas. Sci. Technol., Volume 18 (2007) no. 5, p. R47-R57

[12] K. FinKengeller RFID Handbook Fundamentals and Applications in Contactless Smart Cards and Identification, John Wiley and Sons, Inc., 2003

[13] LIP6, L2E, IJLRA, INRA, INRIA, IRPHE, UTC, APHP, Orange Labs ENDOCOM: implantable wireless pressure sensor for the follow-up of abdominal aortic aneurysm stented, J. IRBM (Ingénierie et Recherche Biomédicale/BioMedical Engeneering and Research), Volume 32 ( June 2011 ) no. 3, pp. 163-168

[14] E.Y. Chow; A.L. Chlebowski; S. Chakraborty; W.J. Chappell; P.P. Irazoqui Fully wireless implantable cardiovascular pressure monitor integrated ow, with a medical stent, IEEE Trans. Biomed. Eng., Volume 57 ( June 2010 ) no. 6, pp. 1487-1496

[15] C.C. Colin Miniature passive pressure transensor for implanting in the eye, IEEE Trans. Biomed. Eng., Volume BME-14 ( April 1967 ) no. 2, pp. 74-83

[16] A. Ginggen; Y. Tardy; R. Crivelli; T. Bork; P. Renaud A telemetric pressure sensor system for biomedical applications, IEEE Trans. Biomed. Eng., Volume 55 ( June 2008 ) no. 4, pp. 1374-1381

[17] V.G. Welsby The Theory and Design of Inductance Coils, John Wiley and Sons, Inc., 1960

[18] D. Paret RFID at Ultra and Super High Frequencies, John Wiley and Sons, Inc., 2009

[19] S.K. Kuo; S.L. Chen; C.T. Lin An accurate method for impedance measurement of RFID tag antenna, Prog. Electromagn. Res., Volume 83 (2008), pp. 93-106

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