Risks posed by obesity to body-surface narrowband wireless communication
Little work has been done on the effect of being overweight on the wireless narrowband radio propagation of wearable medical instruments. In this paper, by applying a finite-difference time-domain technique and a statistical learning method, the authors find that being overweight might be an obstacl...
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Published in | Chinese science bulletin Vol. 59; no. 29-30; pp. 3949 - 3954 |
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Main Authors | , , , , , , |
Format | Journal Article |
Language | English |
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Heidelberg
Springer-Verlag
01.10.2014
Science China Press |
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Online Access | Get full text |
ISSN | 1001-6538 1861-9541 |
DOI | 10.1007/s11434-014-0514-0 |
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Abstract | Little work has been done on the effect of being overweight on the wireless narrowband radio propagation of wearable medical instruments. In this paper, by applying a finite-difference time-domain technique and a statistical learning method, the authors find that being overweight might be an obstacle to body-surface wireless communication. The findings have certain instructive meanings for those engineers who are designing on-body medical instruments for patients, especially those patients who are overweight. |
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AbstractList | Little work has been done on the effect of being overweight on the wireless narrowband radio propagation of wearable medical instruments. In this paper, by applying a finite-difference time-domain technique and a statistical learning method, the authors find that being overweight might be an obstacle to body-surface wireless communication. The findings have certain instructive meanings for those engineers who are designing on-body medical instruments for patients, especially those patients who are overweight. |
Author | Xiaodong Yang Qing Zhang Shuyuan Yang Aifeng Ren Zhiya Zhang Karen M. von Deneen Yang Hao |
AuthorAffiliation | School of Electronic Engineering, Xidian University, Xi'an 710071, China Shaanxi Maternal and Child Care Service Centre, Xi'an 710003,China School of Life Science and Technology, Xidian University,Xi'an 710071, China School of Electronic Engineering and Computer Science, Queen Mary, University of London, London E1 4NS, UK |
Author_xml | – sequence: 1 fullname: Yang, Xiaodong – sequence: 2 fullname: Zhang, Qing – sequence: 3 fullname: Yang, Shuyuan – sequence: 4 fullname: Ren, Aifeng – sequence: 5 fullname: Zhang, Zhiya – sequence: 6 fullname: von Deneen, Karen M – sequence: 7 fullname: Hao, Yang |
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Cites_doi | 10.1007/s11434-012-5102-6 10.1002/mop.26075 10.1007/978-1-4757-3264-1 10.2337/diacare.17.9.961 10.1214/aos/1176325631 10.1046/j.1467-789X.2003.00120.x 10.1155/2013/827904 10.1056/NEJM199910073411501 10.1109/LAWP.2011.2163378 10.1016/S0925-2312(01)00644-0 10.7326/0003-4819-122-7-199504010-00001 10.1049/iet-map:20060215 10.1023/A:1018628609742 10.1016/0021-9681(72)90027-6 10.1007/s11434-012-5074-6 10.1038/oby.2009.191 |
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Notes | Little work has been done on the effect of being overweight on the wireless narrowband radio propagation of wearable medical instruments. In this paper, by applying a finite-difference time-domain technique and a statistical learning method, the authors find that being overweight might be an obstacle to body-surface wireless communication. The findings have certain instructive meanings for those engineers who are designing on-body medical instruments for patients, especially those patients who are overweight. 11-1785/N Radio propagation ; Finite-difference time-domain ; Statistical learning method ; Particle swan; optimization http://dx.doi.org/10.1007/s11434-014-0514-0 ObjectType-Article-1 SourceType-Scholarly Journals-1 ObjectType-Feature-2 content type line 23 |
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References | Murray C, Lopez A (2002) The world health report 2002: reducing risks, promoting healthy life. Technical report. World Health Organization FortADessetCWambacqPIndoor body-area channel model for narrowband communicationsIET Microw Anten Propag200711197120310.1049/iet-map:20060215 Yang X, Zhang Z, Yang S, et al (2013) Improving the body area line-of-sight density model: a theoretical study. Int J Antenn Propag ID 827904:1–4 WuQHDingGRWangJLConsensus-based decentralized clustering for cooperative spectrum sensing in cognitive radio networksChin Sci Bull2012573677368310.1007/s11434-012-5074-6 YangXRahmanAAbbasiQElectrically coupled tapered slot ultra wideband antenna with tunable notchMicro Opt Technol Lett2011531558156110.1002/mop.26075 SuykensJBrabanterJLukasLWeighted least squares support vector machines: robustness and sparse approximationNeurocomputing2002488510510.1016/S0925-2312(01)00644-0 SuykensJVandewalleJLeast squares support vector machine classifiersNeural Process Lett1999929330010.1023/A:1018628609742 OrpanaHBerthelotJKaplanMBMI and mortality: results from a national longitudinal study of Canadian adultsObesity20101821421810.1038/oby.2009.191 HallPHaoYAntennas and propagation for body-centric wireless networks2006LondonArtech House DongXLiYWeiSQDesign and implementation of a cognitive engine functional architectureChin Sci Bull2012573698370410.1007/s11434-012-5102-6 CalleEThunMPetrelliJBody-mass index and mortality in a prospective cohort of U.S. adultsN Engl J Med19993411097110510.1056/NEJM199910073411501 SunJLoaderCSimultaneous confidence bands for linear regression and smoothingAnn Stat1994221328134510.1214/aos/1176325631 KatzmarzykPJanssenIArdernCPhysical inactivity, excess adiposity and premature mortalityObes Rev2003425729010.1046/j.1467-789X.2003.00120.x VapnikVThe nature of statistical learning theory20002New YorkSpringer-Verlag New York Inc10.1007/978-1-4757-3264-1 FlorenceJYeagerBTreatment of type 2 diabetes mellitusAm Fam Physician19995928492850 ColditzGWillettWRotnitzkyAWeight gain as a risk factor for clinical diabetes mellitus in womenAnn Intern Med199512248148610.7326/0003-4819-122-7-199504010-00001 YangXAbbasiQAlomainyASpatial correlation analysis of on-body radio channels considering statistical significanceIEEE Antenn Wirel Propag20111078078310.1109/LAWP.2011.2163378 RappaportTWireless communications: principles and practices20022New JerseyPrentice Hall KeysAFidanzaFKarvonenMIndices of relative weight and obesityJ Chron Dis19722532934310.1016/0021-9681(72)90027-6 ChanJMRimmEBColditzGAObesity, fat distribution, and weight gain as risk factors for clinical diabetes in menDiabetes Care19941796196910.2337/diacare.17.9.961 X Yang (514_CR11) 2011; 10 J Suykens (514_CR13) 1999; 9 J Suykens (514_CR14) 2002; 48 G Colditz (514_CR7) 1995; 122 X Dong (514_CR19) 2012; 57 P Hall (514_CR15) 2006 J Sun (514_CR16) 1994; 22 P Katzmarzyk (514_CR5) 2003; 4 514_CR1 H Orpana (514_CR3) 2010; 18 QH Wu (514_CR20) 2012; 57 A Keys (514_CR2) 1972; 25 E Calle (514_CR8) 1999; 341 A Fort (514_CR10) 2007; 1 V Vapnik (514_CR12) 2000 X Yang (514_CR17) 2011; 53 JM Chan (514_CR4) 1994; 17 514_CR18 J Florence (514_CR6) 1999; 59 T Rappaport (514_CR9) 2002 |
References_xml | – reference: SunJLoaderCSimultaneous confidence bands for linear regression and smoothingAnn Stat1994221328134510.1214/aos/1176325631 – reference: YangXAbbasiQAlomainyASpatial correlation analysis of on-body radio channels considering statistical significanceIEEE Antenn Wirel Propag20111078078310.1109/LAWP.2011.2163378 – reference: Yang X, Zhang Z, Yang S, et al (2013) Improving the body area line-of-sight density model: a theoretical study. Int J Antenn Propag ID 827904:1–4 – reference: WuQHDingGRWangJLConsensus-based decentralized clustering for cooperative spectrum sensing in cognitive radio networksChin Sci Bull2012573677368310.1007/s11434-012-5074-6 – reference: FortADessetCWambacqPIndoor body-area channel model for narrowband communicationsIET Microw Anten Propag200711197120310.1049/iet-map:20060215 – reference: CalleEThunMPetrelliJBody-mass index and mortality in a prospective cohort of U.S. adultsN Engl J Med19993411097110510.1056/NEJM199910073411501 – reference: YangXRahmanAAbbasiQElectrically coupled tapered slot ultra wideband antenna with tunable notchMicro Opt Technol Lett2011531558156110.1002/mop.26075 – reference: FlorenceJYeagerBTreatment of type 2 diabetes mellitusAm Fam Physician19995928492850 – reference: KeysAFidanzaFKarvonenMIndices of relative weight and obesityJ Chron Dis19722532934310.1016/0021-9681(72)90027-6 – reference: DongXLiYWeiSQDesign and implementation of a cognitive engine functional architectureChin Sci Bull2012573698370410.1007/s11434-012-5102-6 – reference: HallPHaoYAntennas and propagation for body-centric wireless networks2006LondonArtech House – reference: ColditzGWillettWRotnitzkyAWeight gain as a risk factor for clinical diabetes mellitus in womenAnn Intern Med199512248148610.7326/0003-4819-122-7-199504010-00001 – reference: Murray C, Lopez A (2002) The world health report 2002: reducing risks, promoting healthy life. Technical report. 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SubjectTerms | Chemistry/Food Science Earth Sciences Engineering engineers Humanities and Social Sciences Life Sciences medical equipment multidisciplinary obesity patients Physics radio risk Science Science (multidisciplinary) wireless technology 体表面 医疗器械 无线电传播 无线通信 窄带 统计学习方法 肥胖 风险 |
Title | Risks posed by obesity to body-surface narrowband wireless communication |
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