VLSI implementation of low‐power cost‐efficient lossless ECG encoder design for wireless healthcare monitoring application

An efficient VLSI architecture of a lossless ECG encoding circuit is proposed for wireless healthcare monitoring applications. To reduce the transmission and storage data, a novel lossless compression algorithm is proposed for ECG signal compression. It consists of a novel adaptive rending predictor...

Full description

Saved in:
Bibliographic Details
Published inElectronics letters Vol. 49; no. 2; pp. 91 - 93
Main Authors Chen, S.‐L., Wang, J.‐G
Format Journal Article
LanguageEnglish
Published Stevenage The Institution of Engineering and Technology 01.01.2013
Institution of Engineering and Technology
Subjects
Online AccessGet full text
ISSN1350-911X
0013-5194
1350-911X
DOI10.1049/el.2012.3505

Cover

Abstract An efficient VLSI architecture of a lossless ECG encoding circuit is proposed for wireless healthcare monitoring applications. To reduce the transmission and storage data, a novel lossless compression algorithm is proposed for ECG signal compression. It consists of a novel adaptive rending predictor and a novel two‐stage entropy encoder based on two Huffman coding tables. The proposed lossless ECG encoder design was implemented using only simple arithmetic units. To improve the performance, the proposed ECG encoder was designed by pipeline technology and implemented the two‐stage entropy encoder by the architecture of a look‐up table. The VLSI architecture of this work contains 3.55 K gate counts and its core area is 45987 µm2 synthesised by a 0.18 µm CMOS process. It can operate at 100 MHz processing rate with only 36.4 µW. The data compression rate reaches an average value 2.43 for the MIT‐BIH Arrhythmia Database. Compared with the previous low‐complexity and high performance techniques, this work achieves lower hardware cost, lower power consumption, and a better compression rate than other lossless ECG encoder designs.
AbstractList An efficient VLSI architecture of a lossless ECG encoding circuit is proposed for wireless healthcare monitoring applications. To reduce the transmission and storage data, a novel lossless compression algorithm is proposed for ECG signal compression. It consists of a novel adaptive rending predictor and a novel two‐stage entropy encoder based on two Huffman coding tables. The proposed lossless ECG encoder design was implemented using only simple arithmetic units. To improve the performance, the proposed ECG encoder was designed by pipeline technology and implemented the two‐stage entropy encoder by the architecture of a look‐up table. The VLSI architecture of this work contains 3.55 K gate counts and its core area is 45987 µm 2 synthesised by a 0.18 µm CMOS process. It can operate at 100 MHz processing rate with only 36.4 µW. The data compression rate reaches an average value 2.43 for the MIT‐BIH Arrhythmia Database. Compared with the previous low‐complexity and high performance techniques, this work achieves lower hardware cost, lower power consumption, and a better compression rate than other lossless ECG encoder designs.
An efficient VLSI architecture of a lossless ECG encoding circuit is proposed for wireless healthcare monitoring applications. To reduce the transmission and storage data, a novel lossless compression algorithm is proposed for ECG signal compression. It consists of a novel adaptive rending predictor and a novel two‐stage entropy encoder based on two Huffman coding tables. The proposed lossless ECG encoder design was implemented using only simple arithmetic units. To improve the performance, the proposed ECG encoder was designed by pipeline technology and implemented the two‐stage entropy encoder by the architecture of a look‐up table. The VLSI architecture of this work contains 3.55 K gate counts and its core area is 45987 µm2 synthesised by a 0.18 µm CMOS process. It can operate at 100 MHz processing rate with only 36.4 µW. The data compression rate reaches an average value 2.43 for the MIT‐BIH Arrhythmia Database. Compared with the previous low‐complexity and high performance techniques, this work achieves lower hardware cost, lower power consumption, and a better compression rate than other lossless ECG encoder designs.
Author Wang, J.‐G
Chen, S.‐L.
Author_xml – sequence: 1
  givenname: S.‐L.
  surname: Chen
  fullname: Chen, S.‐L.
  email: chrischen@cycu.edu.tw
  organization: Chung Yuan Christian University
– sequence: 2
  givenname: J.‐G
  surname: Wang
  fullname: Wang, J.‐G
  organization: Beijing Institute of Technology
BackLink http://pascal-francis.inist.fr/vibad/index.php?action=getRecordDetail&idt=26853804$$DView record in Pascal Francis
BookMark eNqFkM1q3DAQx0VIIR_tLQ-gS2_1VrItfxzTZZMGDD00Cb2ZsTzaKGglIzmYvZQ-Qp4xT1LtOpRQSHKaGf6_GYnfCTm0ziIhZ5wtOMvrr2gWKePpIhNMHJBjHmtSc_7r8EV_RE5CuGcRq-vymPy-bX5eUb0ZDG7QjjBqZ6lT1Ljp6c_j4Cb0VLowxgGV0lJHKIYhGAyBrpaXFK10faR6DHptqXKeTtrjPr9DMOOdBI9046wendd2TWEYjJb7pz6SDwpMwE_P9ZTcXKyul9-T5sfl1fK8SWSWizLhKLI8FxWvBIOuq0CJvC-l6LHgPUYGirKTaVdXRcdTVJAVjAErY4alTDE7Jcl898EOsJ3AmHbwegN-23LW7uS1aNqdvHYnL_KfZ36AIMEoD1bq8G8nLSqRVSyPXDpz0kcnHlUr9Sxx9KDNa8e__Lf0zl_EjE_a4PZNtl01TfrtgjEmyuwvJJmlbA
CODEN ELLEAK
CitedBy_id crossref_primary_10_1049_el_2014_3058
crossref_primary_10_1109_JSEN_2022_3195501
crossref_primary_10_1109_TBCAS_2019_2938672
crossref_primary_10_1109_ACCESS_2020_2998608
crossref_primary_10_1007_s13369_020_04483_w
crossref_primary_10_1109_JSSC_2014_2349994
crossref_primary_10_1038_s41598_017_00540_x
crossref_primary_10_1587_transinf_2017EDL8206
crossref_primary_10_1016_j_isatra_2018_08_003
crossref_primary_10_1109_MMUL_2020_2983690
crossref_primary_10_2174_1574362413666180622105447
crossref_primary_10_3390_app8122379
crossref_primary_10_1016_j_bspc_2019_03_004
crossref_primary_10_1109_TBME_2014_2342879
crossref_primary_10_1587_elex_14_20170524
crossref_primary_10_1007_s11277_021_08908_z
crossref_primary_10_1049_el_2015_2202
crossref_primary_10_1109_JSEN_2018_2877430
crossref_primary_10_1109_TVLSI_2023_3314611
crossref_primary_10_3390_bioengineering10040406
crossref_primary_10_1007_s00034_019_01198_8
crossref_primary_10_1051_e3sconf_202132901067
crossref_primary_10_1016_j_dsp_2017_06_028
crossref_primary_10_1007_s10916_018_0953_2
crossref_primary_10_3390_diagnostics8010010
crossref_primary_10_1109_ACCESS_2017_2679123
crossref_primary_10_1109_LSENS_2022_3157030
crossref_primary_10_1109_JSEN_2017_2680472
crossref_primary_10_3390_app8091474
crossref_primary_10_1109_TCSII_2021_3071757
crossref_primary_10_1016_j_procs_2016_05_201
crossref_primary_10_1155_2021_1552641
crossref_primary_10_1109_TBCAS_2016_2591923
crossref_primary_10_1109_TVLSI_2016_2638826
crossref_primary_10_1109_TVLSI_2024_3396774
crossref_primary_10_1109_ACCESS_2018_2879412
crossref_primary_10_1007_s13534_018_0087_y
crossref_primary_10_1007_s10916_017_0886_1
crossref_primary_10_1007_s11042_023_16631_z
crossref_primary_10_1016_j_bspc_2019_101705
crossref_primary_10_1109_ACCESS_2021_3105600
crossref_primary_10_1109_ACCESS_2018_2858857
crossref_primary_10_1109_TCSII_2020_2978554
crossref_primary_10_3390_s17102288
crossref_primary_10_1049_el_2013_1692
crossref_primary_10_1016_j_isatra_2018_05_003
crossref_primary_10_1109_TVLSI_2018_2852751
crossref_primary_10_1109_TCSI_2018_2867746
Cites_doi 10.1109/JSYST.2009.2032440
10.1049/el:20081319
10.1049/el.2010.3191
10.1109/TCE.2011.5735512
10.1109/TBME.2006.888820
ContentType Journal Article
Copyright 2020 The Institution of Engineering and Technology
2014 INIST-CNRS
Copyright_xml – notice: 2020 The Institution of Engineering and Technology
– notice: 2014 INIST-CNRS
DBID AAYXX
CITATION
IQODW
ADTOC
UNPAY
DOI 10.1049/el.2012.3505
DatabaseName CrossRef
Pascal-Francis
Unpaywall for CDI: Periodical Content
Unpaywall
DatabaseTitle CrossRef
DatabaseTitleList CrossRef

Database_xml – sequence: 1
  dbid: UNPAY
  name: Unpaywall
  url: https://proxy.k.utb.cz/login?url=https://unpaywall.org/
  sourceTypes: Open Access Repository
DeliveryMethod fulltext_linktorsrc
Discipline Engineering
Applied Sciences
EISSN 1350-911X
EndPage 93
ExternalDocumentID 10.1049/el.2012.3505
26853804
10_1049_el_2012_3505
ELL2BF00057
Genre rapidPublication
GroupedDBID -4A
-~X
.DC
0R~
0ZK
1OC
24P
29G
2QL
3EH
4.4
4IJ
5GY
6IK
8FE
8FG
8VB
96U
AAHHS
AAHJG
AAJGR
ABJCF
ABQXS
ACCFJ
ACCMX
ACESK
ACGFO
ACGFS
ACIWK
ACXQS
ADEYR
ADIYS
ADZOD
AEEZP
AEGXH
AENEX
AEQDE
AFAZI
AFKRA
AI.
AIAGR
AIWBW
AJBDE
ALMA_UNASSIGNED_HOLDINGS
ALUQN
ARAPS
AVUZU
BBWZM
BENPR
BGLVJ
CCPQU
CS3
DU5
EBS
EJD
ELQJU
ESX
F5P
F8P
GOZPB
GROUPED_DOAJ
GRPMH
HCIFZ
HZ~
IAO
IFBGX
IFIPE
IPLJI
ITC
JAVBF
K1G
K7-
L6V
LAI
LXO
LXU
M43
M7S
MCNEO
MS~
NADUK
NXXTH
O9-
OCL
OK1
P0-
P2P
P62
PTHSS
QWB
R4Z
RIE
RIG
RNS
RUI
TN5
U5U
UNMZH
VH1
WH7
ZL0
~ZZ
AAMMB
AAYXX
AEFGJ
AFFHD
AGXDD
AIDQK
AIDYY
CITATION
IDLOA
PHGZM
PHGZT
PQGLB
WIN
IQODW
ADTOC
UNPAY
ID FETCH-LOGICAL-c3457-1e5344581850abb8af54d7c5de61dec34a67bc2b986b12efa3600a07dece7c2e3
IEDL.DBID 24P
ISSN 1350-911X
0013-5194
IngestDate Tue Aug 19 19:08:04 EDT 2025
Mon Jul 21 09:12:07 EDT 2025
Thu Apr 24 22:51:43 EDT 2025
Wed Oct 29 21:26:15 EDT 2025
Wed Jan 22 16:59:10 EST 2025
IsDoiOpenAccess true
IsOpenAccess true
IsPeerReviewed true
IsScholarly true
Issue 2
Keywords Signal compression
High performance
Lossless circuit
VLSI circuit
Circuit design
Pipeline processor
Huffman code
Data compression
Lossless compression
Information rate
Low power
Adaptive method
Energy savings
Pipeline
Storage
Electrocardiography
Wireless network
Arrhythmia (physiology)
Monitoring
Language English
License http://onlinelibrary.wiley.com/termsAndConditions#vor
CC BY 4.0
LinkModel DirectLink
MergedId FETCHMERGED-LOGICAL-c3457-1e5344581850abb8af54d7c5de61dec34a67bc2b986b12efa3600a07dece7c2e3
OpenAccessLink https://proxy.k.utb.cz/login?url=https://onlinelibrary.wiley.com/doi/pdfdirect/10.1049/el.2012.3505
PageCount 2
ParticipantIDs unpaywall_primary_10_1049_el_2012_3505
pascalfrancis_primary_26853804
crossref_citationtrail_10_1049_el_2012_3505
crossref_primary_10_1049_el_2012_3505
wiley_primary_10_1049_el_2012_3505_ELL2BF00057
PublicationCentury 2000
PublicationDate January 2013
PublicationDateYYYYMMDD 2013-01-01
PublicationDate_xml – month: 01
  year: 2013
  text: January 2013
PublicationDecade 2010
PublicationPlace Stevenage
PublicationPlace_xml – name: Stevenage
PublicationTitle Electronics letters
PublicationYear 2013
Publisher The Institution of Engineering and Technology
Institution of Engineering and Technology
Publisher_xml – name: The Institution of Engineering and Technology
– name: Institution of Engineering and Technology
References 2009; 3
2007; 54
2011; 57
2008; 44
2011; 47
e_1_2_7_6_1
e_1_2_7_5_1
e_1_2_7_4_1
e_1_2_7_3_1
e_1_2_7_2_1
References_xml – volume: 44
  start-page: 1182
  issue: 20
  year: 2008
  end-page: 1183
  article-title: Effective quality‐controlled SPIHT‐based ECG coding strategy under noise environments
  publication-title: Electron. Lett.
– volume: 54
  start-page: 410
  issue: 3
  year: 2007
  end-page: 418
  article-title: ECG signal compression based on Burrows‐Wheeler transformation and inversion ranks of linear prediction
  publication-title: IEEE Trans. Biomed. Eng.
– volume: 57
  start-page: 267
  issue: 1
  year: 2011
  end-page: 273
  article-title: Mixed bio‐signal lossless data compressor for portable brain‐heart monitoring systems
  publication-title: IEEE Trans. Consum. Electron.
– volume: 3
  start-page: 398
  issue: 4
  year: 2009
  end-page: 409
  article-title: Wireless body sensor network with adaptive low power design for biometrics and healthcare applications
  publication-title: IEEE Syst. J.
– volume: 47
  start-page: 87
  issue: 2
  year: 2011
  end-page: 89
  article-title: Improved ECG compression method using discrete consine transform
  publication-title: Electron. Lett.
– ident: e_1_2_7_2_1
  doi: 10.1109/JSYST.2009.2032440
– ident: e_1_2_7_3_1
  doi: 10.1049/el:20081319
– ident: e_1_2_7_4_1
  doi: 10.1049/el.2010.3191
– ident: e_1_2_7_6_1
  doi: 10.1109/TCE.2011.5735512
– ident: e_1_2_7_5_1
  doi: 10.1109/TBME.2006.888820
SSID ssj0012997
Score 2.3121798
Snippet An efficient VLSI architecture of a lossless ECG encoding circuit is proposed for wireless healthcare monitoring applications. To reduce the transmission and...
SourceID unpaywall
pascalfrancis
crossref
wiley
SourceType Open Access Repository
Index Database
Enrichment Source
Publisher
StartPage 91
SubjectTerms adaptive rending predictor
Applied sciences
arithmetic unit
Biological and medical sciences
CMOS integrated circuits
CMOS process
Coding, codes
computerised monitoring
data compression
ECG signal compression
electrocardiography
Electrocardiography. Vectocardiography
Electrodiagnosis. Electric activity recording
Electronics
entropy codes
entropy encoder
Exact sciences and technology
frequency
frequency 100 MHz
gate counts
health care
Huffman codes
Huffman coding table
Information, signal and communications theory
Integrated circuits
Integrated circuits by function (including memories and processors)
Investigative techniques, diagnostic techniques (general aspects)
lookup table
lossless compression algorithm
lossless ECG encoder design
Medical sciences
medical signal processing
MIT‐BIH Arrhythmia database
Pathology. Cytology. Biochemistry. Spectrometry. Miscellaneous investigative techniques
patient monitoring
pipeline arithmetic
pipeline technology
power
power 36.4 muW
Semiconductor electronics. Microelectronics. Optoelectronics. Solid state devices
Signal and communications theory
size
size 0.18 mum
table lookup
Telecommunications and information theory
VLSI
VLSI architecture
wireless healthcare monitoring application
SummonAdditionalLinks – databaseName: Unpaywall
  dbid: UNPAY
  link: http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwpV1bT9swFD6a2ocNTbsBWndBfth4mVIax87lkaEyQB2axDqVp8h2HIEIbTRaVeMB7SfsN-6X7Jw4jVqkDaQ9Rv6ci-1z_Nk--Q7AuyjQfu5r6-Fcaz0SwPJiG2pPKy65RK8cKdoa-HwcHgzF0UiOlv6FcfoQzYYbWUblr8nAyyx3ft6tOkWyY-nwwOfdQJKMaTuUyMdb0B4ef9k9XaQuQIriMtvKHln2qI5-v119ZV56XKorbKLc5bZYg4ezcal-zFVRrHLYahLafwpm8fou9uSiO5vqrrm-pez4f9_3DJ7UHJXtukH1HB7Y8QtYW1IuXIebb4OTQ3Z-uYg-p-5lk5wVk_nvn79KSr3GzORqihe2EqlAEBYiq0XPyvp7nxgJaGaIyqoQEobcmZFsclV-1gSlscvK59BD2dJZ-wYM9_tf9w68OpWDZwIhI8-3MhBCEjvoKa1jlUuRRUZmNvQzixgVRtpwncSh9rnNVYBETPUiLLOR4TbYhNZ4MrYvgeVJrDQuq60McxEY4rdBhjVUnGgjMtOBD4uOTE2tc07pNoq0Om8XSWqLlFo1pVbtwPsGXTp9j7_gtlbGRAPmIRKeuCc6sN0Mkjvu5Lr9n6C0PxjwjxT5KaNX973za3jEq2QdtEH0BlrT7zP7FinTVG_VNvEHeRkWWg
  priority: 102
  providerName: Unpaywall
Title VLSI implementation of low‐power cost‐efficient lossless ECG encoder design for wireless healthcare monitoring application
URI https://onlinelibrary.wiley.com/doi/abs/10.1049%2Fel.2012.3505
https://onlinelibrary.wiley.com/doi/pdfdirect/10.1049/el.2012.3505
UnpaywallVersion publishedVersion
Volume 49
hasFullText 1
inHoldings 1
isFullTextHit
isPrint
journalDatabaseRights – providerCode: PRVPQU
  databaseName: ProQuest Central
  customDbUrl: http://www.proquest.com/pqcentral?accountid=15518
  eissn: 1350-911X
  dateEnd: 20141231
  omitProxy: true
  ssIdentifier: ssj0012997
  issn: 1350-911X
  databaseCode: BENPR
  dateStart: 20000106
  isFulltext: true
  titleUrlDefault: https://www.proquest.com/central
  providerName: ProQuest
– providerCode: PRVPQU
  databaseName: ProQuest Technology Collection
  customDbUrl:
  eissn: 1350-911X
  dateEnd: 20140925
  omitProxy: true
  ssIdentifier: ssj0012997
  issn: 1350-911X
  databaseCode: 8FG
  dateStart: 20000106
  isFulltext: true
  titleUrlDefault: https://search.proquest.com/technologycollection1
  providerName: ProQuest
– providerCode: PRVWIB
  databaseName: Wiley Online Library Open Access
  customDbUrl:
  eissn: 1350-911X
  dateEnd: 99991231
  omitProxy: true
  ssIdentifier: ssj0012997
  issn: 1350-911X
  databaseCode: 24P
  dateStart: 20130101
  isFulltext: true
  titleUrlDefault: https://authorservices.wiley.com/open-science/open-access/browse-journals.html
  providerName: Wiley-Blackwell
link http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwlV1LS8NAEF7EHlREfGJ9lD2oF4k2m90kPdZSX1QRtFJPYXezQSG2RVuKF_En-Bv9Jc5s0tAeVDyWnUlgZ3fm68zkG0L2Ak-5iauMA7HWOEiA5YTGV46STDABXjmQmBq4uvbP2_yyIzp5wg2_hcn4IYqEG94M66_xgkuVTSEBUItGxMKBy448gRSmJRegDJ5wxm-KKgK4WjtcBUTwUnfyxnfQP57UngpJi335CruTZGMtFsjcsNuXbyOZptPw1caf02WylANHWs8svUJmTHeVLEzQCa6R9_vW7QV9eh63hOOe015C097o6-Ozj_PQqO69DuCHscwRIASLADXB3dFm44wiq2UMUrHt66AAaClyGdv1x6JTjD5bR4AvpRMF8HXSPm3eNc6dfL6Coz0uAsc1wuNcYMiuSqVCmQgeB1rExndjAzLSD5Rmqhb6ymUmkR6gI1kNYM0Emhlvg8x2e12zSWhSC6WC_7pG-An3NIJOLwYNGdaU5rEuk8PxFkc6Jx_HGRhpZIvgvBaZNEKDRGiQMtkvpPsZ6cYPcpUpaxXCzAcUElZ5mRwU5vvjSdlZ-1UoarZa7ATbMUWw9V-FbTLP7CQNzN7skNnBy9DsAp4ZqIo9tBVSal_f1B--AVR88-Y
linkProvider Wiley-Blackwell
linkToHtml http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwlV1LS8QwEA6iBxURn7g-c1AvUt2mSdo9qqyuWkXwwd5KkqYo1N1FV8SL-BP8jf4SZ9Jadg8qHktmWsgkM18y028I2QwD7We-th7EWushAZYXWak9rZhgArxyqPBq4PxCtm74aVu0yz6n-C9MwQ9RXbjhznD-Gjc4XkgXB06OJJkWMwc-2w0EcpiOcelLPH0xflmlEcDXuu4qIIK7ul1WvoP-3qD2UEya6qknmJ6s6GsxScafOz31-qLyfBi_ugB0NEOmS-RI9wtTz5IR25kjkwN8gvPk7Ta-OqH3D9814TjptJvRvPvy-f7Rw4Zo1HSf-vBgHXUECMEgYE3wd7R5eEyR1jIFqdQVdlBAtBTJjN34XVUqRh-cJ8CP0oEM-AK5OWpeH7a8ssGCZwIuQs-3IuBcYMyuK60jlQmehkakVvqpBRklQ22YbkRS-8xmKgB4pOohjNnQMBssktFOt2OXCM0akdJw2LVCZjwwiDqDFDRU1NCGp6ZGdr6nODEl-zg2wcgTlwXnjcTmCRokQYPUyFYl3StYN36QWx-yViXMJMCQqM5rZLsy3x9vKhbbr0JJM47ZAdZjinD5vwobZLx1fR4n8cnF2QqZYK6tBl7lrJLR_uOzXQNw09frbgF_Ac_R9aI
linkToPdf http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwlV3NTtwwELYqkAoIoZYfsZSCD8AFBTaOnWSP7bILtAtC4kd7i2xnolYKuxEsWnGpeASesU_CjBOi3UNBPUb-JpE89szYM_mGsZ0oMH7mG_DQ14JHBFheDKHxjBZKKLTKkaargbPz8ORa_uirftXnlP6FKfkh6gs32hnOXtMGhyLNygOnJJJMoMyBLw4CRRyms1KhMyRqZ3lRpxHQ1rruKgihXd2vKt9R_nBSesonLRb6HqcnK_taLLC5h0GhH8c6z6fjV-eAup_YUhU58m-lqj-zDzBYZgsTfIIr7M9N7_KU_759rQmnSefDjOfD8d-n54IaonE7vB_hAzjqCAThIMaaaO94p33MidYyRVTqCjs4RrScyIzd-K-6VIzfOktAH-UTGfBVdt3tXLVPvKrBgmcDnC7PBxVIqchnN7Uxsc6UTCOrUgj9FBCjw8hYYVpxaHwBmQ4wPNLNCMcgsgKCNTYzGA5gnfGsFWuDh11QYSYDS1FnkKKEjlvGytQ22P7rFCe2Yh-nJhh54rLgspVAnpBCElJIg-3W6KJk3fgHbmtKWzVYhBiGxE3ZYHu1-t55U7nY3gQlnV5PfKd6TBVt_K_ANvt4cdRNeqfnP7-weeG6atBNziabGd09wFeMbUZmy63fF5eq9TE
linkToUnpaywall http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwpV1bT9swFD6a2ocNTbsBWndBfth4mVIax87lkaEyQB2axDqVp8h2HIEIbTRaVeMB7SfsN-6X7Jw4jVqkDaQ9Rv6ci-1z_Nk--Q7AuyjQfu5r6-Fcaz0SwPJiG2pPKy65RK8cKdoa-HwcHgzF0UiOlv6FcfoQzYYbWUblr8nAyyx3ft6tOkWyY-nwwOfdQJKMaTuUyMdb0B4ef9k9XaQuQIriMtvKHln2qI5-v119ZV56XKorbKLc5bZYg4ezcal-zFVRrHLYahLafwpm8fou9uSiO5vqrrm-pez4f9_3DJ7UHJXtukH1HB7Y8QtYW1IuXIebb4OTQ3Z-uYg-p-5lk5wVk_nvn79KSr3GzORqihe2EqlAEBYiq0XPyvp7nxgJaGaIyqoQEobcmZFsclV-1gSlscvK59BD2dJZ-wYM9_tf9w68OpWDZwIhI8-3MhBCEjvoKa1jlUuRRUZmNvQzixgVRtpwncSh9rnNVYBETPUiLLOR4TbYhNZ4MrYvgeVJrDQuq60McxEY4rdBhjVUnGgjMtOBD4uOTE2tc07pNoq0Om8XSWqLlFo1pVbtwPsGXTp9j7_gtlbGRAPmIRKeuCc6sN0Mkjvu5Lr9n6C0PxjwjxT5KaNX973za3jEq2QdtEH0BlrT7zP7FinTVG_VNvEHeRkWWg
openUrl ctx_ver=Z39.88-2004&ctx_enc=info%3Aofi%2Fenc%3AUTF-8&rfr_id=info%3Asid%2Fsummon.serialssolutions.com&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Ajournal&rft.genre=article&rft.atitle=VLSI+implementation+of+low%E2%80%90power+cost%E2%80%90efficient+lossless+ECG+encoder+design+for+wireless+healthcare+monitoring+application&rft.jtitle=Electronics+letters&rft.au=Chen%2C+S.%E2%80%90L.&rft.au=Wang%2C+J.%E2%80%90G&rft.date=2013-01-01&rft.issn=0013-5194&rft.eissn=1350-911X&rft.volume=49&rft.issue=2&rft.spage=91&rft.epage=93&rft_id=info:doi/10.1049%2Fel.2012.3505&rft.externalDBID=n%2Fa&rft.externalDocID=10_1049_el_2012_3505
thumbnail_l http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/lc.gif&issn=1350-911X&client=summon
thumbnail_m http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/mc.gif&issn=1350-911X&client=summon
thumbnail_s http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/sc.gif&issn=1350-911X&client=summon