-
1
-
-
77950193145
-
A micro-power EEG acquisition SoC with integrated feature extraction processor for a chronic seizure detection system
-
N. Verma, A. Shoeb, J. Bohorquez, J. Dawson, J. Guttag, and A. P. Chandrakasan, "A micro-power EEG acquisition SoC with integrated feature extraction processor for a chronic seizure detection system," IEEE J. Solid-State Circuits, vol. 45, pp. 804-816, 2010.
-
(2010)
IEEE J. Solid-State Circuits
, vol.45
, pp. 804-816
-
-
Verma, N.1
Shoeb, A.2
Bohorquez, J.3
Dawson, J.4
Guttag, J.5
Chandrakasan, A.P.6
-
2
-
-
60149085744
-
A wireless capsule endoscope system with low-power controlling and processing ASIC
-
C. Xinkai, Z. Xiaoyu, Z. Linwei, L. Xiaowen, Q. Nan, J. Hanjun, and W. Zhihua, "A wireless capsule endoscope system with low-power controlling and processing ASIC," IEEE Trans. Biomed Circuits Syst., vol. 3, pp. 11-22, 2009.
-
(2009)
IEEE Trans. Biomed Circuits Syst.
, vol.3
, pp. 11-22
-
-
Xinkai, C.1
Xiaoyu, Z.2
Linwei, Z.3
Xiaowen, L.4
Nan, Q.5
Hanjun, J.6
Zhihua, W.7
-
3
-
-
0021892137
-
A real-time QRS detection algorithm
-
J. Pan and W. J. Tompkins, "A real-time QRS detection algorithm," IEEE Trans. Biomed. Eng., vol. BME-32, pp. 230-236, 1985. (Pubitemid 15148852)
-
(1985)
IEEE Transactions on Biomedical Engineering
, vol.32
, Issue.3
, pp. 230-236
-
-
Pan, J.1
Tompkins, W.J.2
-
4
-
-
16444377933
-
Heart rate variability: Measurement and clinical utility
-
DOI 10.1111/j.1542-474X.2005.10101.x
-
R. E. Kleiger, P. K. Stein, and J. T. Bigger, "Heart rate variability: Measurement and clinical utility," Ann. Noninv. Electrocardiol., vol. 10, pp. 88-101, 2005. (Pubitemid 40476672)
-
(2005)
Annals of Noninvasive Electrocardiology
, vol.10
, Issue.1
, pp. 88-101
-
-
Kleiger, R.E.1
Stein, P.K.2
Bigger Jr., J.T.3
-
5
-
-
68449087485
-
QRS detection based on multiscale mathematical morphology for wearable ECG devices in body area networks
-
Z. Fei and L. Yong, "QRS detection based on multiscale mathematical morphology for wearable ECG devices in body area networks," IEEE Trans. Biomed. Circuits Syst., vol. 3, pp. 220-228, 2009.
-
(2009)
IEEE Trans. Biomed. Circuits Syst.
, vol.3
, pp. 220-228
-
-
Fei, Z.1
Yong, L.2
-
6
-
-
79955725331
-
A voltage-scalable biomedical signal processor running ECG using 13 pJ/cycle at 1 MHz and 0.4 v
-
M. Ashouei, J. Hulzink, M. Konijnenburg, Z. Jun, F. Duarte, A. Breeschoten, J. Huisken, J. Stuyt, H. de Groot, F. Barat, J. David, and J. Van Ginderdeuren, "A voltage-scalable biomedical signal processor running ECG using 13 pJ/cycle at 1 MHz and 0.4 V," in Proc. IEEE Int. Solid-State Circuits Conf., Dig. Tech. Papers, 2011, pp. 332-334.
-
(2011)
Proc. IEEE Int. Solid-State Circuits Conf., Dig. Tech. Papers
, pp. 332-334
-
-
Ashouei, M.1
Hulzink, J.2
Konijnenburg, M.3
Jun, Z.4
Duarte, F.5
Breeschoten, A.6
Huisken, J.7
Stuyt, J.8
De Groot, H.9
Barat, F.10
David, J.11
Van Ginderdeuren, J.12
-
7
-
-
84872728079
-
-
[Online]
-
ARM Cortex-M0 Specifications, 2011 [Online]. Available: http://www.arm.com/products/processors/cortex-m/cortex-m0.php
-
(2011)
ARM Cortex-M0 Specifications
-
-
-
8
-
-
84872717956
-
-
Texas Instruments Inc. [Online]
-
MSP430™ -TheWorld's Lowest Power MCU, Texas Instruments Inc. [Online]. Available: http://focus.ti.com/mcu/docs/mcuorphan.tsp?contentId= 61835&DCMP=MSP430&HQS=Other+OT+ulp
-
MSP430™ -TheWorld's Lowest Power MCU
-
-
-
10
-
-
0036209724
-
The principles of software QRS detection
-
DOI 10.1109/51.993193
-
B. U. Kohler, C. Hennig, and R. Orglmeister, "The principles of software QRS detection," IEEE Eng. Med. Biol. Mag., vol. 21, pp. 42-57, 2002. (Pubitemid 34263918)
-
(2002)
IEEE Engineering in Medicine and Biology Magazine
, vol.21
, Issue.1
, pp. 42-57
-
-
Kohler, B.-U.1
Hennig, C.2
Orglmeister, R.3
-
11
-
-
63349096318
-
ECG statistics, noise, artifacts, and missing data
-
Norwood, MA: Artech House
-
F. A. Gari, D. Clifford, and P. E. McSharry, "ECG statistics, noise, artifacts, and missing data," in Advanced Methods and Tools for ECG Data Analysis. Norwood, MA: Artech House, 2006.
-
(2006)
Advanced Methods and Tools for ECG Data Analysis
-
-
Gari, F.A.1
Clifford, D.2
McSharry, P.E.3
-
12
-
-
0020642175
-
Optimal QRS detector
-
N. Thakor, J. Webster, and W. Tompkins, "Optimal QRS detector," Med. Biol. Eng. Comput., vol. 21, pp. 343-350, 1983.
-
(1983)
Med. Biol. Eng. Comput.
, vol.21
, pp. 343-350
-
-
Thakor, N.1
Webster, J.2
Tompkins, W.3
-
13
-
-
84872714104
-
Translation-invariant dyadic wavelet transform
-
New York: Academic
-
S. Mallat, "Translation-invariant dyadic wavelet transform," in A Wavelet Tour of Signal Processing. New York: Academic, 2009, pp. 170-178.
-
(2009)
A Wavelet Tour of Signal Processing
, pp. 170-178
-
-
Mallat, S.1
-
14
-
-
0037483002
-
Analog wavelet transform employing dynamic translinear circuits for cardiac signal characterization
-
S. A. P. Haddad, R. Houben, andW.A. Serdijn, "Analog wavelet transform employing dynamic translinear circuits for cardiac signal characterization," in Proc. Int. Symp. Circuits and Systems, 2003, vol. 1, pp. I-121-I-124.
-
(2003)
Proc. Int. Symp. Circuits and Systems
, vol.1
-
-
Haddad, S.A.P.1
Houben, R.2
Serdijn, W.A.3
-
15
-
-
84872737921
-
The optimum point for digitization in a mixed-signal system
-
Cambridge, U.K.: Cambridge Univ. Press
-
R. Sarpeshkar, "The optimum point for digitization in a mixed-signal system," in Ultra Low Power Bioelectronics. Cambridge, U.K.: Cambridge Univ. Press, 2010, pp. 10-14.
-
(2010)
Ultra Low Power Bioelectronics
, pp. 10-14
-
-
Sarpeshkar, R.1
-
16
-
-
84872693274
-
-
Ph.D. dissertation, Massachusetts Inst. Technol., Cambridge, MA
-
J. Y. S. Kwong, "Low-voltage embedded biomedical processor design," Ph.D. dissertation, Massachusetts Inst. Technol., Cambridge, MA, 2010.
-
(2010)
"low-voltage Embedded Biomedical Processor Design
-
-
Kwong, J.Y.S.1
-
17
-
-
0028960610
-
Detection of ECG characteristic points using wavelet transforms
-
L. Cuiwei, Z. Chongxun, and T. Changfeng, "Detection of ECG characteristic points using wavelet transforms," IEEE Trans. Biomed. Eng., vol. 42, pp. 21-28, 1995.
-
(1995)
IEEE Trans. Biomed. Eng.
, vol.42
, pp. 21-28
-
-
Cuiwei, L.1
Chongxun, Z.2
Changfeng, T.3
-
18
-
-
0022929617
-
Quantitative investigation of QRS detection rules using the MIT/BIH arrhythmia database
-
P. S. Hamilton andW. J. Tompkins, "Quantitative investigation of QRS detection rules using the MIT/BIH arrhythmia database," IEEE Trans. Biomed. Eng., vol. BME-33, pp. 1157-1165, 1986.
-
(1986)
IEEE Trans. Biomed. Eng.
, vol.BME-33
, pp. 1157-1165
-
-
Hamilton, P.S.1
Tompkins, W.J.2
-
19
-
-
4143054931
-
A robust open-source algorithm to detect onset and duration of QRS complexes
-
W. Zong, G. B.Moody, and D. Jiang, "A robust open-source algorithm to detect onset and duration of QRS complexes," Comput. Cardiol., pp. 737-740, 2003.
-
(2003)
Comput. Cardiol.
, pp. 737-740
-
-
Zong, W.1
Moody, G.B.2
Jiang, D.3
-
20
-
-
0032940127
-
ECG beat detection using filter banks
-
DOI 10.1109/10.740882
-
V. X. Afonso,W. J. Tompkins, T. Q. Nguyen, and L. Shen, "ECG beat detection using filter banks," IEEE Trans. Biomed. Eng., vol. 46, pp. 192-202, 1999. (Pubitemid 29058925)
-
(1999)
IEEE Transactions on Biomedical Engineering
, vol.46
, Issue.2
, pp. 192-202
-
-
Afonso, V.X.1
Tompkins, W.J.2
Nguyen, T.Q.3
Luo, S.4
-
21
-
-
0029394907
-
Genetic design of optimum linear and nonlinear QRS detectors
-
R. Poli, S. Cagnoni, and G. Valli, "Genetic design of optimum linear and nonlinear QRS detectors," IEEE Trans. Biomed. Eng., vol. 42, pp. 1137-1141, 1995.
-
(1995)
IEEE Trans. Biomed. Eng.
, vol.42
, pp. 1137-1141
-
-
Poli, R.1
Cagnoni, S.2
Valli, G.3
-
22
-
-
0027765654
-
An approach to QRS complex detection using mathematical morphology
-
DOI 10.1109/10.212060
-
P. E. Trahanias, "An approach to QRS complex detection using mathematical morphology," IEEE Trans. Biomed. Eng., vol. 40, pp. 201-205, 1993. (Pubitemid 24058650)
-
(1993)
IEEE Transactions on Biomedical Engineering
, vol.40
, Issue.2
, pp. 201-205
-
-
Trahanias, P.E.1
-
23
-
-
79551703905
-
Discrete wavelet transform-based time series analysis and mining
-
P. Chaovalit, A. Gangopadhyay, G. Karabatis, and Z. Chen, "Discrete wavelet transform-based time series analysis and mining," ACM Comput. Surv., vol. 43, pp. 1-37, 2011.
-
(2011)
ACM Comput. Surv.
, vol.43
, pp. 1-37
-
-
Chaovalit, P.1
Gangopadhyay, A.2
Karabatis, G.3
Chen, Z.4
-
24
-
-
84872736958
-
Wavelet transforms
-
New York: Academic
-
S. Mallat, "Wavelet transforms," in A Wavelet Tour of Signal Processing. New York: Academic, 2009, pp. 102-115.
-
(2009)
A Wavelet Tour of Signal Processing
, pp. 102-115
-
-
Mallat, S.1
-
25
-
-
84872741788
-
Algorithme à trous
-
New York: Academic
-
S. Mallat, "Algorithme à trous," in A Wavelet Tour of Signal Processing. New York: Academic, 2009, pp. 175-178.
-
(2009)
A Wavelet Tour of Signal Processing
, pp. 175-178
-
-
Mallat, S.1
-
26
-
-
12144285744
-
A wavelet-based ECG delineator evaluation on standard databases
-
DOI 10.1109/TBME.2003.821031
-
J. P. Martinez, R. Almeida, S. Olmos, A. P. Rocha, and P. Laguna, "A wavelet-based ECG delineator: Evaluation on standard databases," IEEE Trans. Biomed. Eng., vol. 51, pp. 570-581, 2004. (Pubitemid 38375132)
-
(2004)
IEEE Transactions on Biomedical Engineering
, vol.51
, Issue.4
, pp. 570-581
-
-
Martinez, J.P.1
Almeida, R.2
Olmos, S.3
Rocha, A.P.4
Laguna, P.5
-
27
-
-
84898785264
-
Characterization of signals from multiscale edges
-
S. Mallat and S. Zhong, "Characterization of signals from multiscale edges," IEEE Trans. Pattern Anal. Mach. Intell., vol. 14, pp. 710-732, 1992.
-
(1992)
IEEE Trans. Pattern Anal. Mach. Intell.
, vol.14
, pp. 710-732
-
-
Mallat, S.1
Zhong, S.2
-
28
-
-
60249094380
-
Frequency-bandwidth-tunable powerline notch filter for biopotential acquisition systems
-
C. T.Ma, P. I. Mak, M. I. Vai, P. U.Mak, S. H. Pun, W. Feng, and R. P. Martins, "Frequency-bandwidth-tunable powerline notch filter for biopotential acquisition systems," Electron. Lett., vol. 45, pp. 197-199, 2009.
-
(2009)
Electron. Lett.
, vol.45
, pp. 197-199
-
-
Ma, C.T.1
Mak, P.I.2
Vai, M.I.3
Mak, P.U.4
Pun, S.H.5
Feng, W.6
Martins, R.P.7
-
29
-
-
26044476969
-
A CMOS continuous-time low-pass notch filter for EEG systems
-
DOI 10.1007/s10470-005-3007-x
-
X. Qian, Y. Xu, and X. Li, "A CMOS continuous-time low-pass notch filter for EEG systems," Analog Integr. Circuits Signal Process., vol. 44, pp. 231-238, 2005. (Pubitemid 41404687)
-
(2005)
Analog Integrated Circuits and Signal Processing
, vol.44
, Issue.3
, pp. 231-238
-
-
Qian, X.1
Xu, Y.P.2
Li, X.3
-
30
-
-
0004254082
-
-
[Online].
-
MIT-BIH Arrhythmia Database [Online]. Available: http://www.physionet. org/physiobank/database/mitdb
-
MIT-BIH Arrhythmia Database
-
-
-
33
-
-
34247325582
-
A 60 μW 60 nV/√Hz readout front-end for portable biopotential acquisition systems
-
DOI 10.1109/JSSC.2007.894804
-
R. F. Yazicioglu, P. Merken, R. Puers, and C. Van Hoof, "A 60 60 readout front-end for portable biopotential acquisition systems," IEEE J. Solid-State Circuits, vol. 42, pp. 1100-1110, 2007. (Pubitemid 46645027)
-
(2007)
IEEE Journal of Solid-State Circuits
, vol.42
, Issue.5
, pp. 1100-1110
-
-
Yazicioglu, R.F.1
Merken, P.2
Puers, R.3
Van Hoof, C.4
-
34
-
-
84872699009
-
A -accuracy, 0.68 and 2.21 QRS detection ASIC
-
W. Hui-Min, L. You-Liang, M. C. Hou, L. Shih-Hsiang, B. S. Yen, H. Yu-Chieh, C. Lei-Chun, H. Shao-You, H. Sheng-Chieh, and J. Ming-Yie, "A -accuracy, 0.68 and 2.21 QRS detection ASIC," in Proc. IEEE Int. Symp. Circuits and Systems, 2010, pp. 1372-1375.
-
(2010)
Proc. IEEE Int. Symp. Circuits and Systems
, pp. 1372-1375
-
-
Hui-Min, W.1
You-Liang, L.2
Hou, M.C.3
Shih-Hsiang, L.4
Yen, B.S.5
Yu-Chieh, H.6
Lei-Chun, C.7
Shao-You, H.8
Sheng-Chieh, H.9
Ming-Yie, J.10
-
35
-
-
76249090545
-
A real-time ECG QRS detection ASIC based on wavelet multiscale analysis
-
P. M. Wai, Z. Yuanjin, Z. Bin, X. Liu, and W. Y. Sheng, "A real-time ECG QRS detection ASIC based on wavelet multiscale analysis," in Proc. IEEE Asian Solid-State Circuits Conf., 2009, pp. 293-296.
-
(2009)
Proc. IEEE Asian Solid-State Circuits Conf.
, pp. 293-296
-
-
Wai, P.M.1
Yuanjin, Z.2
Bin, Z.3
Liu, X.4
Sheng, W.Y.5
|