-
1
-
-
34247273993
-
Patterned paper as a platform for inexpensive, low-volume, portable bioassays
-
A. W. Martinez S. T. Phillips M. J. Butte G. M. Whitesides Patterned paper as a platform for inexpensive, low-volume, portable bioassays Angew. Chem., Int. Ed. 2007 46 1318 1320
-
(2007)
Angew. Chem., Int. Ed.
, vol.46
, pp. 1318-1320
-
-
Martinez, A.W.1
Phillips, S.T.2
Butte, M.J.3
Whitesides, G.M.4
-
2
-
-
68849085937
-
Rapid prototyping of paper-based microfluidics with wax for low-cost, portable bioassay
-
Y. Lu W. Shi L. Jiang J. Qin B. Lin Rapid prototyping of paper-based microfluidics with wax for low-cost, portable bioassay Electrophoresis 2009 30 1497 1500
-
(2009)
Electrophoresis
, vol.30
, pp. 1497-1500
-
-
Lu, Y.1
Shi, W.2
Jiang, L.3
Qin, J.4
Lin, B.5
-
3
-
-
68849107869
-
Understanding wax printing: a simple micropatterning process for paper-based microfluidics
-
E. Carrilho A. W. Martinez G. M. Whitesides Understanding wax printing: a simple micropatterning process for paper-based microfluidics Anal. Chem. 2009 81 7091 7095
-
(2009)
Anal. Chem.
, vol.81
, pp. 7091-7095
-
-
Carrilho, E.1
Martinez, A.W.2
Whitesides, G.M.3
-
5
-
-
80053563914
-
Novel, simple and low-cost alternative method for fabrication of paper-based microfluidics by wax dipping
-
T. Songjaroen W. Dungchai O. Chailapakul W. Laiwattanapaisal Novel, simple and low-cost alternative method for fabrication of paper-based microfluidics by wax dipping Talanta 2011 85 2587 25933
-
(2011)
Talanta
, vol.85
, pp. 2587-25933
-
-
Songjaroen, T.1
Dungchai, W.2
Chailapakul, O.3
Laiwattanapaisal, W.4
-
6
-
-
84874062855
-
Fabrication of paper-based microfluidic device using printed circuit technology
-
A. Zhang Y. Zha Fabrication of paper-based microfluidic device using printed circuit technology AIP Adv. 2012 022171
-
(2012)
AIP Adv.
, pp. 022171
-
-
Zhang, A.1
Zha, Y.2
-
7
-
-
42949095976
-
Low-cost printing of poly(dimethylsiloxane) barriers to define microchannels in paper
-
D. A. Bruzewicz M. Reches G. M. Whitesides Low-cost printing of poly(dimethylsiloxane) barriers to define microchannels in paper Anal. Chem. 2008 80 3387 3392
-
(2008)
Anal. Chem.
, vol.80
, pp. 3387-3392
-
-
Bruzewicz, D.A.1
Reches, M.2
Whitesides, G.M.3
-
8
-
-
84864612123
-
Low-cost fabrication of paper-based microfluidic devices by one-step plotting
-
J. Nie Y. Zhang L. Lin C. Zhou S. Li L. Zhang J. Li Low-cost fabrication of paper-based microfluidic devices by one-step plotting Anal. Chem. 2012 84 6331 6335
-
(2012)
Anal. Chem.
, vol.84
, pp. 6331-6335
-
-
Nie, J.1
Zhang, Y.2
Lin, L.3
Zhou, C.4
Li, S.5
Zhang, L.6
Li, J.7
-
9
-
-
51949106700
-
Inkjet-printed microfluidic multianalyte chemical sensing paper
-
K. Abe K. Suzuki D. Citterio Inkjet-printed microfluidic multianalyte chemical sensing paper Anal. Chem. 2008 80 6928 6934
-
(2008)
Anal. Chem.
, vol.80
, pp. 6928-6934
-
-
Abe, K.1
Suzuki, K.2
Citterio, D.3
-
11
-
-
78650406348
-
Flexographically printed fluidic structures in paper
-
J. Olkkonen K. Lehtinen T. Erho Flexographically printed fluidic structures in paper Anal. Chem. 2010 82 10246 10250
-
(2010)
Anal. Chem.
, vol.82
, pp. 10246-10250
-
-
Olkkonen, J.1
Lehtinen, K.2
Erho, T.3
-
12
-
-
79952177518
-
Laser-treated hydrophobic paper: an inexpensive microfluidic platform
-
G. Chitnis Z. Ding C. Chang C. A. Savran B. Ziaie Laser-treated hydrophobic paper: an inexpensive microfluidic platform Lab Chip 2011 11 1161 1165
-
(2011)
Lab Chip
, vol.11
, pp. 1161-1165
-
-
Chitnis, G.1
Ding, Z.2
Chang, C.3
Savran, C.A.4
Ziaie, B.5
-
14
-
-
84870916861
-
One-step patterning of hollow microstructures in paper by laser cutting to create microfluidic analytical devices
-
J. Nie Y. Liang Y. Zhang S. Le D. Li S. Zhang One-step patterning of hollow microstructures in paper by laser cutting to create microfluidic analytical devices Analyst 2013 138 671 676
-
(2013)
Analyst
, vol.138
, pp. 671-676
-
-
Nie, J.1
Liang, Y.2
Zhang, Y.3
Le, S.4
Li, D.5
Zhang, S.6
-
16
-
-
84906875691
-
A handheld stamping process to fabricate microfluidic paper-based analytical devices with chemically modified surface for clinical assays
-
P. T. Garcia T. M. G. Cardoso C. D. Garcia E. Carrilho W. K. T. Coltro A handheld stamping process to fabricate microfluidic paper-based analytical devices with chemically modified surface for clinical assays RSC Adv. 2014 4 37637 37644
-
(2014)
RSC Adv.
, vol.4
, pp. 37637-37644
-
-
Garcia, P.T.1
Cardoso, T.M.G.2
Garcia, C.D.3
Carrilho, E.4
Coltro, W.K.T.5
-
17
-
-
84914133154
-
A low-cost and rapid microfluidic paper-based analytical device fabrication method: flash foam stamp lithography
-
Y. He Y. Wu X. Xiao J. Fu G. Xue A low-cost and rapid microfluidic paper-based analytical device fabrication method: flash foam stamp lithography RSC Adv. 2014 4 63860 63865
-
(2014)
RSC Adv.
, vol.4
, pp. 63860-63865
-
-
He, Y.1
Wu, Y.2
Xiao, X.3
Fu, J.4
Xue, G.5
-
19
-
-
84881237670
-
Laminated paper-based analytical devices (LPAD): fabrication, characterization, and assays
-
L. Christopher Z. Cassano H. Fan Laminated paper-based analytical devices (LPAD): fabrication, characterization, and assays Microfluid. Nanofluid. 2013 15 173 181
-
(2013)
Microfluid. Nanofluid.
, vol.15
, pp. 173-181
-
-
Christopher, L.1
Cassano, Z.2
Fan, H.3
-
20
-
-
84903730331
-
Programming fluid transport in paper-based microfluidic devices using razor-crafted open channels
-
D. L. Giokas G. Z. Tsogas A. G. Vlessidis Programming fluid transport in paper-based microfluidic devices using razor-crafted open channels Anal. Chem. 2014 86 6202 6207
-
(2014)
Anal. Chem.
, vol.86
, pp. 6202-6207
-
-
Giokas, D.L.1
Tsogas, G.Z.2
Vlessidis, A.G.3
-
23
-
-
84904632121
-
Fabrication of low-cost paper-based microfluidic devices by embossing or cut-and-stack methods
-
M. M. Thuo R. V. Martinez W. Lan X. Liu J. Barber M. B. J. Atkinson D. Bandarage J. Bloch G. M. Whitesides Fabrication of low-cost paper-based microfluidic devices by embossing or cut-and-stack methods Chem. Mater. 2014 26 4230 4237
-
(2014)
Chem. Mater.
, vol.26
, pp. 4230-4237
-
-
Thuo, M.M.1
Martinez, R.V.2
Lan, W.3
Liu, X.4
Barber, J.5
Atkinson, M.B.J.6
Bandarage, D.7
Bloch, J.8
Whitesides, G.M.9
-
24
-
-
84884909231
-
Fabrication of paper-based devices by lacquer spraying method for the determination of nickel (II) ion in waste water
-
T. Nurak N. Praphairaksit O. Chailapakul Fabrication of paper-based devices by lacquer spraying method for the determination of nickel (II) ion in waste water Talanta 2013 114 291 296
-
(2013)
Talanta
, vol.114
, pp. 291-296
-
-
Nurak, T.1
Praphairaksit, N.2
Chailapakul, O.3
-
25
-
-
78649884818
-
A low-cost, simple, and rapid fabrication method for paper-based microfluidics using wax screen-printing
-
W. Dungchai O. Chailapakul C. S. Henry A low-cost, simple, and rapid fabrication method for paper-based microfluidics using wax screen-printing Analyst 2011 136 77 82
-
(2011)
Analyst
, vol.136
, pp. 77-82
-
-
Dungchai, W.1
Chailapakul, O.2
Henry, C.S.3
-
26
-
-
84910156737
-
One-step polymer screen-printing for microfluidic paper-based analytical device (μPAD) fabrication
-
Y. Sameenoi P. N. Nongkai S. Nouanthavong C. S. Henry D. Nacapricha One-step polymer screen-printing for microfluidic paper-based analytical device (μPAD) fabrication Analyst 2014 139 6580 6588
-
(2014)
Analyst
, vol.139
, pp. 6580-6588
-
-
Sameenoi, Y.1
Nongkai, P.N.2
Nouanthavong, S.3
Henry, C.S.4
Nacapricha, D.5
-
30
-
-
84916887054
-
Rapid fabrication of paper-based microfluidic analytical devices with desktop stereolithography 3D printer
-
Y. He W. Wu J. Fu Rapid fabrication of paper-based microfluidic analytical devices with desktop stereolithography 3D printer RSC Adv. 2015 5 2694 2701
-
(2015)
RSC Adv.
, vol.5
, pp. 2694-2701
-
-
He, Y.1
Wu, W.2
Fu, J.3
-
31
-
-
84889579557
-
Electrochromatographic separations of multicomponent metal complexes on a microfluidic paper-based device with a simplified photolithography
-
L. OuYang C. Wang F. Du T. Zheng H. Liang Electrochromatographic separations of multicomponent metal complexes on a microfluidic paper-based device with a simplified photolithography RSC Adv. 2014 4 1093 1101
-
(2014)
RSC Adv.
, vol.4
, pp. 1093-1101
-
-
Ouyang, L.1
Wang, C.2
Du, F.3
Zheng, T.4
Liang, H.5
-
33
-
-
84908288040
-
Laser-induced photo-polymerisation for creation of paper-based fluidic devices
-
C. L. Sones I. N. Katis P. J. W. He B. Mills M. F. Namiq P. Shardlow M. Ibsen R. W. Eason Laser-induced photo-polymerisation for creation of paper-based fluidic devices Lab Chip 2014 14 4567 4574
-
(2014)
Lab Chip
, vol.14
, pp. 4567-4574
-
-
Sones, C.L.1
Katis, I.N.2
He, P.J.W.3
Mills, B.4
Namiq, M.F.5
Shardlow, P.6
Ibsen, M.7
Eason, R.W.8
-
35
-
-
57449121168
-
Paper-based microfluidic devices by plasma treatment
-
X. Li J. Tian T. Nguyen W. Shen Paper-based microfluidic devices by plasma treatment Anal. Chem. 2008 80 9131 9134
-
(2008)
Anal. Chem.
, vol.80
, pp. 9131-9134
-
-
Li, X.1
Tian, J.2
Nguyen, T.3
Shen, W.4
-
36
-
-
84899926162
-
One-step rapid fabrication of paper-based microfluidic devices using fluorocarbon plasma polymerization
-
P. Kao C. Hsu One-step rapid fabrication of paper-based microfluidic devices using fluorocarbon plasma polymerization Microfluid. Nanofluid. 2014 16 811 818
-
(2014)
Microfluid. Nanofluid.
, vol.16
, pp. 811-818
-
-
Kao, P.1
Hsu, C.2
-
37
-
-
84877342074
-
Modification of paper using polyhydroxybutyrate to obtain biomimetic superhydrophobic substrates
-
C. G. Obeso M. P. Sousa W. Song M. A. Rodriguez-Pérez B. Bhushan J. F. Mano Modification of paper using polyhydroxybutyrate to obtain biomimetic superhydrophobic substrates Colloids Surf., A 2013 416 51 55
-
(2013)
Colloids Surf., A
, vol.416
, pp. 51-55
-
-
Obeso, C.G.1
Sousa, M.P.2
Song, W.3
Rodriguez-Pérez, M.A.4
Bhushan, B.5
Mano, J.F.6
-
38
-
-
75749107841
-
Fabrication of paper-based microfluidic sensors by printing
-
X. Li J. Tian G. Garnier W. Shen Fabrication of paper-based microfluidic sensors by printing Colloids Surf., B 2010 76 564 570
-
(2010)
Colloids Surf., B
, vol.76
, pp. 564-570
-
-
Li, X.1
Tian, J.2
Garnier, G.3
Shen, W.4
-
40
-
-
84878742533
-
Inkjet printing: an integrated and green chemical approach to microfluidic paper-based analytical devices
-
K. Maejima S. Tomikawa K. Suzuki D. Citterio Inkjet printing: an integrated and green chemical approach to microfluidic paper-based analytical devices RSC Adv. 2013 3 9258 9263
-
(2013)
RSC Adv.
, vol.3
, pp. 9258-9263
-
-
Maejima, K.1
Tomikawa, S.2
Suzuki, K.3
Citterio, D.4
-
41
-
-
84869426054
-
Vapor phase deposition of functional polymers onto paper-based microfluidic devices for advanced unit operations
-
P. Kwong M. Gupta Vapor phase deposition of functional polymers onto paper-based microfluidic devices for advanced unit operations Anal. Chem. 2012 84 10129 10135
-
(2012)
Anal. Chem.
, vol.84
, pp. 10129-10135
-
-
Kwong, P.1
Gupta, M.2
-
42
-
-
79952364763
-
Three-dimensional patterning of porous materials using vapor phase polymerization
-
P. D. Haller C. A. Flowers M. Gupta Three-dimensional patterning of porous materials using vapor phase polymerization Soft Matter 2011 7 2428 2432
-
(2011)
Soft Matter
, vol.7
, pp. 2428-2432
-
-
Haller, P.D.1
Flowers, C.A.2
Gupta, M.3
-
43
-
-
84898927317
-
Vapor-phase deposition of polymers as a simple and versatile technique to generate paper-based microfluidic platforms for bioassay applications
-
G. Demirel E. Babur Vapor-phase deposition of polymers as a simple and versatile technique to generate paper-based microfluidic platforms for bioassay applications Analyst 2014 139 2326 2331
-
(2014)
Analyst
, vol.139
, pp. 2326-2331
-
-
Demirel, G.1
Babur, E.2
-
44
-
-
84890537223
-
Patterned fluoropolymer barriers for containment of organic solvents within paper-based microfluidic devices
-
B. Chen P. Kwong M. Gupta Patterned fluoropolymer barriers for containment of organic solvents within paper-based microfluidic devices ACS Appl. Mater. Interfaces 2013 5 12701 12707
-
(2013)
ACS Appl. Mater. Interfaces
, vol.5
, pp. 12701-12707
-
-
Chen, B.1
Kwong, P.2
Gupta, M.3
-
45
-
-
84907994624
-
A simple paper-based sensor fabricated by selective wet etching of silanized filter paper using a paper mask
-
L. Cai C. Xu S. Lin J. Luo M. Wu F. Yang A simple paper-based sensor fabricated by selective wet etching of silanized filter paper using a paper mask Biomicrofluidics 2014 8 056504
-
(2014)
Biomicrofluidics
, vol.8
, pp. 056504
-
-
Cai, L.1
Xu, C.2
Lin, S.3
Luo, J.4
Wu, M.5
Yang, F.6
-
46
-
-
84942174132
-
-
Master thesis, ZheJiang University, HangZhou, China
-
Y. Jiang, Study on fabrication of microfluidic paper-based analytical devices and manipulation of microfluidic flow in paper-based channels using a hand-held corona treater, Master thesis, ZheJiang University, HangZhou, China, 2014
-
(2014)
Study on fabrication of microfluidic paper-based analytical devices and manipulation of microfluidic flow in paper-based channels using a hand-held corona treater
-
-
Jiang, Y.1
-
50
-
-
84863687739
-
High throughput method for prototyping three-dimensional, paper-based microfluidic devices
-
G. G. Lewis M. J. Ditucci M. S. Baker S. T. Phillips High throughput method for prototyping three-dimensional, paper-based microfluidic devices Lab Chip 2012 12 2630 2633
-
(2012)
Lab Chip
, vol.12
, pp. 2630-2633
-
-
Lewis, G.G.1
Ditucci, M.J.2
Baker, M.S.3
Phillips, S.T.4
-
51
-
-
84887408777
-
A rapid, straightforward, and print house compatible mass fabrication method for integrating 3D paper-based microfluidics
-
L. Xiao X. Liu R. Zhong K. Zhang X. Zhang X. Zhou B. Lin Y. Du A rapid, straightforward, and print house compatible mass fabrication method for integrating 3D paper-based microfluidics Electrophoresis 2013 34 3003 3007
-
(2013)
Electrophoresis
, vol.34
, pp. 3003-3007
-
-
Xiao, L.1
Liu, X.2
Zhong, R.3
Zhang, K.4
Zhang, X.5
Zhou, X.6
Lin, B.7
Du, Y.8
-
52
-
-
80455129421
-
Three-dimensional paper microfluidic devices assembled using the principles of origami
-
H. Liu R. M. Crooks Three-dimensional paper microfluidic devices assembled using the principles of origami J. Am. Chem. Soc. 2011 133 17564 17566
-
(2011)
J. Am. Chem. Soc.
, vol.133
, pp. 17564-17566
-
-
Liu, H.1
Crooks, R.M.2
-
53
-
-
84864718103
-
3D origami-based multifunction0integrated immunodevice: low-cost and multiplexed sandwich chemiluminescence immunoassay on microfluidic paper-based analytical device
-
L. Ge S. Wang X. Song S. Ge J. Yu 3D origami-based multifunction0integrated immunodevice: low-cost and multiplexed sandwich chemiluminescence immunoassay on microfluidic paper-based analytical device Lab Chip 2012 12 3150 3158
-
(2012)
Lab Chip
, vol.12
, pp. 3150-3158
-
-
Ge, L.1
Wang, S.2
Song, X.3
Ge, S.4
Yu, J.5
-
54
-
-
84942174133
-
High performance magnesium anode in paper-based microfluidic battery, powering on-chip fluorescence assay
-
Y. Koo J. Sankar Y. Yun High performance magnesium anode in paper-based microfluidic battery, powering on-chip fluorescence assay Biomicrofluidics 2014 8 054104
-
(2014)
Biomicrofluidics
, vol.8
, pp. 054104
-
-
Koo, Y.1
Sankar, J.2
Yun, Y.3
-
55
-
-
84920438027
-
Recent Developments in Paper-Based Microfluidic Devices
-
D. M. Cate J. A. Adkins J. Mettakoonpitak et al., Recent Developments in Paper-Based Microfluidic Devices Anal. Chem. 2014 87 1 19 41
-
(2014)
Anal. Chem.
, vol.87
, Issue.1
, pp. 19-41
-
-
Cate, D.M.1
Adkins, J.A.2
Mettakoonpitak, J.3
-
56
-
-
77957675473
-
Microfluidics without pumps: reinventing the T-sensor and H-filter in paper networks
-
J. L. Osborn B. Lutz E. Fu et al., Microfluidics without pumps: reinventing the T-sensor and H-filter in paper networks Lab Chip 2010 10 20 2659 2665
-
(2010)
Lab Chip
, vol.10
, Issue.20
, pp. 2659-2665
-
-
Osborn, J.L.1
Lutz, B.2
Fu, E.3
-
57
-
-
77956305241
-
Visualization and measurement of flow in two-dimensional paper networks
-
P. Kauffman E. Fu B. Lutz et al., Visualization and measurement of flow in two-dimensional paper networks Lab Chip 2010 10 19 2614 2617
-
(2010)
Lab Chip
, vol.10
, Issue.19
, pp. 2614-2617
-
-
Kauffman, P.1
Fu, E.2
Lutz, B.3
-
58
-
-
77949868628
-
Controlled reagent transport in disposable 2D paper networks
-
E. Fu B. Lutz P. Kauffman et al., Controlled reagent transport in disposable 2D paper networks Lab Chip 2010 10 7 918 920
-
(2010)
Lab Chip
, vol.10
, Issue.7
, pp. 918-920
-
-
Fu, E.1
Lutz, B.2
Kauffman, P.3
-
59
-
-
84889008255
-
Tunable-Delay Shunts for Paper Microfluidic Devices
-
B. J. Toley B. McKenzie T. Liang et al., Tunable-Delay Shunts for Paper Microfluidic Devices Anal. Chem. 2013 85 23 11545 11552
-
(2013)
Anal. Chem.
, vol.85
, Issue.23
, pp. 11545-11552
-
-
Toley, B.J.1
McKenzie, B.2
Liang, T.3
-
60
-
-
77952537539
-
Metering the capillary-driven flow of fluids in paper-based microfluidic devices
-
H. Noh S. T. Phillips Metering the capillary-driven flow of fluids in paper-based microfluidic devices Anal. Chem. 2010 82 10 4181 4187
-
(2010)
Anal. Chem.
, vol.82
, Issue.10
, pp. 4181-4187
-
-
Noh, H.1
Phillips, S.T.2
-
61
-
-
84938354281
-
Facile and precise flow control for a paper-based microfluidic device through varying paper permeability
-
I. Jang S. Song Facile and precise flow control for a paper-based microfluidic device through varying paper permeability Lab Chip 2015 15 16 3405 3412
-
(2015)
Lab Chip
, vol.15
, Issue.16
, pp. 3405-3412
-
-
Jang, I.1
Song, S.2
-
62
-
-
84942174134
-
-
https://www.arduino.cc
-
-
-
-
63
-
-
84937905931
-
Fabrication of low cost soft tissue prostheses with the desktop 3D printer
-
Y. He G. H. Xue J. Z. Fu Fabrication of low cost soft tissue prostheses with the desktop 3D printer Sci. Rep. 2014 4 6973
-
(2014)
Sci. Rep.
, vol.4
, pp. 6973
-
-
He, Y.1
Xue, G.H.2
Fu, J.Z.3
-
64
-
-
84871738292
-
Patterned paper and alternative materials as substrates for low-cost microfluidic diagnostics
-
D. R. Ballerini X. Li W. Shen Patterned paper and alternative materials as substrates for low-cost microfluidic diagnostics Microfluid. Nanofluid. 2012 13 5 769 787
-
(2012)
Microfluid. Nanofluid.
, vol.13
, Issue.5
, pp. 769-787
-
-
Ballerini, D.R.1
Li, X.2
Shen, W.3
-
65
-
-
84862231072
-
Commercialization of microfluidic point-of-care diagnostic devices
-
C. D. Chin V. Linder S. K. Sia Commercialization of microfluidic point-of-care diagnostic devices Lab Chip 2012 12 12 2118 2134
-
(2012)
Lab Chip
, vol.12
, Issue.12
, pp. 2118-2134
-
-
Chin, C.D.1
Linder, V.2
Sia, S.K.3
-
66
-
-
84890087085
-
Advances in paper-based point-of-care diagnostics
-
J. Hu S. Q. Wang L. Wang et al., Advances in paper-based point-of-care diagnostics Biosens. Bioelectron. 2014 54 585 597
-
(2014)
Biosens. Bioelectron.
, vol.54
, pp. 585-597
-
-
Hu, J.1
Wang, S.Q.2
Wang, L.3
-
67
-
-
84870785220
-
Paper-based nanobiosensors for diagnostics
-
C. Parolo A. Merkoçi Paper-based nanobiosensors for diagnostics Chem. Soc. Rev. 2013 42 2 450 457
-
(2013)
Chem. Soc. Rev.
, vol.42
, Issue.2
, pp. 450-457
-
-
Parolo, C.1
Merkoçi, A.2
-
68
-
-
84884282182
-
Sensing approaches on paper-based devices: a review
-
E. W. Nery L. T. Kubota Sensing approaches on paper-based devices: a review Anal. Bioanal. Chem. 2013 405 24 7573 7595
-
(2013)
Anal. Bioanal. Chem.
, vol.405
, Issue.24
, pp. 7573-7595
-
-
Nery, E.W.1
Kubota, L.T.2
-
69
-
-
84949284456
-
Paper electrodes for bioelectrochemistry: Biosensors and biofuel cells
-
C. Desmet C. A. Marquette L. J. Blum et al., Paper electrodes for bioelectrochemistry: Biosensors and biofuel cells Biosens. Bioelectron. 2015 10.1016/j.bios.2015.06.052
-
(2015)
Biosens. Bioelectron.
-
-
Desmet, C.1
Marquette, C.A.2
Blum, L.J.3
|